US20050210856A1 - Pull-type V-shaped hay rake - Google Patents
Pull-type V-shaped hay rake Download PDFInfo
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- US20050210856A1 US20050210856A1 US10/859,027 US85902704A US2005210856A1 US 20050210856 A1 US20050210856 A1 US 20050210856A1 US 85902704 A US85902704 A US 85902704A US 2005210856 A1 US2005210856 A1 US 2005210856A1
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- Prior art keywords
- rake
- section
- arm
- crosswise member
- hay
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- 230000009977 dual effect Effects 0.000 claims description 10
- 239000012530 fluid Substances 0.000 claims description 10
- 230000000087 stabilizing effect Effects 0.000 claims description 5
- 238000013016 damping Methods 0.000 claims description 3
- 230000001360 synchronised effect Effects 0.000 claims description 3
- 230000000903 blocking effect Effects 0.000 claims 1
- 230000007246 mechanism Effects 0.000 description 6
- 230000006641 stabilisation Effects 0.000 description 6
- 238000011105 stabilization Methods 0.000 description 6
- 230000009471 action Effects 0.000 description 3
- 238000004904 shortening Methods 0.000 description 3
- 238000012986 modification Methods 0.000 description 2
- 230000004048 modification Effects 0.000 description 2
- 230000004907 flux Effects 0.000 description 1
- 238000012423 maintenance Methods 0.000 description 1
- 238000004519 manufacturing process Methods 0.000 description 1
- 238000000034 method Methods 0.000 description 1
- 230000004044 response Effects 0.000 description 1
- 230000000284 resting effect Effects 0.000 description 1
- 239000003381 stabilizer Substances 0.000 description 1
- 238000003860 storage Methods 0.000 description 1
- 238000003466 welding Methods 0.000 description 1
Images
Classifications
-
- A—HUMAN NECESSITIES
- A01—AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
- A01D—HARVESTING; MOWING
- A01D78/00—Haymakers with tines moving with respect to the machine
- A01D78/08—Haymakers with tines moving with respect to the machine with tine-carrying rotary heads or wheels
- A01D78/14—Haymakers with tines moving with respect to the machine with tine-carrying rotary heads or wheels the tines rotating about a substantially horizontal axis
- A01D78/142—Arrangements for transport by movement of the heads carrying rake arms
- A01D78/146—Arrangements for transport by movement of the heads carrying rake arms in a horizontal plane
-
- A—HUMAN NECESSITIES
- A01—AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
- A01D—HARVESTING; MOWING
- A01D78/00—Haymakers with tines moving with respect to the machine
- A01D78/08—Haymakers with tines moving with respect to the machine with tine-carrying rotary heads or wheels
Definitions
- the present invention relates to a collapsible pull type V-shaped rake for gathering hay.
- V-shaped pull type hay rakes having two movable arms which carry multiple rake wheels and are hinged to a wheeled cross bar, rather than a main frame, are known.
- a common characteristic of these rakes is that the movable hinged arms, which carry the rake wheels, can assume different positions.
- the arms can open to a “V” shape when the rake is in the working position, and move closer together or become entirely closed for purposes of maneuvering, transportation and storage.
- the opening and closing motion of the arms is generally accomplished manually, or, automatically, through a hydraulic cylinder.
- the hay maker arms can be operated independently of one another, to give even more flexibility to the operation of the machine.
- 5,685,1,35 discloses a collapsible V-shaped pull-type hay rake in which each rake arm is opened or closed by the action of an individual hydraulic cylinder which acts directly on it and is attached at one end to the rake arm and at the other end to the central tow bar of the hay rake. While this mechanism is efficient with respect to opening and closing of the rake arms, it requires that the hydraulic cylinders have sufficient operating range to ensure a sufficient opening of the rake arms. The hydraulic cylinders that are available having such an operating range are costly, very heavy, delicate and usually need constant maintenance. Furthermore, this type of rake necessarily requires the presence of a sturdy central tow bar.
- the present invention is a “V” shaped towable hay rake having a crosswise member and two rake arms, one mounted to the left end, and the other mounted to the right end of the crosswise member so as to be moveable between an open position and a closed position, where the rake arms are maneuvered between the open and closed position by the action of two actuators, preferably double-acting hydraulic cylinders, one connected at one end to the right rake arm and at the other end to the crosswise member, and the other connected at one end to the left rake arm and at the other end to the crosswise member.
- two actuators preferably double-acting hydraulic cylinders
- This feature allows for the use of relatively small and compact actuators. It also allows for a very simple opening and closing mechanism for the rake arms having a minimized number of moving parts and joints. In addition, due to the position of the actuators near the crosswise member, and the arrangement of the actuators at a distance from the rake wheels mounted to the rake arms, the actuators are less prone to get dirty and are protected from mechanical harm.
- the connection of the actuator between the crosswise member and the rake arms also gives the hay rake a better stability and enables the hay rake to be used in a bifold rake mode, by opening both aims, or in a single rake mode, by only opening one arm.
- FIG. 1 is a top plan view of one embodiment of the towable hay rake of the present invention
- FIG. 2 shows a top plan view of another embodiment of the towable bay rake according to the present invention
- FIG. 2A shows a perspective view of another embodiment of the towable hay rake according to the present invention
- FIG. 3 shows a perspective view of a detail of the right section of the crosswise member of FIG. 2 ;
- FIG. 4 shows one embodiment of a hydraulic system which may be applied in the hay rake of the present invention
- FIGS. 4A to 4 F show one embodiment of a hydraulic control system which may be employed to open and close both of the hay rake arms simultaneously or individually;
- FIG. 5 is a top plan view of an embodiment of the crosswise member of the towable hay rake of the present invention.
- FIG. 6 shows a perspective view of an embodiment of the towable hay rake of the present invention
- FIG. 7 shows a plan view of another embodiment of the towable hay rake of the present invention.
- FIG. 8 shows a plan view of another embodiment of the towable hay rake according to another exemplary embodiment of the present invention.
- FIGS. 8A and 8B show the towable hay rake of FIG. 8 in an upper and a lower perspective view, respectively;
- FIG. 9 shows a perspective rear view of an embodiment of the crossbar of the towable hay rake of the present invention.
- FIG. 10 shows a rear view of an embodiment of the wheeled crossbar of the hay rake of the present invention which is equipped with telescoping cylinders for lengthening and shortening the crossbar and is secured in the narrower position;
- FIG. 10A shows a rear view of an embodiment of the wheeled crossbar of the hay rake shown in FIG. 10 , where the telescoping cylinders for lengthening and shortening the crossbar is secured in the wider position;
- FIG. 11 shows a top plan view of another embodiment of the towable hay rake of the invention.
- FIG. 12 shows a top perspective view of another embodiment of the towable hay rake of the present invention.
- FIG. 13 shows a top perspective view of yet another embodiment of the towable hay rake of the present invention.
- FIG. 14 shows a top perspective view of yet another embodiment of the towable hay rake of the present invention.
- FIG. 15 shows a perspective view of yet another embodiment of the towable hay rake of the present invention.
- FIGS. 16A to 16 C show side and rear views of yet another embodiment of the towable hay rake of the present invention.
- one exemplary embodiment of the rake of the invention includes a wheeled crosswise member 1 .
- the crosswise member 1 has a right section 2 and a left section 3 .
- a first rake arm 4 having a front end 5 and a back end 6 is pivotably mounted at its back end 6 to the right section 2 of the crosswise member 1 so as to be moveable between an open position and a closed position.
- the position depicted in FIG. 1 is an intermediate position between the open position and the closed position.
- a second rake arm 7 having a front end 8 and a back end 9 is pivotably mounted at its back end 9 to the left section 3 of the crosswise member 1 so as to be moveable between an open position and a closed position.
- the second rake arm 7 is depicted in FIG. 1 in an intermediate position between the closed position and the open position.
- a plurality of rotatable haymaker wheels 10 are mounted to each of the first and second rake arms 4 and 7 .
- a first double acting actuator 11 has a first section 12 connected to the right section 2 of the crosswise member 1 and a second section 13 connected to the first rake arm 4 .
- the reference character 14 designates a second double acting actuator.
- the second double acting actuator 14 has a first section 15 connected to the left section 3 of crosswise member 1 and a second section 16 connected to the second rake arm 7 .
- actuators 11 and 14 When actuators 11 and 14 are actuated such that their respective first and second sections 12 , 13 and 15 , 16 are extended, the first and second rake arms 4 and 5 move from the open position depicted in FIG. 1 towards the closed position, in which the hay rake is easy to transport and maneuver.
- actuators 11 and 14 When actuators 11 and 14 are activated such that their respective first and second sections 12 , 13 and 15 , 16 are retracted, the rake arms 4 and 7 move toward the open position. Actuators 11 and 14 may be activated simultaneously or independently of each other. In this way rake arms 4 and 7 may be moved from the open position to the closed position and back, and to all incremental positions therebetween and back.
- the arrangement of the first and second actuators 11 and 14 between right and left sections 2 and 3 of the crosswise number 1 and the respective first and second rake arms 4 and 7 advantageously allows for the use of only one actuator 11 , 14 for each of the first and second rake arms 4 and 7 without any moving parts between the first and second actuators 11 and 14 and the respective first and second rake arms 4 and 7 . Due to the fact that the first and second actuators 11 and 14 are directly connected to the crosswise member 1 and the first and second rake arms 4 and 7 , the number of moving parts is minimized. In addition to that, only three joints are employed for each side, e.g., for each rake arm of the first and second rake arms 4 and 7 .
- the right side e.g., for the first rake arm 4
- the same arrangement may be employed for the left side. This allows for a simple and stable arrangement of the hay rake which is easy to manufacture and easy to maintain.
- the first and second actuators 11 and 14 may have minimized dimensions with respect to their operating range and their power.
- the hay rake illustrated in FIG. 1 is shown without a towbar.
- a towbar various different embodiments and configurations of which are described hereinbelow, maybe employed to pull the hay rake.
- FIG. 2 shows another exemplary embodiment of the hay rake of the present invention.
- a towable hay rake includes a wheeled crosswise member 1 to which are connected right and left rake arms 4 and 7 .
- Right and left sections 2 and 3 of the crosswise member 1 include right and left supports 100 to which wheels are attached.
- the supports 100 are rectangular rods.
- Right and left triangular support plates 101 are respectively attached to the supports 100 .
- On each of the support plates 101 there is a pivot 102 .
- the rake arms 4 and 7 are attached to the pivots 102 , so that the rake arms 4 and 7 can pivot around the pivots 102 .
- each support plate 101 has another pivot 103 connected to first and second actuators 11 and 14 which are connected to push rods 104 and 105 .
- the first and second actuators 11 and 14 deploy the rake arms 4 and 7 .
- the pivots 103 are placed adjacent to pivots 102 on the support plate 101 , but may be also placed at any location that affords sufficient leverage to move the rake arms 4 and 7 .
- the first and second actuators 11 and 14 are preferably dual action hydraulic actuators which may be operated jointly or alone, depending on whether one or both rake arms 4 and 8 must be opened or closed.
- Push rods 104 and 105 are respectively connected to the rake arms 4 and 7 by means of a plurality of attachment elements 106 .
- a plurality of haymaker wheels 10 are attached to rake arms 4 and 7 , so that they can rotate to collect the hay.
- Wheels 20 are attached to rake arms 4 and 7 as well as to the crosswise member 1 .
- the actuators 11 and 14 are preferably dual action, so that they can extend and retract the component to which they are connected.
- the actuators 11 and 14 are hydraulic cylinders operated by fluid pressure.
- the actuators may also be manually operable, for example by a hand crank.
- a connection between the crosswise member 1 and the supports 100 may be the same as shown in FIG. 6 , which is discussed in greater detail below.
- FIG. 2 illustrates one example of a towbar 300 having an eyelet 301 or other type of connection element for enabling the hay rake to be towable.
- Various types of towbars may be employed to tow the hay rake, some of which are described in further detail hereinbelow, and the present invention is not intended to be limited to only a single type or configuration of towbar.
- towbar 300 includes a pair of stabilization elements 302 that assist in stabilizing the hay rake arms 4 and 7 .
- FIG. 2A illustrates the hay rake of FIG. 2 in the perspective view.
- FIG. 3 shows a detailed view of the right section 2 of the crosswise member 1 of FIG. 2 with the support 100 .
- two wheels 20 are attached to support 100 .
- the support plates 101 are attached to the support 100 , e.g., by a welding connection.
- the support plates 101 are attached to the support 100 such that a main plane of the support plates is parallel to the ground when the hay rake is in operation.
- the support plates 101 are disposed from each other at a distance such that the end 6 of the rake arm 4 (the right rake arm of the hay rake) to be connected to the right section 2 of the crosswise member 1 (to the support plate 101 and therewith to the support 100 and therewith to the crosswise member 1 ) fits between the two support plates 101 .
- the rake arm 4 is attached to the support plates 101 by means of a shaft 111 which is received in openings in the upper support plate 101 and the lower support plate 101 , and which sits in an opening in the rake arm 4 . Pivot 102 is thus formed, allowing the rake arm 4 to rotate around the shaft 111 of the pivot 102 .
- the right rake arm 4 when the first actuator 11 is actuated by providing a hydraulic fluid pressure to the first actuator 11 via the hydraulic lines 110 , the right rake arm 4 is swivelled around the shaft 111 of the pivot 102 .
- the attachments of the left and right rake arms 4 and 7 to the crosswise member 1 preferably have the same configurations.
- a hydraulic power divider 52 divides the hydraulic fluid flow provided via hydraulic lines 110 from a hydraulic pressure source that is not shown in FIG. 4 between first and second actuators 11 and 14 .
- Hydraulic shutoff valves 56 , 54 are connected respectively to the first and second actuators 11 and 14 , and are used to shut off the flow to those actuators 11 and 14 , to lock the movement of the first and second actuators 11 and 14 when pressurized hydraulic fluid is not supplied or when the pressure of the hydraulic fluid is not sufficient to effectively actuate the first and second actuators 11 and 14 .
- hydraulic shut off valves 54 , 56 are automatic. However, in an alternative of this exemplary embodiment, hydraulic shutoff valves 54 , 56 are activated whenever the pressure in the hydraulic lines 51 falls below a predetermined level, or may be manually operated whenever the operator wants to lock one or both of the first and second actuators 11 and 14 . Further, for example, control unit 45 may be provided to control an operation of these, or any other, valves provided in the hay rake.
- FIG. 4 illustrates a towbar 300 having an eyelet 301 and a pair of stabilization elements, although any type of tow arrangement may be employed.
- FIGS. 4A to 4 E illustrate a hydraulic control arrangement that may be employed, in accordance with one embodiment of the present invention, in order to simultaneously or independently actuate the hay rake arms.
- the hydraulic control arrangement described hereinbelow may be employed to operate any type of rake having an opening mechanism that employs two hydraulic cylinders.
- a hydraulic controller 58 is provided that employs a hydraulic flux divider and a valve in order to selectively control the actuation of the actuators 11 and 14 , and to thereby control the opening and closing of the hay rake arms 4 and 7 .
- the hydraulic controller 58 includes a selector handle 306 , which may alternatively be a switch, dial or any other type of instrument actuatable by an operator, that enables an operator to select between various, e.g., three, positions.
- FIG. 4D shows the hydraulic controller 58 having the selector switch in a first position labeled A. In the position labeled A, the hydraulic controller 58 is configured to actuate both hay rake arms 4 and 7 simultaneously, as is illustrated in FIG. 4A .
- FIG. 4A shows that, in a preferred arrangement of this embodiment, the towbar 300 includes first and second towbar rods 300 a and 300 b .
- connection elements 303 a and 303 b are rotatably coupled to first and second stabilization elements 302 a and 302 b , respectively.
- first and second stabilization elements 302 a and 302 b are rotatably coupled to first and second stabilization elements 302 a and 302 b , respectively.
- the connection elements 303 a and 303 b slideably travel in tandem along their respective towbar rods 300 a and 300 b.
- FIG. 4E shows the hydraulic controller 58 having the selector switch in a second position labeled B.
- the hydraulic controller 58 is configured to actuate the hay rake arm 4 independently of the hay rake arm 7 , as is illustrated in FIG. 4B .
- FIG. 4B shows that, when the hay rake arm 4 is actuated so as to assume the open position, the connection element 303 a slideably traverses along its respective towbar rod 300 a , while the connection element 303 b corresponding to the hay rake arm 7 , which is in the closed position, is parked at an end of its respective towbar rod 300 b.
- FIG. 4F shows the hydraulic controller 58 having the selector switch in a second position labeled C.
- the hydraulic controller 58 is configured to actuate the hay rake arm 7 independently of the hay rake arm 4 , as is illustrated in FIG. 4C .
- FIG. 4C shows that, when the hay rake arm 7 is actuated so as to assume the open position, the connection element 303 b slideably traverses along its respective towbar rod 300 b , while the connection element 303 a corresponding to the hay rake arm 4 , which is in the closed position, is parked at an end of its respective towbar rod 300 a.
- FIG. 5 shows an exemplary embodiment of the crosswise member 1 that may be used in any exemplary embodiment of the invention described in this application.
- the right and left sections 2 and 3 of the crosswise member 1 can telescope in and out of the center section 17 of crosswise member 1 .
- Third and fourth dual action actuators 32 , 34 respectively operate right and left sections 2 and 3 , to extend and retract them thus changing the track of the towed hay rake.
- Each of the right and left sections 2 and 3 can be extended alone or together with the other one of the right and left sections 2 and 3 , depending on the required configuration of the hay rake.
- FIG. 6 shows another exemplary embodiment of the hay rake of the invention including a hydraulic power divider mechanism to divide hydraulic flow (provided by a pressure source which is not shown in FIG. 6 ) between the third and fourth actuators 32 and 34 , which are hydraulic actuators in this exemplary embodiment, and further shows the connection of the crosswise member to the supports 100 .
- the supports 100 are respectively connected to the right and left sections 2 and 3 of the crosswise member 1 by means of appendages 120 respectively provided at the right and left sections 2 , 3 , and bolts 121 slide through openings in the appendages 120 and the supports 100 .
- a power divider valve 42 that is operated by control unit 45 .
- the power divider valve 42 divides the flow between the third and fourth actuators 32 , 34 .
- the third and fourth actuators 32 , 34 are placed adjacent to the crosswise member 1 , however, they could be placed in other suitable position.
- the third and fourth actuators 32 , 34 could be placed inside hollow parts of the crosswise member 1 .
- Power divider valve 42 is used to control whether one or both of third and fourth actuators 32 , 34 are operated, and whether they are extended or retracted.
- Hydraulic shutoff valves 44 , 46 are associated with the third and fourth actuators 32 , 34 , and are used to block movement of the corresponding actuator of the third and fourth actuators 32 , 34 when pressurized fluid is not provided. This prevents unwanted movement of the right and left sections 2 and 3 of the crosswise member 1 .
- the hydraulic shutoff valves 44 , 46 are automatic.
- the hydraulic shutoff valves 44 , 46 may be operated automatically when the pressure in hydraulic lines 40 is low, when there is no pressure provided, or may be operated by the control unit 45 in response to preselected conditions.
- shutoff valves 44 , 46 are manually operated, to manually prevent extension and retraction of the right and left sections 2 and 3 .
- a set of control valves 46 each associated with one of the third and fourth actuators 32 , 34 , is provided to ensure synchronous and symmetric movement of the third and fourth actuators 32 , 34 , when such movement is required.
- FIG. 7 shows a further exemplary embodiment of the hay rake according to the present invention.
- the hay rake shown in FIG. 7 is essentially similar to the hay rake shown in FIG. 2 , except that there is provided a longitudinal towing arm 60 .
- the towing arm 60 has one end 62 attached to the center section 17 of crosswise member 1 , and another end 64 with appropriate connections such as a towing eyelet to be attached to a towing vehicle such as a tractor.
- FIG. 8 shows a further exemplary embodiment of hay rake according to the present invention.
- FIG. 8 shows a towable hay rake essentially similar to the hay rake shown in FIG. 7 with the exception that additional haymaker wheels 68 are attached directly to the towing arm 60 .
- FIG. 8 there are provided two additional haymaker wheels 68 , one on the left side of the towing arm 60 and one on the right side of the towing arm 60 .
- the additional haymaker wheels 68 are attached to levers 69 that are swivel mounted to the towing arm 60 by means of joints such that they may be swivelled from an operating position, where they are extending from the towing arm 60 , into a transport position, where they are abutted against the towing arm 60 such that the right and left rake arms 4 and 7 can be pivoted into positions close to the towing arm 60 .
- This exemplary embodiment allows for a very efficient hay raking operation as well as for a small size of the hay rake, when the hay rake is transported from, for example, one field to another.
- haymaker wheels 10 can be placed on right and left rake arms 4 and 7 facing the respective other rake arm 4 or 7 , as shown in the drawings, or can be placed on the opposite side, facing away from the hay rake.
- additional hay making wheels can be employed on any of the types of towbars illustrated herein, as well as on the various parts of the stabilization arrangements illustrated herein.
- FIGS. 8A and 8B show the additional hay making wheels 68 in an upper and a lower perspective view, respectively.
- FIG. 9 shows a further exemplary embodiment of the hay rake according to the present invention.
- crosswise member 1 is fitted with third and fourth actuators 32 ′, 34 ′ that are manually operated.
- third and fourth actuators 32 ′, 34 ′ are dual action screw jacks connected to center section 17 at one end, and respectively to right and left sections 2 and 3 on the other end.
- both screw jacks 32 ′, 34 ′ are actuated by a ratchet mechanism 70 attached to center section 17 , which is manually operated by the operator using lever 72 .
- separate levers and ratchets may be used for each actuator 32 ′, 34 ′.
- FIGS. 10 and 10 A show an exemplary embodiment of a mechanism for lengthening and shortening the crosswise member 1 .
- the crosswise member 1 is shown in a closed configuration in FIG. 10 , and in an open configuration in FIG. 10A .
- Right and left sections 2 and 3 of crosswise member 1 are slidably movable with respect to center section 17 .
- a fifth actuator 76 is attached at one end to center section 17 .
- a balance arm 78 is pivotally attached to center section 17 , and has one end 84 to which actuator 76 pivotally attaches.
- a first rod 80 is pivotally attached at one extremity to end 84 of balance arm 78 , and at the other extremity to right section 2 .
- a second rod 82 is attached at one extremity to opposite end 86 of balance arm 78 , and at the other extremity to left section 3 .
- operation of fifth actuator 76 causes both right and left sections 2 and 3 to slide in synchronous manner, thus opening or closing crosswise member 1 .
- stabilizers 151 between the supports 100 and the crosswise member 1 allowing for an improved stability with respect to the torsion of the supports 100 .
- a similar configuration can be formed where a sixth actuator, similar to fifth actuator 76 , attaches to end 86 of the balance arm 78 . Also, both fifth and sixth actuators may be present.
- the fifth and sixth actuators may be dual action hydraulic cylinders, or may be manually operated screw jacks.
- FIG. 11 shows a further exemplary embodiment of hay rake according to the present invention.
- FIG. 11 shows a towable hay rake essentially similar to the hay rake shown in FIG. 2 with the exception that there is provided a towing arrangement 200 .
- the towing arrangement 200 includes a first beam 201 and a second beam 202 , each having an inner and an outer end.
- the outer end of each of the first and second beams 201 and 202 is connected to appendages 203 and 204 via joints 205 and 206 .
- the joints 205 and 206 allow a rotational movement of the beams 201 and 202 with respect to the appendages 203 and 204 .
- the appendages 203 and 204 are connected to the first and second rake arms 4 and 7 .
- the inner ends of the beams 201 and 202 are connected to a towing vehicle connector 207 .
- a suitable connecting means for connecting the hay rake to a vehicle such as a towing eyelet.
- On the back side of the vehicle connector there are provided two joints 208 and 209 connecting the beams 201 and 202 to the vehicle connector 207 .
- the towing arrangement is folded out such that a vehicle can be connected to the vehicle connector 207 .
- This embodiment allows for a hay rake, that is very compact in the closed position.
- FIG. 12 shows a further exemplary embodiment of hay rake according to the present invention.
- FIG. 12 shows a towable hay rake essentially similar to the hay rake shown in FIG. 7 with the exception that there is provided a stabilizing arrangement 220 .
- the stabilizing arrangement 220 includes beams 221 and 222 that are connected via appendages 223 and 224 to the first and second rake arms 4 and 7 .
- the connection between the beams 221 and 222 and the appendages 223 and 224 is realized by means of joints 225 and 226 that allow a rotational movement of the beams 221 and 222 about the joints 225 and 226 .
- Inner ends of the beams 221 and 222 are connected to a sliding plate 227 which is resting on a sliding section 260 on the towing arm 60 .
- the beams 221 and 222 are connected to the sliding plate 227 by means of joints 228 and 229 that allow a rotational movement of the beams about the joints 228 and 229 .
- the sliding section 260 is an elevated section of the towing arm 60 which is adapted to support the sliding plate 227 .
- At middle sections 230 and 231 of the beams 221 and 222 there are provided further rotational joints 232 and 233 .
- the dampers 236 and 237 are preferably two way dampers that have a damping action in the expanding direction and the contracting direction. This allows for a stable movement of the first and second rake arms between the open and closed position and for a stable hay rake.
- FIG. 13 shows a further exemplary embodiment of hay rake according to the present invention.
- FIG. 13 shows a towable hay rake essentially similar to the hay rake shown in FIG. 12 with the exception that the beams 221 and 222 are connected to the joints 234 and 235 of the sliding plate 227 on the side of the sliding plate 227 facing the crosswise member 1 .
- the damper 236 is connected to and between joint 229 of the sliding plate 227 and a joint 240 at the appendage 223 and the damper 237 is connected to and between joint 228 of the sliding plate 227 and a joint 241 at the appendage 224 .
- This arrangement provides for a very stable hay rake.
- FIG. 14 shows a further exemplary embodiment of hay rake according to the present invention.
- FIG. 14 shows a towable hay rake essentially similar to the hay rake shown in FIG. 12 with the exception that the beams 221 and 222 are not connected directly to appendages 223 and 224 by means of joints 225 and 226 .
- beam 221 is connected to one end of a further beam 250 by means of a rotational joint 251 .
- Another end of the further beam 250 is connected to appendage 223 by the joint 225 .
- beam 222 is connected to one end of a further beam 252 by means of a rotational joint 253 .
- Another end of the further beam 252 is connected to appendage 224 by the joint 226 .
- FIG. 15 shows a further exemplary embodiment of the hay rake according to the present invention.
- FIG. 15 shows a towable hay rake essentially similar to the hay rake shown in FIG. 13 except that between the appendages 223 and 224 , there are provided further beams 270 and 273 .
- the damper 236 and the beam 221 are connected to the further beam 270 by means of rotational joints 271 and 272 , respectively.
- the further beam 270 is connected to the appendage 223 via joint 225 .
- the damper 237 and the beam 222 are connected to the further beam 273 by means of rotational joints 274 and 275 , respectively.
- the further beam 273 is connected to the appendage 224 via joint 226 .
- FIGS. 16A to 16 C illustrate a hay rake in accordance with still another embodiment of the present invention.
- the hay rake is provided with a flexibility system that reduces the stress on the various components of the hay rake when the hay rake is operated on uneven terrain.
- FIG. 16A is a side view that illustrates the hay rake being pulled, on even terrain, by a tractor via the towbar 300 .
- the hay rake further includes a rotatable connection 400 at the location where the hay rake arm, e.g., hay rake arm 4 , connects to the crosswise member 1 .
- FIG. 16C illustrates a first rotatable connection 400 a rotatably connecting the crosswise member 1 to support 100 a which supports hay rake arm 7 , and a second rotatable connection 400 b rotatably connecting the crosswise member 1 to support 100 b which supports the hay rake arm 4 .
- FIG. 16B is another side view that illustrates the hay rake being pulled by a tractor via the towbar 300 , but in this figure, the hay rake is being pulled over uneven terrain. As shown in FIG.
- each support 100 a and 100 b is rotatably mounted to the crosswise member 1 by respective rotatable connections 400 a and 400 b , the hay rake arms 4 and 7 are independently raised or lowered depending on the terrain.
- the rotatable connection 400 a may enable the hay rake arm 7 to be lowered while simultaneously the rotatable connection 400 b may enable the hay rake arm 4 to be raised, or vice versa.
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Abstract
A hay rake includes a crosswise member having a right section and a left section. A first rake arm has a front end and a back end, the first rake arm being pivotably mounted at its back end to the right section of the crosswise member so as to be moveable between an open position and a closed position. A second rake arm has a front end and a back end, the second rake arm being pivotably mounted at its back end to the left section of the crosswise member so as to be moveable between an open position and a closed position. A plurality of rotatable rake wheels are mounted on each of the first and second rake arms. The hay rake also includes first and a second actuators. The first actuator has a first section connected to the right section of the crosswise member and a second section connected to the first rake arm. The second actuator has a first section connected to the left section of the crosswise member and a second section connected to the second rake arm. Each actuator operates to move the rake arm to which it is connected between the open position and the closed position.
Description
- The present application incorporates herein each of the following references as fully as if set forth in their entirety:: U.S. patent application Ser. No. 09/094,074, filed on Jun. 9, 1998, which issued as U.S. Pat. No. 6,000,207 on Dec. 14, 1999; and U.S. patent application Ser. No. 08/594,615, filed on Feb. 2, 1996, which issued as U.S. Pat. No. 5,685,135 on Nov. 11, 1997.
- 1. Field of the Invention
- The present invention relates to a collapsible pull type V-shaped rake for gathering hay.
- 2. Background Art
- Collapsible V-shaped pull type hay rakes having two movable arms which carry multiple rake wheels and are hinged to a wheeled cross bar, rather than a main frame, are known. A common characteristic of these rakes is that the movable hinged arms, which carry the rake wheels, can assume different positions. In particular, the arms can open to a “V” shape when the rake is in the working position, and move closer together or become entirely closed for purposes of maneuvering, transportation and storage. The opening and closing motion of the arms is generally accomplished manually, or, automatically, through a hydraulic cylinder. In some instances the hay maker arms can be operated independently of one another, to give even more flexibility to the operation of the machine. U.S. Pat. No. 5,685,1,35, for example, discloses a collapsible V-shaped pull-type hay rake in which each rake arm is opened or closed by the action of an individual hydraulic cylinder which acts directly on it and is attached at one end to the rake arm and at the other end to the central tow bar of the hay rake. While this mechanism is efficient with respect to opening and closing of the rake arms, it requires that the hydraulic cylinders have sufficient operating range to ensure a sufficient opening of the rake arms. The hydraulic cylinders that are available having such an operating range are costly, very heavy, delicate and usually need constant maintenance. Furthermore, this type of rake necessarily requires the presence of a sturdy central tow bar.
- The present invention is a “V” shaped towable hay rake having a crosswise member and two rake arms, one mounted to the left end, and the other mounted to the right end of the crosswise member so as to be moveable between an open position and a closed position, where the rake arms are maneuvered between the open and closed position by the action of two actuators, preferably double-acting hydraulic cylinders, one connected at one end to the right rake arm and at the other end to the crosswise member, and the other connected at one end to the left rake arm and at the other end to the crosswise member.
- This feature allows for the use of relatively small and compact actuators. It also allows for a very simple opening and closing mechanism for the rake arms having a minimized number of moving parts and joints. In addition, due to the position of the actuators near the crosswise member, and the arrangement of the actuators at a distance from the rake wheels mounted to the rake arms, the actuators are less prone to get dirty and are protected from mechanical harm. The connection of the actuator between the crosswise member and the rake arms also gives the hay rake a better stability and enables the hay rake to be used in a bifold rake mode, by opening both aims, or in a single rake mode, by only opening one arm.
- The invention will now be described in greater detail with reference to the accompanying drawings, a brief description of which follows:
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FIG. 1 is a top plan view of one embodiment of the towable hay rake of the present invention; -
FIG. 2 shows a top plan view of another embodiment of the towable bay rake according to the present invention; -
FIG. 2A shows a perspective view of another embodiment of the towable hay rake according to the present invention; -
FIG. 3 shows a perspective view of a detail of the right section of the crosswise member ofFIG. 2 ; -
FIG. 4 shows one embodiment of a hydraulic system which may be applied in the hay rake of the present invention; -
FIGS. 4A to 4F show one embodiment of a hydraulic control system which may be employed to open and close both of the hay rake arms simultaneously or individually; -
FIG. 5 is a top plan view of an embodiment of the crosswise member of the towable hay rake of the present invention; -
FIG. 6 shows a perspective view of an embodiment of the towable hay rake of the present invention; -
FIG. 7 shows a plan view of another embodiment of the towable hay rake of the present invention; -
FIG. 8 shows a plan view of another embodiment of the towable hay rake according to another exemplary embodiment of the present invention; -
FIGS. 8A and 8B show the towable hay rake ofFIG. 8 in an upper and a lower perspective view, respectively; -
FIG. 9 shows a perspective rear view of an embodiment of the crossbar of the towable hay rake of the present invention; -
FIG. 10 shows a rear view of an embodiment of the wheeled crossbar of the hay rake of the present invention which is equipped with telescoping cylinders for lengthening and shortening the crossbar and is secured in the narrower position; -
FIG. 10A shows a rear view of an embodiment of the wheeled crossbar of the hay rake shown inFIG. 10 , where the telescoping cylinders for lengthening and shortening the crossbar is secured in the wider position; -
FIG. 11 shows a top plan view of another embodiment of the towable hay rake of the invention; -
FIG. 12 shows a top perspective view of another embodiment of the towable hay rake of the present invention; -
FIG. 13 shows a top perspective view of yet another embodiment of the towable hay rake of the present invention; -
FIG. 14 shows a top perspective view of yet another embodiment of the towable hay rake of the present invention; -
FIG. 15 shows a perspective view of yet another embodiment of the towable hay rake of the present invention; and -
FIGS. 16A to 16C show side and rear views of yet another embodiment of the towable hay rake of the present invention. - For ease of reference the same reference numbers are used to designate the same or corresponding elements throughout the Figures.
- Referring to
FIG. 1 , one exemplary embodiment of the rake of the invention includes a wheeledcrosswise member 1. Thecrosswise member 1 has aright section 2 and aleft section 3. Afirst rake arm 4 having afront end 5 and aback end 6 is pivotably mounted at itsback end 6 to theright section 2 of thecrosswise member 1 so as to be moveable between an open position and a closed position. The position depicted inFIG. 1 is an intermediate position between the open position and the closed position. Asecond rake arm 7 having afront end 8 and aback end 9 is pivotably mounted at itsback end 9 to theleft section 3 of thecrosswise member 1 so as to be moveable between an open position and a closed position. As with thefirst rake arm 4, thesecond rake arm 7 is depicted inFIG. 1 in an intermediate position between the closed position and the open position. A plurality ofrotatable haymaker wheels 10 are mounted to each of the first andsecond rake arms actuator 11 has afirst section 12 connected to theright section 2 of thecrosswise member 1 and asecond section 13 connected to thefirst rake arm 4. Thereference character 14 designates a second double acting actuator. The second double actingactuator 14 has afirst section 15 connected to theleft section 3 ofcrosswise member 1 and asecond section 16 connected to thesecond rake arm 7. When actuators 11 and 14 are actuated such that their respective first andsecond sections second rake arms FIG. 1 towards the closed position, in which the hay rake is easy to transport and maneuver. When actuators 11 and 14 are activated such that their respective first andsecond sections rake arms Actuators arms - The arrangement of the first and
second actuators sections crosswise number 1 and the respective first andsecond rake arms actuator second rake arms second actuators second rake arms second actuators crosswise member 1 and the first andsecond rake arms second rake arms first rake arm 4, there is one joint between thefirst rake arm 4 and theright section 2 of thecrosswise member 1, there is a second joint between thefirst section 12 of thefirst actuator 11 and theright section 2 of thecrosswise member 1 and there is a third joint between thesecond section 13 of thefirst actuator 11 and thefirst rake arm 4. The same arrangement may be employed for the left side. This allows for a simple and stable arrangement of the hay rake which is easy to manufacture and easy to maintain. Furthermore, due to the connection of thefirst sections second actuators center section 17 than the connection of the first andsecond rake arms second actuators FIG. 1 is shown without a towbar. However, it should be understood that a towbar, various different embodiments and configurations of which are described hereinbelow, maybe employed to pull the hay rake. -
FIG. 2 shows another exemplary embodiment of the hay rake of the present invention. InFIG. 2 , a towable hay rake includes a wheeled crosswisemember 1 to which are connected right and left rakearms sections crosswise member 1 include right and leftsupports 100 to which wheels are attached. In the exemplary embodiment depicted inFIG. 2 , thesupports 100 are rectangular rods. Right and lefttriangular support plates 101 are respectively attached to thesupports 100. On each of thesupport plates 101, there is apivot 102. Therake arms pivots 102, so that therake arms pivots 102. Furthermore, eachsupport plate 101 has anotherpivot 103 connected to first andsecond actuators rods second actuators rake arms pivots 103 are placed adjacent topivots 102 on thesupport plate 101, but may be also placed at any location that affords sufficient leverage to move therake arms second actuators arms - Push
rods rake arms attachment elements 106. A plurality ofhaymaker wheels 10 are attached to rakearms Wheels 20 are attached to rakearms crosswise member 1. - As mentioned above, the
actuators actuators crosswise member 1 and thesupports 100 may be the same as shown inFIG. 6 , which is discussed in greater detail below. - In addition,
FIG. 2 illustrates one example of atowbar 300 having aneyelet 301 or other type of connection element for enabling the hay rake to be towable. Various types of towbars may be employed to tow the hay rake, some of which are described in further detail hereinbelow, and the present invention is not intended to be limited to only a single type or configuration of towbar. In the embodiment shown,towbar 300 includes a pair ofstabilization elements 302 that assist in stabilizing thehay rake arms hay rake arms FIG. 2A illustrates the hay rake ofFIG. 2 in the perspective view. -
FIG. 3 shows a detailed view of theright section 2 of thecrosswise member 1 ofFIG. 2 with thesupport 100. InFIG. 3 , twowheels 20 are attached to support 100. There are two support plates 101 (an upper support plate and a lower support plate) attached to thesupport 100 at a location above thewheels 20 and underneath thecrosswise member 1, which is outside the view ofFIG. 3 . Thesupport plates 101 are attached to thesupport 100, e.g., by a welding connection. Thesupport plates 101 are attached to thesupport 100 such that a main plane of the support plates is parallel to the ground when the hay rake is in operation. Thesupport plates 101 are disposed from each other at a distance such that theend 6 of the rake arm 4 (the right rake arm of the hay rake) to be connected to theright section 2 of the crosswise member 1 (to thesupport plate 101 and therewith to thesupport 100 and therewith to the crosswise member 1) fits between the twosupport plates 101. Therake arm 4 is attached to thesupport plates 101 by means of ashaft 111 which is received in openings in theupper support plate 101 and thelower support plate 101, and which sits in an opening in therake arm 4.Pivot 102 is thus formed, allowing therake arm 4 to rotate around theshaft 111 of thepivot 102. - At a distance from the
shaft 111, there are provided further openings in the upper andlower support plates 101. In these further openings, there is provided afurther shaft 112 to form thepivot 103. Attached to theshaft 112, there is thefirst section 12 of thefirst actuator 11. Thesecond section 13 of thefirst actuator 11 is connected by means of ahinge 113 to thepush rod 104 which is connected to therake arm 4 by means of theattachment elements 106. As shown, e.g., inFIG. 2 , a plurality ofattachment elements 106 may be provided. Furthermore, there are provided hydraulic lines I 10 which are connected to thefirst actuator 11 which is a dual action hydraulic cylinder in this exemplary embodiment. - In the exemplary embodiment shown in
FIG. 3 , when thefirst actuator 11 is actuated by providing a hydraulic fluid pressure to thefirst actuator 11 via thehydraulic lines 110, theright rake arm 4 is swivelled around theshaft 111 of thepivot 102. The attachments of the left and right rakearms crosswise member 1 preferably have the same configurations. - An exemplary embodiment of a hydraulic control system for first and
second actuators FIG. 4 , which may be used in any of the embodiments described in this application. Ahydraulic power divider 52 divides the hydraulic fluid flow provided viahydraulic lines 110 from a hydraulic pressure source that is not shown inFIG. 4 between first andsecond actuators Hydraulic shutoff valves second actuators actuators second actuators second actuators valves hydraulic shutoff valves hydraulic lines 51 falls below a predetermined level, or may be manually operated whenever the operator wants to lock one or both of the first andsecond actuators control unit 45 may be provided to control an operation of these, or any other, valves provided in the hay rake. Again,FIG. 4 illustrates atowbar 300 having aneyelet 301 and a pair of stabilization elements, although any type of tow arrangement may be employed. -
FIGS. 4A to 4E illustrate a hydraulic control arrangement that may be employed, in accordance with one embodiment of the present invention, in order to simultaneously or independently actuate the hay rake arms. It should be understood that the hydraulic control arrangement described hereinbelow may be employed to operate any type of rake having an opening mechanism that employs two hydraulic cylinders. According to this embodiment, ahydraulic controller 58 is provided that employs a hydraulic flux divider and a valve in order to selectively control the actuation of theactuators hay rake arms hydraulic controller 58 includes aselector handle 306, which may alternatively be a switch, dial or any other type of instrument actuatable by an operator, that enables an operator to select between various, e.g., three, positions. For instance,FIG. 4D shows thehydraulic controller 58 having the selector switch in a first position labeled A. In the position labeled A, thehydraulic controller 58 is configured to actuate bothhay rake arms FIG. 4A .FIG. 4A shows that, in a preferred arrangement of this embodiment, thetowbar 300 includes first andsecond towbar rods towbar rods respective connection element connection elements second stabilization elements FIG. 4A , theconnection elements respective towbar rods -
FIG. 4E shows thehydraulic controller 58 having the selector switch in a second position labeled B. In the position labeled B, thehydraulic controller 58 is configured to actuate thehay rake arm 4 independently of thehay rake arm 7, as is illustrated inFIG. 4B .FIG. 4B shows that, when thehay rake arm 4 is actuated so as to assume the open position, theconnection element 303 a slideably traverses along itsrespective towbar rod 300 a, while theconnection element 303 b corresponding to thehay rake arm 7, which is in the closed position, is parked at an end of itsrespective towbar rod 300 b. -
FIG. 4F , on the other hand, shows thehydraulic controller 58 having the selector switch in a second position labeled C. In the position labeled C, thehydraulic controller 58 is configured to actuate thehay rake arm 7 independently of thehay rake arm 4, as is illustrated inFIG. 4C .FIG. 4C shows that, when thehay rake arm 7 is actuated so as to assume the open position, theconnection element 303 b slideably traverses along itsrespective towbar rod 300 b, while theconnection element 303 a corresponding to thehay rake arm 4, which is in the closed position, is parked at an end of itsrespective towbar rod 300 a. -
FIG. 5 shows an exemplary embodiment of thecrosswise member 1 that may be used in any exemplary embodiment of the invention described in this application. InFIG. 5 , the right and leftsections crosswise member 1 can telescope in and out of thecenter section 17 of crosswisemember 1. Third and fourthdual action actuators sections sections sections -
FIG. 6 shows another exemplary embodiment of the hay rake of the invention including a hydraulic power divider mechanism to divide hydraulic flow (provided by a pressure source which is not shown inFIG. 6 ) between the third andfourth actuators supports 100. Thesupports 100 are respectively connected to the right and leftsections crosswise member 1 by means ofappendages 120 respectively provided at the right and leftsections bolts 121 slide through openings in theappendages 120 and thesupports 100. - In
FIG. 6 , there is further provided apower divider valve 42 that is operated bycontrol unit 45. Thepower divider valve 42 divides the flow between the third andfourth actuators fourth actuators crosswise member 1, however, they could be placed in other suitable position. For example, the third andfourth actuators crosswise member 1.Power divider valve 42 is used to control whether one or both of third andfourth actuators Hydraulic shutoff valves fourth actuators fourth actuators sections crosswise member 1. According to one embodiment of the present invention, thehydraulic shutoff valves hydraulic shutoff valves hydraulic lines 40 is low, when there is no pressure provided, or may be operated by thecontrol unit 45 in response to preselected conditions. In a further alternative of this exemplary embodiment,shutoff valves sections control valves 46, each associated with one of the third andfourth actuators fourth actuators -
FIG. 7 shows a further exemplary embodiment of the hay rake according to the present invention. The hay rake shown inFIG. 7 is essentially similar to the hay rake shown inFIG. 2 , except that there is provided alongitudinal towing arm 60. The towingarm 60 has oneend 62 attached to thecenter section 17 of crosswisemember 1, and anotherend 64 with appropriate connections such as a towing eyelet to be attached to a towing vehicle such as a tractor. -
FIG. 8 shows a further exemplary embodiment of hay rake according to the present invention.FIG. 8 shows a towable hay rake essentially similar to the hay rake shown inFIG. 7 with the exception thatadditional haymaker wheels 68 are attached directly to thetowing arm 60. InFIG. 8 , there are provided twoadditional haymaker wheels 68, one on the left side of thetowing arm 60 and one on the right side of thetowing arm 60. Theadditional haymaker wheels 68 are attached to levers 69 that are swivel mounted to thetowing arm 60 by means of joints such that they may be swivelled from an operating position, where they are extending from the towingarm 60, into a transport position, where they are abutted against the towingarm 60 such that the right and left rakearms towing arm 60. This exemplary embodiment allows for a very efficient hay raking operation as well as for a small size of the hay rake, when the hay rake is transported from, for example, one field to another. In general,haymaker wheels 10 can be placed on right and left rakearms other rake arm FIGS. 8A and 8B show the additionalhay making wheels 68 in an upper and a lower perspective view, respectively. -
FIG. 9 shows a further exemplary embodiment of the hay rake according to the present invention. In the exemplary embodiment shown inFIG. 9 , crosswisemember 1 is fitted with third andfourth actuators 32′, 34′ that are manually operated. In this exemplary embodiment, third andfourth actuators 32′, 34′ are dual action screw jacks connected to centersection 17 at one end, and respectively to right and leftsections FIG. 9 , bothscrew jacks 32′, 34′ are actuated by aratchet mechanism 70 attached tocenter section 17, which is manually operated by theoperator using lever 72. In an alternative of this embodiment, separate levers and ratchets may be used for each actuator 32′, 34′. -
FIGS. 10 and 10 A show an exemplary embodiment of a mechanism for lengthening and shortening thecrosswise member 1. Thecrosswise member 1 is shown in a closed configuration inFIG. 10 , and in an open configuration inFIG. 10A . Right and leftsections crosswise member 1 are slidably movable with respect tocenter section 17. In this exemplary embodiment, afifth actuator 76 is attached at one end to centersection 17. Abalance arm 78 is pivotally attached tocenter section 17, and has oneend 84 to whichactuator 76 pivotally attaches. Afirst rod 80 is pivotally attached at one extremity to end 84 ofbalance arm 78, and at the other extremity toright section 2. Similarly, asecond rod 82 is attached at one extremity toopposite end 86 ofbalance arm 78, and at the other extremity to leftsection 3. As seen inFIG. 10 , operation offifth actuator 76 causes both right and leftsections member 1. Furthermore, there are providedstabilizers 151 between thesupports 100 and thecrosswise member 1 allowing for an improved stability with respect to the torsion of thesupports 100. - In an alternative of this embodiment, a similar configuration can be formed where a sixth actuator, similar to
fifth actuator 76, attaches to end 86 of thebalance arm 78. Also, both fifth and sixth actuators may be present. The fifth and sixth actuators may be dual action hydraulic cylinders, or may be manually operated screw jacks. -
FIG. 11 shows a further exemplary embodiment of hay rake according to the present invention.FIG. 11 shows a towable hay rake essentially similar to the hay rake shown inFIG. 2 with the exception that there is provided atowing arrangement 200. The towingarrangement 200 includes afirst beam 201 and asecond beam 202, each having an inner and an outer end. The outer end of each of the first andsecond beams appendages joints joints beams appendages appendages second rake arms beams vehicle connector 207. On the front side of thevehicle connector 207, there is provided a suitable connecting means for connecting the hay rake to a vehicle, such as a towing eyelet. On the back side of the vehicle connector, there are provided twojoints beams vehicle connector 207. When the first andsecond rake arms joints second rake arms vehicle connector 207. This embodiment allows for a hay rake, that is very compact in the closed position. -
FIG. 12 shows a further exemplary embodiment of hay rake according to the present invention.FIG. 12 shows a towable hay rake essentially similar to the hay rake shown inFIG. 7 with the exception that there is provided a stabilizingarrangement 220. The stabilizingarrangement 220 includesbeams appendages second rake arms beams appendages joints beams joints beams plate 227 which is resting on a slidingsection 260 on thetowing arm 60. Thebeams plate 227 by means ofjoints joints section 260 is an elevated section of thetowing arm 60 which is adapted to support the slidingplate 227. Atmiddle sections beams rotational joints joints plate 227 in a direction toward thecrosswise member 1, there are provided two furtherrotational joints plate 227. Between thejoints joints dampers - When the
rake arms plate 227 slides on the slidingsection 260 of thetowing arm 60 towards thecrosswise member 1. As a result, thedampers rake arms plate 227 slides on the slidingsection 260 of thetowing arm 60 in a direction away from thecrosswise member 1. As a result, thedampers dampers -
FIG. 13 shows a further exemplary embodiment of hay rake according to the present invention.FIG. 13 shows a towable hay rake essentially similar to the hay rake shown inFIG. 12 with the exception that thebeams joints plate 227 on the side of the slidingplate 227 facing thecrosswise member 1. Furthermore, thedamper 236 is connected to and betweenjoint 229 of the slidingplate 227 and a joint 240 at theappendage 223 and thedamper 237 is connected to and betweenjoint 228 of the slidingplate 227 and a joint 241 at theappendage 224. This arrangement provides for a very stable hay rake. -
FIG. 14 shows a further exemplary embodiment of hay rake according to the present invention.FIG. 14 shows a towable hay rake essentially similar to the hay rake shown inFIG. 12 with the exception that thebeams appendages joints FIG. 14 ,beam 221 is connected to one end of afurther beam 250 by means of arotational joint 251. Another end of thefurther beam 250 is connected to appendage 223 by the joint 225. Furthermore, inFIG. 14 ,beam 222 is connected to one end of afurther beam 252 by means of arotational joint 253. Another end of thefurther beam 252 is connected to appendage 224 by the joint 226. -
FIG. 15 shows a further exemplary embodiment of the hay rake according to the present invention.FIG. 15 shows a towable hay rake essentially similar to the hay rake shown inFIG. 13 except that between theappendages further beams damper 236 and thebeam 221 are connected to thefurther beam 270 by means ofrotational joints further beam 270 is connected to theappendage 223 viajoint 225. Furthermore, thedamper 237 and thebeam 222 are connected to thefurther beam 273 by means ofrotational joints further beam 273 is connected to theappendage 224 viajoint 226. -
FIGS. 16A to 16C illustrate a hay rake in accordance with still another embodiment of the present invention. According to this embodiment, the hay rake is provided with a flexibility system that reduces the stress on the various components of the hay rake when the hay rake is operated on uneven terrain. For instance,FIG. 16A is a side view that illustrates the hay rake being pulled, on even terrain, by a tractor via thetowbar 300. As shown in the figure, the hay rake further includes arotatable connection 400 at the location where the hay rake arm, e.g.,hay rake arm 4, connects to thecrosswise member 1. On even terrain, therotatable connection 400 enables thehay rake arm 4 to be connected to thecrosswise member 1 such that thesupport 100 is substantially perpendicular to thetowbar 300.FIG. 16C illustrates afirst rotatable connection 400a rotatably connecting thecrosswise member 1 to support 100 a which supportshay rake arm 7, and a secondrotatable connection 400 b rotatably connecting thecrosswise member 1 to support 100 b which supports thehay rake arm 4.FIG. 16B is another side view that illustrates the hay rake being pulled by a tractor via thetowbar 300, but in this figure, the hay rake is being pulled over uneven terrain. As shown inFIG. 16B , when the hay rake is pulled over uneven terrain, therotatable connection 400 enables thesupports 100 to rotate relative to thecrosswise member 1. Thus, thesupport 100 is not maintained in a substantially perpendicular position relative to thetowbar 300, but instead thehay rake arm 4 is permitted to be raised or lowered in accordance with the terrain. Because, in the embodiment shown inFIGS. 16A to 16C, eachsupport crosswise member 1 by respectiverotatable connections hay rake arms rotatable connection 400a may enable thehay rake arm 7 to be lowered while simultaneously therotatable connection 400 b may enable thehay rake arm 4 to be raised, or vice versa. - It will be apparent to those skilled in the art that various modifications and variations can be made in the structure and the methodology of the present invention, without departing from the spirit or scope of the invention. Thus, it is intended that the present invention cover the modifications and variations of this invention provided they come within the scope of the appended claims and their equivalents.
Claims (23)
1-20. (canceled)
21. A hay rake comprising:
a crosswise member having a right section and a left section;
a first rake arm having a front end and a back end, the first rake arm being pivotably mounted at its back end to the right section of the crosswise member so as to be moveable between an open position and a closed position;
a second rake arm having a front end and a back end, the second rake arm being pivotably mounted at its back end to the left section of the crosswise member so as to be moveable between an open position and a closed position;
a plurality of rotatable rake wheels mounted on each of the first and second rake arms; and
first and a second actuators, the first actuator having a first section connected to the right section of the crosswise member and a second section connected to the first rake arm, and the second actuator having a first section connected to the left section of the crosswise member and a second section connected to the second rake arm, wherein each actuator is extendable so as to move the rake arm to which it is connected from the open position to the closed position and any position therebetween, and is retractable so as to move the rake arm to which it is connected from the closed position to the open position and any position therebetween.
22. The hay rake according to claim 21 , wherein the first and second actuators are double acting actuators.
23. The hay rake according to claim 22 , wherein the first and second actuators are dual action hydraulic cylinders.
24. The hay rake according to claim 21 , wherein the actuators are configured to be simultaneously actuated, so as to simultaneously move the first and second rake arms.
25. The hay rake according to claim 21 , wherein the actuators are configured to be independently actuated, so as to independently move the first and second rake arms.
26. The hay rake according to claim 21 , wherein the actuators are configured to be selectively actuated simultaneously or independently, so as to one of simultaneously and independently move the first and second rake arms.
27. The hay rake according to claim 23 , further comprising a hydraulic power divider for dividing an actuating hydraulic fluid between the first and second hydraulic cylinders.
28. The hay rake according to claim 23 , further comprising automatic hydraulic lock valves associated with the first and second hydraulic cylinders, the hydraulic lock valves blocking movement of the corresponding first and second hydraulic cylinders when actuating hydraulic fluid is not being supplied to the corresponding first and second hydraulic cylinders.
29. The hay rake according to claim 23 , further comprising a first manual shutoff valve associated with the first hydraulic cylinder and a second manual shutoff valve associated with the second hydraulic cylinder, the first manual shutoff valve interrupting a flow of actuating hydraulic fluid to the first hydraulic cylinder to thereby block a movement of the first hydraulic cylinder and the second manual shutoff valve interrupting a flow of actuating hydraulic fluid to the second hydraulic cylinder to thereby block a movement of the second hydraulic cylinder.
30. The hay rake according to claim 23 , further comprising a control valve for each of the first and second hydraulic cylinders, the control valves providing synchronous and symmetrical movements of the right and left sections of the rake arms.
31. The hay rake according to claim 21 , further comprising a towbar connected to a center section of the crosswise member.
32. A hay rake comprising:
a crosswise member having a right section and a left section;
a first rake arm having a front end and a back end, the first rake arm being pivotably mounted at its back end to the right section of the crosswise member so as to be moveable between an open position and a closed position;
a second rake arm having a front end and a back end, the second rake arm being pivotably mounted at its back end to the left section of the crosswise member so as to be moveable between an open position and a closed position;
a plurality of rotatable rake wheels mounted on each of the first and second rake arms; and
first and a second actuators, the first actuator having a first section connected to the right section of the crosswise member and a second section connected to the first rake arm, and the second actuator having a first section connected to the left section of the crosswise member and a second section connected to the second rake arm, wherein each actuator operates to move the rake arm to which it is connected between the open position and the closed position;
right and left sections of the crosswise member attached telescopically to respective opposite ends of a center section of the crosswise member, such that each of the right and left sections are movable between an extended and a retracted position;
a third actuator connecting the center section of the crosswise member to the right section of the crosswise member; and
a fourth actuator connecting the center section of the crosswise member to the left section of the crosswise member, wherein the third and fourth actuators move the right and left sections between the extended and the retracted positions.
33. The hay rake according to claim 32 , further comprising:
a balance arm having two ends, the balance arm being rotatably connected, to the center section of the crosswise member at a point substantially halfway between the right end and the left end of the center section,
a first rod having an outer end and an inner end; and
a second rod having an outer end and an inner end, wherein the inner end and the outer end of the first rod are rotatably connected to the first end of the balance arm and to the right section of the crosswise member, respectively, and wherein the inner end and outer end of the second rod are rotatably connected to the second end of the balance arm and to the left section of the crosswise member, respectively.
34. The hay rake according to claim 32 , further comprising a fifth actuator having a first section connected to the center section of the crosswise member and a second section connected to the first end of the balance arm and a sixth actuator having a first section connected to the center section of the crosswise member and a second section connected to the second end of the balance arm.
35. The hay rake according to claim 33 , wherein the fifth and sixth actuators are selected from a group consisting of a manual dual-action screw jack and a dual action hydraulic cylinder.
36. The hay rake according to claim 32 , further comprising:
a vehicle connector; and
a first beam and a second beam, wherein the vehicle connector is connected to the first rake arm by the first beam and wherein the vehicle connector is connected to the second rake arm by the second beam.
37. The hay rake according to claim 32 , further comprising a stabilizing arrangement, the stabilizing arrangement including a first damper for damping a movement of the first rake arm and a second damper for damping a movement of the second rake arm.
38. The hay rake according to claim 32 , wherein each of the first and the second hay rake arms are mounted to the crosswise member by respective vertical supports, wherein each of the vertical supports are pivotable relative to the crosswise member around a substantially horizontal axis.
39. The hay rake according to claim 32 , further comprising:
a towbar connected to the crosswise member and configured for towing the hay rake, wherein each of the first and the second hay rake arms are pivotable relative to the towbar.
40. A hay rake comprising:
a crosswise member having a right section and a left section;
a first rake arm having a front end and a back end, the first rake arm being pivotably mounted at its back end to the right section of the crosswise member so as to be moveable between an open position and a closed position;
a second rake arm having a front end and a back end, the second rake arm being pivotably mounted at its back end to the left section of the crosswise member so as to be moveable between an open position and a closed position;
a plurality of rotatable rake wheels mounted on each of the first and second rake arms; and
first and a second actuators, the first actuator having a first section connected to the right section of the crosswise member and a second section connected to the first rake arm, and the second actuator having a first section connected to the left section of the crosswise member and a second section connected to the second rake arm, wherein each actuator operates to move the rake arm to which it is connected horizontally between the open position and the closed position.
41. The hay rake according to claim 40 , wherein the first and second actuators are double acting actuators.
42. The hay rake according to claim 41 , wherein the first and second actuators are dual action hydraulic cylinders.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
US10/859,027 US20050210856A1 (en) | 2002-06-21 | 2004-06-01 | Pull-type V-shaped hay rake |
Applications Claiming Priority (2)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
US10/177,303 US6865873B2 (en) | 2002-06-21 | 2002-06-21 | Pull type V-shaped hay rake |
US10/859,027 US20050210856A1 (en) | 2002-06-21 | 2004-06-01 | Pull-type V-shaped hay rake |
Related Parent Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
US10/177,303 Division US6865873B2 (en) | 2002-06-21 | 2002-06-21 | Pull type V-shaped hay rake |
Publications (1)
Publication Number | Publication Date |
---|---|
US20050210856A1 true US20050210856A1 (en) | 2005-09-29 |
Family
ID=29734355
Family Applications (2)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
US10/177,303 Expired - Lifetime US6865873B2 (en) | 2002-06-21 | 2002-06-21 | Pull type V-shaped hay rake |
US10/859,027 Abandoned US20050210856A1 (en) | 2002-06-21 | 2004-06-01 | Pull-type V-shaped hay rake |
Family Applications Before (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
US10/177,303 Expired - Lifetime US6865873B2 (en) | 2002-06-21 | 2002-06-21 | Pull type V-shaped hay rake |
Country Status (2)
Country | Link |
---|---|
US (2) | US6865873B2 (en) |
CA (1) | CA2391734C (en) |
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US20110017480A1 (en) * | 2009-06-11 | 2011-01-27 | Thompson Kent L | Folding Frame for an Agricultural Implement |
US8657025B2 (en) * | 2009-06-11 | 2014-02-25 | Forage Innovations B.V. | Folding frame for an agricultural implement |
US20120256396A1 (en) * | 2009-12-16 | 2012-10-11 | Lely Patent N.V. | Agricultural device |
US8567518B2 (en) * | 2009-12-16 | 2013-10-29 | Lely Patent N.V. | Agricultural device movable between a transport position and a working position |
US10058033B2 (en) | 2011-03-30 | 2018-08-28 | H & S Manufacturing Co., Inc. | Rake with shiftable cross member |
US8240118B1 (en) * | 2011-09-30 | 2012-08-14 | Johnson Mark A | Combination of hay rake and baler with hay deflector and method |
US8601781B2 (en) * | 2011-10-28 | 2013-12-10 | E I du Pont de Nemours and Company Rankin Equipment Co | System and apparatus for enabling raking and baling material in a single pass |
US8733074B2 (en) | 2011-10-28 | 2014-05-27 | E I Du Pont De Nemours And Company | System and apparatus for enabling raking and baling material in a single pass |
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US9167746B2 (en) * | 2012-04-10 | 2015-10-27 | Kuhn North America, Inc. | Carted wheel rake windrow adjustment apparatus |
Also Published As
Publication number | Publication date |
---|---|
CA2391734A1 (en) | 2003-12-21 |
CA2391734C (en) | 2006-10-31 |
US6865873B2 (en) | 2005-03-15 |
US20030233820A1 (en) | 2003-12-25 |
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