US20090160182A1 - Retainer Assembly for Conduit Connection - Google Patents
Retainer Assembly for Conduit Connection Download PDFInfo
- Publication number
- US20090160182A1 US20090160182A1 US12/393,137 US39313709A US2009160182A1 US 20090160182 A1 US20090160182 A1 US 20090160182A1 US 39313709 A US39313709 A US 39313709A US 2009160182 A1 US2009160182 A1 US 2009160182A1
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- United States
- Prior art keywords
- connection block
- conduit
- opening
- component
- retainer
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Abandoned
Links
- 230000014759 maintenance of location Effects 0.000 claims abstract description 27
- 238000000034 method Methods 0.000 claims description 10
- 238000004378 air conditioning Methods 0.000 description 8
- 230000008878 coupling Effects 0.000 description 7
- 238000010168 coupling process Methods 0.000 description 7
- 238000005859 coupling reaction Methods 0.000 description 7
- 238000009434 installation Methods 0.000 description 7
- 239000003507 refrigerant Substances 0.000 description 5
- 239000011324 bead Substances 0.000 description 2
- 230000008901 benefit Effects 0.000 description 2
- 229910000639 Spring steel Inorganic materials 0.000 description 1
- 230000009471 action Effects 0.000 description 1
- 239000012530 fluid Substances 0.000 description 1
- 239000000463 material Substances 0.000 description 1
- 230000013011 mating Effects 0.000 description 1
- 238000004806 packaging method and process Methods 0.000 description 1
- 230000008569 process Effects 0.000 description 1
- 239000012858 resilient material Substances 0.000 description 1
- 230000000717 retained effect Effects 0.000 description 1
- 238000007789 sealing Methods 0.000 description 1
- 238000006467 substitution reaction Methods 0.000 description 1
- 238000012795 verification Methods 0.000 description 1
Images
Classifications
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F16—ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
- F16L—PIPES; JOINTS OR FITTINGS FOR PIPES; SUPPORTS FOR PIPES, CABLES OR PROTECTIVE TUBING; MEANS FOR THERMAL INSULATION IN GENERAL
- F16L39/00—Joints or fittings for double-walled or multi-channel pipes or pipe assemblies
-
- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y10—TECHNICAL SUBJECTS COVERED BY FORMER USPC
- Y10T—TECHNICAL SUBJECTS COVERED BY FORMER US CLASSIFICATION
- Y10T29/00—Metal working
- Y10T29/49—Method of mechanical manufacture
- Y10T29/49826—Assembling or joining
- Y10T29/49947—Assembling or joining by applying separate fastener
- Y10T29/49963—Threaded fastener
Definitions
- the present invention relates generally to an assembly for connecting a conduit to a component or housing. More specifically, this invention relates to a retainer assembly including a retainer and a connection block used to align, assemble and secure the conduit to the component or housing.
- An automotive air-conditioning system is a closed system including the following components: a compressor, condenser, receiver/dryer or accumulator, expansion valve, evaporator and conduits or lines that connect the various components.
- a suitable refrigerant is contained within the closed system. Normally, installation of the various air-conditioning system components is independent of one another, with the conduits connected to the components after installation of the components.
- One prior art method uses an O-ring encircling an end of a tube mounted in a port on a component.
- An axial fastener encircles and connects the tube to the port.
- the axial fastener screws down over corresponding threads on the port to attach the tube to the component.
- a cantilevered connection typically includes a connecting block having a teardrop-shaped profile.
- the connecting block engages and traps the conduit in a conduit passage extending through the block.
- the connecting block further includes another passageway offset from and parallel to the conduit passage.
- a threaded fastener extends through the passageway and into the housing or component to secure the connecting block and conduit assembly to the component.
- U.S. Pat. No. 6,193,283 B1 to Pickett, Jr. et al. Pickett teaches an engagement device for a cantilevered conduit connection that provides an assembler with visible, audible and tactile redundant verification that the connection is completely engaged and that the conduit is mounted squarely within the conduit port of the housing.
- connection block includes one or more openings or passageways extending through the connection block that receive one or more conduits.
- the conduits are retained in the connection block such that an end of the conduit extends past a mounting surface of the connection block.
- An O-ring or sealing washer located on the end of the conduit provides a seal when the conduit end is inserted into a port in the component. Accordingly, once the conduit ends are inserted into the ports on the component, a fastener extending through an opening or passageway in the connection block secures the connection block to an outer surface of the component whereby the conduit is connected to the component.
- FIG. 1 One example of an assembly utilizing a threaded fastener and a connection block is illustrated in U.S. Pat. No. 6,382,678 B1 to Field et al.
- Field et al. discloses a bracket for securing a male coupling portion to a female body.
- a threaded fastener extends through the bracket and male coupling portion and is received in the female body. Tightening the fastener causes the bracket to engage the male coupling portion and move it toward the female body until the halves are fully mated.
- One drawback of such a system is that the bracket and threaded fastener are separate and free from the male coupling portion. Accordingly, the assembler must hold the bracket in place on the male coupling when installing the male coupling and tightening the threaded fastener.
- U.S. Pat. No. 5,323,808 to Shimizu illustrates a refrigerant charge connecting structure that maintains a connection between refrigerant plug valves and a refrigerant circuit receptacle.
- the structure includes identical latch members on each side of the plug block that engage latching notches located on the charge receptacle unit. The latches do not guide the plug block into place they simply act to retain the plug block once it engages the receptacle.
- connection block having respective ends of the conduit extending past the mating surface of the connection block is that if the respective halves or units are not brought together properly the O-rings or tube endforms used to provide a seal may be pinched, cut or otherwise damaged due to the misalignment. Depending upon the degree of misalignment, the O-rings may be forced out of the O-ring groove in which they are mounted.
- a retaining assembly for connecting conduit to a component of an air-conditioning system that minimizes misalignment of the connection and prevents damage to the seals and tube endforms while holding the conduit in place so that the operator can tighten a fastener used to secure the conduit to the component.
- a retainer assembly that minimizes misalignment of the conduit during connection to a component to reduce potential damage to a conduit seal and endform.
- the assembly also holds the conduit in place on the component to facilitate the assembler completing the attachment procedure without having to hold the conduit in place.
- the retainer assembly includes a conduit having a circumferential groove with a circumferential seal mounted thereon.
- a connection block having a conduit passageway therein receives and retains the conduit.
- a retainer including a U-shaped member attaches to the connection block. The base of the U-shaped member having an opening therein.
- a locking finger extends from the base member into the opening. The locking finger engages a portion of the component to retain the connection block and conduit combination in place on the component.
- a suitable fastener is utilized to secure the connection block and thus the conduit to the component.
- the retainer facilitates alignment and installation of the connection block on the component. Additionally, a method of using the device to connect conduit to a component is also disclosed.
- a retainer assembly including a connection block and conduit combination having a retainer attached thereto wherein the retainer holds the connection block and conduit combination adjacent to a component prior to installation of a fastener used to secure the connection block and conduit combination to the component.
- connection block includes a retention passageway and the component includes a threaded stud disposed in and extending through the passageway.
- FIG. 1 is an exploded perspective view of a retainer assembly according to the present invention
- FIG. 2 is a perspective view of the retainer assembly illustrated in FIG. 1 according to the present invention shown partially assembled;
- FIG. 3 is a partial top view of a retainer of the retainer assembly illustrated in FIG. 2 ;
- FIG. 4 is a cross section of the retainer taken along lines 4 - 4 of FIG. 3 ;
- FIG. 5 is a cross section of the retainer taken along lines 5 - 5 of FIG. 3 .
- a retainer assembly for coupling a conduit 12 to a component, illustrated in FIG. 1 as an expansion valve 14 , of an automotive air-conditioning system.
- the retainer assembly 10 facilitates proper alignment of the conduits 12 , which reduces possible damage to the conduit seal, illustrated as an O-ring 16 or the tube endforms 20 .
- the retainer assembly 10 holds the conduits 12 in place with respect to the expansion valve 14 while the assembler installs and tightens a fastener used to secure the conduits 12 to the expansion valve 14 .
- the present invention is described in detail with respect to an automobile air-conditioning system, the present invention is also well suited to other applications involving conduit connections, including steering, braking and hydraulic systems and other applications.
- the conduits 12 are shown herein connected to an expansion valve 14
- the present invention is also suitable for connecting the conduits 12 to various other components of an automobile air-conditioning system such as the condenser, evaporator, receiver/dryer, accumulator or compressor.
- the present invention may be used to connect conduit lines to one another.
- FIG. 1 is an exploded view of the retainer assembly 10 in accordance with the present invention.
- the retainer assembly 10 includes a connection block 18 .
- the conduits 12 are secured within the connection block 18 in a known manner.
- the tube endforms 20 of the conduits 12 typically include a circumferential groove 22 in which a circumferential seal, such as the O-ring 16 is placed.
- the conduits 12 are secured in the connection block 18 by a well known process which upsets the tube endforms 20 to create a bead 75 such that the tube endforms 20 of the conduits 12 extend outwardly from the connection block 18 .
- the tube endforms 20 fit into apertures or ports located on the expansion valve 14 when the connection block 18 is placed adjacent and secured to the expansion valve 14 .
- the O-rings 16 cooperate with an inner surface of the ports or apertures on the expansion valve 14 to form a fluid seal.
- connection block 18 is secured to the expansion valve 14 using a threaded stud or bolt 24 .
- a passageway 26 extends between a retaining surface 28 and an engagement surface 30 of the connection block 18 .
- the connection block 18 is placed adjacent the expansion valve 14 with the threaded stud 24 extending through the passageway 26 , see FIG. 2 .
- a nut or fastener 32 threadably received on the threaded stud 24 is tightened until it engages the retaining surface 28 of the connection block 18 to secure the connection block 18 to the expansion valve 14 .
- the retainer clip 34 facilitates alignment of the connection block 18 and correspondingly the conduits 12 with the ports located on the expansion valve 14 to facilitate installation and reduce potential damage to the O-rings 16 and tube endforms 20 thus ensuring a proper seal.
- the retainer clip 34 also holds the connection block 18 in position, adjacent to the expansion valve 14 , whereby the assembler's hands are free to install the nut or fastener 32 without having to hold the connection block 18 in place on the expansion valve 14 .
- the retainer clip 34 includes a U-shaped member 36 having a base 38 and two leg portions 40 .
- Each leg portion 40 is angled inwardly into the cavity 44 formed by the U-shaped member 36 .
- Each leg portion 40 includes a locking tab 42 also extending inwardly into the cavity 44 formed by the U-shaped member 36 .
- the locking tabs 42 also extend inwardly toward the base 38 .
- the U-shaped member 36 is sized to fit over the connection block 18 whereby the inner surface 46 (shown in FIG. 4 ) of the U-shaped member 36 contacts the engagement surface 30 of the connection block 18 and the ends 48 of the locking tabs 42 engage the retaining surface 28 of the connection block 18 .
- the U-shaped member 36 is formed of a resilient material such as spring steel. Other suitable materials having suitable resilience and strength may also be used.
- the base 38 of the U-shaped member 36 includes an opening 50 extending between the upper or outer surface 52 and lower or inner surface 46 of the base 38 .
- a pair of opposed locating tabs 54 extend inwardly into the cavity 44 formed by the U-shaped member 36 .
- the locating tabs 54 engage the sidewalls 56 of the passageway 26 to keep the retainer clip 34 positioned away from the beads 75 and in position on the connection block 18 . While shown with only two locating tabs 54 , it may be desirable to include additional locating tabs 54 as necessary.
- the retainer clip 34 further includes a pair of opposed fingers 62 extending inwardly into the opening 50 .
- the outer or free ends 64 of each finger 62 having an arcuate outer edge 66 having a radius slightly less than the radius of the threaded stud 24 .
- the fingers 62 are inclined inward toward the cavity 44 formed by the U-shaped member 36 at an angle a, see FIG. 5 .
- the angle a can vary within reasonable limits but is preferably in the range from 30° to 50°.
- the fingers 62 may be tilted such that the arcuate outer edge 66 is at an angle with the base 38 and lies along an imaginary helical path corresponding to the helical path of the threads on the threaded stud 24 .
- the arcuate outer edges 66 of the free ends 64 of the fingers 62 are sized such that they encompass or engage enough of the outer surface of the threaded stud 24 to accurately position or center the retainer clip 34 and thus the connection block 18 on the threaded stud 24 . While shown with only two fingers 62 , it may be desirable to use additional fingers 62 spaced circumferentially about the centerline 58 of the opening 50 to ensure that the centerline 58 of the opening 50 is aligned coaxially with the centerline 74 of the threaded stud 24 .
- FIG. 1 illustrates the retainer assembly 10 before assembly.
- the retainer clip 34 is placed on the connection block 18 by placing the locking tabs 42 against the outer edge 70 of the upper or engagement surface 30 of the connection block 18 .
- the outer surfaces 68 of the locking tabs 42 act as cam surfaces to spread the leg portions 40 outwardly enabling the retainer clip 34 to slide over and along the respective sides 72 of the connection block 18 .
- the locking tabs 42 slide along the respective sides 72 of the connection block 18 until the ends 48 of the locking tabs 42 clear the sides 72 and snap inwardly to engage the retaining surface 28 of the connection block 18 .
- the locating tabs 54 are inserted into the passageway 26 to properly locate the retainer clip 34 on the connection block 18 such that the respective centerlines 58 , 60 of the opening 50 of the retainer clip 34 and of the passageway 26 are coincidental.
- connection block 18 is placed on the expansion valve 14 by inserting the threaded stud 24 into the opening 50 of the retainer clip 34 .
- the assembler pushes the connection block 18 upwards, which deflects the fingers 62 outward such that they are guided by sliding along the outer threaded surface of the threaded stud 24 . Since the arcuate outer edge 66 of the fingers 62 has a slightly smaller radius than the threaded stud 24 , the fingers 62 function to center the threaded stud 24 such that the centerline 74 of the threaded stud 24 coincides with the respective centerlines 58 , 60 of the opening 50 of the retainer clip 34 and passageway 26 .
- connection block 18 is controlled. Controlling the position of the connection block 18 reduces the potential for misalignment of the tube endforms 20 with the ports on the expansion valve 14 and thus reduces the likelihood of O-ring 16 misalignment. Reducing the likelihood of O-ring 16 misalignment correspondingly reduces the likelihood that the O-ring 16 may be pinched, cut, forced out of the circumferential groove 22 or otherwise damaged causing a loss of seal that results in refrigerant loss and possible damage to the air-conditioning system or components thereof.
- the retainer clip 34 functions as a guide to ensure proper alignment of the connection block 18 and conduit 12 with the expansion valve 14 .
- the retainer clip 34 also holds the connection block 18 on the threaded stud 24 of the expansion valve 14 without the assembler having to hold it in place against the expansion valve 14 .
- the fingers 62 engage and grip the threads of the threaded stud 24 .
- the retainer clip 34 functions as a push type fastener that uses a camming action to secure the connection block 18 to the expansion valve 14 .
- the retainer clip 34 holds the connection block 18 and conduit 12 combination on the threaded stud 24 of the expansion valve 14 while the assembler places and tightens the nut 32 on the threaded stud 24 to secure the connection block 18 and conduit 12 combination to the expansion valve 14 .
- the present invention accurately positions a connection block and conduit combination on a component of an air-conditioning system and thereby significantly reduces misalignment of the conduit ends with the ports on the component, which reduces potential damage to the O-rings forming a seal between the conduit and component.
- the connection block is held in place by the retainer clip eliminating the need for the assembler to hold the connection block and conduit combination in place while threading and tightening the nut on the threaded stud.
- the assembler simply slides or pushes the connection block into position where the retainer clip enables the assembler to start and tighten the nut without having to hold the connection block and conduit combination in position.
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- Engineering & Computer Science (AREA)
- General Engineering & Computer Science (AREA)
- Mechanical Engineering (AREA)
- Quick-Acting Or Multi-Walled Pipe Joints (AREA)
- Valve Housings (AREA)
- Supports For Pipes And Cables (AREA)
Abstract
A retainer assembly that reduces misalignment of a conduit connection to a component. In addition, the assembly keeps the conduit in place on the component enabling the assembler to complete the assembly without having to hold the conduit. The assembly includes a connection block having a U-shaped retainer attached to the connection block. A retainer clip having an opening therein and a locking finger extending into the opening. The locking finger operative to engage a retention member located on the component to hold the connection block and conduit combination with respect to the component after which a fastener is used to secure the connection block and conduit combination to the component.
Description
- This application claims priority to U.S. patent application Ser. No. 11/282,737 filed on Nov. 18, 2005.
- 1. Field of the Invention
- The present invention relates generally to an assembly for connecting a conduit to a component or housing. More specifically, this invention relates to a retainer assembly including a retainer and a connection block used to align, assemble and secure the conduit to the component or housing.
- 2. Description of Related Art
- An automotive air-conditioning system is a closed system including the following components: a compressor, condenser, receiver/dryer or accumulator, expansion valve, evaporator and conduits or lines that connect the various components. A suitable refrigerant is contained within the closed system. Normally, installation of the various air-conditioning system components is independent of one another, with the conduits connected to the components after installation of the components.
- Vehicle space constraints and packaging considerations sometimes make it difficult for an assembler to attach the conduit to the various components due to their location on the vehicle. Depending on the location of the component on the vehicle and the adjacent space, it may be difficult for the assembler to hold the conduit in place on the component with one hand and use the other hand to insert and tighten a fastener used for securing the conduit to the component. In addition, since an assembler cannot always adequately view the connection between the conduit and component, installation of the conduit is done blind often resulting in misalignment and damage to the seal or endform.
- Different methods and apparatuses for securing conduit to the various components are known. One prior art method uses an O-ring encircling an end of a tube mounted in a port on a component. An axial fastener encircles and connects the tube to the port. As known in the art, the axial fastener screws down over corresponding threads on the port to attach the tube to the component.
- Another type of a conduit connection is a cantilevered conduit connection. A cantilevered connection typically includes a connecting block having a teardrop-shaped profile. The connecting block engages and traps the conduit in a conduit passage extending through the block. The connecting block further includes another passageway offset from and parallel to the conduit passage. A threaded fastener extends through the passageway and into the housing or component to secure the connecting block and conduit assembly to the component. One example of such a system is illustrated in U.S. Pat. No. 6,193,283 B1 to Pickett, Jr. et al. Pickett teaches an engagement device for a cantilevered conduit connection that provides an assembler with visible, audible and tactile redundant verification that the connection is completely engaged and that the conduit is mounted squarely within the conduit port of the housing.
- Another system utilized to attach a conduit to a component includes a connection block. Typically, the connection block includes one or more openings or passageways extending through the connection block that receive one or more conduits. The conduits are retained in the connection block such that an end of the conduit extends past a mounting surface of the connection block. An O-ring or sealing washer located on the end of the conduit provides a seal when the conduit end is inserted into a port in the component. Accordingly, once the conduit ends are inserted into the ports on the component, a fastener extending through an opening or passageway in the connection block secures the connection block to an outer surface of the component whereby the conduit is connected to the component.
- One example of an assembly utilizing a threaded fastener and a connection block is illustrated in U.S. Pat. No. 6,382,678 B1 to Field et al. Field et al. discloses a bracket for securing a male coupling portion to a female body. A threaded fastener extends through the bracket and male coupling portion and is received in the female body. Tightening the fastener causes the bracket to engage the male coupling portion and move it toward the female body until the halves are fully mated. One drawback of such a system is that the bracket and threaded fastener are separate and free from the male coupling portion. Accordingly, the assembler must hold the bracket in place on the male coupling when installing the male coupling and tightening the threaded fastener.
- U.S. Pat. No. 5,323,808 to Shimizu illustrates a refrigerant charge connecting structure that maintains a connection between refrigerant plug valves and a refrigerant circuit receptacle. The structure includes identical latch members on each side of the plug block that engage latching notches located on the charge receptacle unit. The latches do not guide the plug block into place they simply act to retain the plug block once it engages the receptacle.
- It should be understood that one drawback of using a connection block having respective ends of the conduit extending past the mating surface of the connection block is that if the respective halves or units are not brought together properly the O-rings or tube endforms used to provide a seal may be pinched, cut or otherwise damaged due to the misalignment. Depending upon the degree of misalignment, the O-rings may be forced out of the O-ring groove in which they are mounted. Finally, as set forth previously, due to the placement of the various components and space limitations it may not be possible for the assembler to see whether the block is properly installed and to hold the connection block in the proper position with one hand and tighten the fastener used to secure the connection block with the other.
- From the above, one can see that what is needed is a retaining assembly for connecting conduit to a component of an air-conditioning system that minimizes misalignment of the connection and prevents damage to the seals and tube endforms while holding the conduit in place so that the operator can tighten a fastener used to secure the conduit to the component.
- According to the present invention, there is provided a retainer assembly that minimizes misalignment of the conduit during connection to a component to reduce potential damage to a conduit seal and endform. The assembly also holds the conduit in place on the component to facilitate the assembler completing the attachment procedure without having to hold the conduit in place.
- In one form of the invention, the retainer assembly includes a conduit having a circumferential groove with a circumferential seal mounted thereon. A connection block having a conduit passageway therein receives and retains the conduit. A retainer including a U-shaped member attaches to the connection block. The base of the U-shaped member having an opening therein. A locking finger extends from the base member into the opening. The locking finger engages a portion of the component to retain the connection block and conduit combination in place on the component. A suitable fastener is utilized to secure the connection block and thus the conduit to the component. The retainer facilitates alignment and installation of the connection block on the component. Additionally, a method of using the device to connect conduit to a component is also disclosed.
- Accordingly, it is an object of the present invention to provide a retainer assembly including a connection block and conduit combination having a retainer attached thereto wherein the retainer holds the connection block and conduit combination adjacent to a component prior to installation of a fastener used to secure the connection block and conduit combination to the component.
- It is still another object to provide a retainer assembly that facilitates proper installation and aids proper alignment of the connection block and conduit combination with the component to maintain a seal between the conduit and component.
- It is still another object to provide a retainer assembly that aligns and retains a connection block and conduit combination to a component wherein the connection block includes a retention passageway and the component includes a threaded stud disposed in and extending through the passageway.
- These objects and other features, aspects and advantages of this invention will be more apparent after a reading of the following detailed description, appended claims and accompanying drawings.
-
FIG. 1 is an exploded perspective view of a retainer assembly according to the present invention; -
FIG. 2 is a perspective view of the retainer assembly illustrated inFIG. 1 according to the present invention shown partially assembled; -
FIG. 3 is a partial top view of a retainer of the retainer assembly illustrated inFIG. 2 ; -
FIG. 4 is a cross section of the retainer taken along lines 4-4 ofFIG. 3 ; and -
FIG. 5 is a cross section of the retainer taken along lines 5-5 ofFIG. 3 . - Disclosed is a retainer assembly, seen generally at 10, for coupling a
conduit 12 to a component, illustrated inFIG. 1 as anexpansion valve 14, of an automotive air-conditioning system. Theretainer assembly 10 facilitates proper alignment of theconduits 12, which reduces possible damage to the conduit seal, illustrated as an O-ring 16 or thetube endforms 20. In addition, theretainer assembly 10 holds theconduits 12 in place with respect to theexpansion valve 14 while the assembler installs and tightens a fastener used to secure theconduits 12 to theexpansion valve 14. - While the present invention is described in detail with respect to an automobile air-conditioning system, the present invention is also well suited to other applications involving conduit connections, including steering, braking and hydraulic systems and other applications. In addition, while the
conduits 12 are shown herein connected to anexpansion valve 14, the present invention is also suitable for connecting theconduits 12 to various other components of an automobile air-conditioning system such as the condenser, evaporator, receiver/dryer, accumulator or compressor. In addition, the present invention may be used to connect conduit lines to one another. - Referring now in detail to the figures, illustrated in
FIG. 1 is an exploded view of theretainer assembly 10 in accordance with the present invention. Theretainer assembly 10 includes aconnection block 18. As illustrated, theconduits 12 are secured within theconnection block 18 in a known manner. The tube endforms 20 of theconduits 12 typically include acircumferential groove 22 in which a circumferential seal, such as the O-ring 16 is placed. It should be understood that theconduits 12 are secured in theconnection block 18 by a well known process which upsets the tube endforms 20 to create abead 75 such that the tube endforms 20 of theconduits 12 extend outwardly from theconnection block 18. Accordingly, thetube endforms 20 fit into apertures or ports located on theexpansion valve 14 when theconnection block 18 is placed adjacent and secured to theexpansion valve 14. The O-rings 16 cooperate with an inner surface of the ports or apertures on theexpansion valve 14 to form a fluid seal. - In the illustrated embodiment, the
connection block 18 is secured to theexpansion valve 14 using a threaded stud orbolt 24. As shown, apassageway 26 extends between a retainingsurface 28 and anengagement surface 30 of theconnection block 18. Theconnection block 18 is placed adjacent theexpansion valve 14 with the threadedstud 24 extending through thepassageway 26, seeFIG. 2 . A nut orfastener 32 threadably received on the threadedstud 24 is tightened until it engages the retainingsurface 28 of theconnection block 18 to secure theconnection block 18 to theexpansion valve 14. - A retainer clip, seen generally at 34, attached to the
connection block 18 engages the threadedstud 24. As set forth more fully herein, theretainer clip 34 facilitates alignment of theconnection block 18 and correspondingly theconduits 12 with the ports located on theexpansion valve 14 to facilitate installation and reduce potential damage to the O-rings 16 and tube endforms 20 thus ensuring a proper seal. In addition, theretainer clip 34 also holds theconnection block 18 in position, adjacent to theexpansion valve 14, whereby the assembler's hands are free to install the nut orfastener 32 without having to hold theconnection block 18 in place on theexpansion valve 14. - As illustrated in the figures, the
retainer clip 34 includes aU-shaped member 36 having a base 38 and twoleg portions 40. Eachleg portion 40 is angled inwardly into the cavity 44 formed by theU-shaped member 36. Eachleg portion 40 includes alocking tab 42 also extending inwardly into the cavity 44 formed by theU-shaped member 36. The lockingtabs 42 also extend inwardly toward thebase 38. TheU-shaped member 36 is sized to fit over theconnection block 18 whereby the inner surface 46 (shown inFIG. 4 ) of theU-shaped member 36 contacts theengagement surface 30 of theconnection block 18 and theends 48 of the lockingtabs 42 engage the retainingsurface 28 of theconnection block 18. It should be understood that theU-shaped member 36 is formed of a resilient material such as spring steel. Other suitable materials having suitable resilience and strength may also be used. - As illustrated in
FIGS. 1-5 , thebase 38 of theU-shaped member 36 includes anopening 50 extending between the upper orouter surface 52 and lower orinner surface 46 of thebase 38. A pair of opposed locatingtabs 54 extend inwardly into the cavity 44 formed by theU-shaped member 36. As illustrated inFIG. 4 , the locatingtabs 54 engage thesidewalls 56 of thepassageway 26 to keep theretainer clip 34 positioned away from thebeads 75 and in position on theconnection block 18. While shown with only two locatingtabs 54, it may be desirable to include additional locatingtabs 54 as necessary. - The
retainer clip 34 further includes a pair ofopposed fingers 62 extending inwardly into theopening 50. The outer or free ends 64 of eachfinger 62 having an arcuateouter edge 66 having a radius slightly less than the radius of the threadedstud 24. In accordance with the invention, thefingers 62 are inclined inward toward the cavity 44 formed by theU-shaped member 36 at an angle a, seeFIG. 5 . The angle a can vary within reasonable limits but is preferably in the range from 30° to 50°. Additionally, thefingers 62 may be tilted such that the arcuateouter edge 66 is at an angle with thebase 38 and lies along an imaginary helical path corresponding to the helical path of the threads on the threadedstud 24. The arcuateouter edges 66 of the free ends 64 of thefingers 62 are sized such that they encompass or engage enough of the outer surface of the threadedstud 24 to accurately position or center theretainer clip 34 and thus theconnection block 18 on the threadedstud 24. While shown with only twofingers 62, it may be desirable to useadditional fingers 62 spaced circumferentially about thecenterline 58 of theopening 50 to ensure that thecenterline 58 of theopening 50 is aligned coaxially with thecenterline 74 of the threadedstud 24. -
FIG. 1 illustrates theretainer assembly 10 before assembly. As illustrated inFIG. 2 , theretainer clip 34 is placed on theconnection block 18 by placing the lockingtabs 42 against theouter edge 70 of the upper orengagement surface 30 of theconnection block 18. Theouter surfaces 68 of the lockingtabs 42 act as cam surfaces to spread theleg portions 40 outwardly enabling theretainer clip 34 to slide over and along therespective sides 72 of theconnection block 18. The lockingtabs 42 slide along therespective sides 72 of theconnection block 18 until the ends 48 of the lockingtabs 42 clear thesides 72 and snap inwardly to engage the retainingsurface 28 of theconnection block 18. As theretainer clip 34 is placed over theconnection block 18 the locatingtabs 54 are inserted into thepassageway 26 to properly locate theretainer clip 34 on theconnection block 18 such that therespective centerlines opening 50 of theretainer clip 34 and of thepassageway 26 are coincidental. - Once the
retainer clip 34 is in place, theconnection block 18 is placed on theexpansion valve 14 by inserting the threadedstud 24 into theopening 50 of theretainer clip 34. Using a suitable amount of force, the assembler pushes theconnection block 18 upwards, which deflects thefingers 62 outward such that they are guided by sliding along the outer threaded surface of the threadedstud 24. Since the arcuateouter edge 66 of thefingers 62 has a slightly smaller radius than the threadedstud 24, thefingers 62 function to center the threadedstud 24 such that thecenterline 74 of the threadedstud 24 coincides with therespective centerlines opening 50 of theretainer clip 34 andpassageway 26. - Accordingly, the position of the
connection block 18 is controlled. Controlling the position of theconnection block 18 reduces the potential for misalignment of thetube endforms 20 with the ports on theexpansion valve 14 and thus reduces the likelihood of O-ring 16 misalignment. Reducing the likelihood of O-ring 16 misalignment correspondingly reduces the likelihood that the O-ring 16 may be pinched, cut, forced out of thecircumferential groove 22 or otherwise damaged causing a loss of seal that results in refrigerant loss and possible damage to the air-conditioning system or components thereof. Thus, theretainer clip 34 functions as a guide to ensure proper alignment of theconnection block 18 andconduit 12 with theexpansion valve 14. - In addition, another advantage of the present invention is that the
retainer clip 34 also holds theconnection block 18 on the threadedstud 24 of theexpansion valve 14 without the assembler having to hold it in place against theexpansion valve 14. As illustrated inFIG. 5 , thefingers 62 engage and grip the threads of the threadedstud 24. Accordingly, theretainer clip 34 functions as a push type fastener that uses a camming action to secure theconnection block 18 to theexpansion valve 14. After the assembler slides theconnection block 18 in place, theretainer clip 34 holds theconnection block 18 andconduit 12 combination on the threadedstud 24 of theexpansion valve 14 while the assembler places and tightens thenut 32 on the threadedstud 24 to secure theconnection block 18 andconduit 12 combination to theexpansion valve 14. - Accordingly, referring in general to all of the figures, the present invention accurately positions a connection block and conduit combination on a component of an air-conditioning system and thereby significantly reduces misalignment of the conduit ends with the ports on the component, which reduces potential damage to the O-rings forming a seal between the conduit and component. In addition, once properly located, the connection block is held in place by the retainer clip eliminating the need for the assembler to hold the connection block and conduit combination in place while threading and tightening the nut on the threaded stud. The assembler simply slides or pushes the connection block into position where the retainer clip enables the assembler to start and tighten the nut without having to hold the connection block and conduit combination in position.
- While the present invention has been described in terms of a preferred embodiment, it is apparent that other forms could be adopted by one skilled in the art. In other words, the teachings of the present invention encompass any reasonable substitutions or equivalents of claim limitations. Accordingly, the scope of the present invention is limited only by the following claims.
Claims (20)
1-16. (canceled)
17. A method of aligning at least one conduit to a component, said aligning method comprising the steps of:
providing a connection block having an engagement surface and a retaining surface opposite said engagement surface, said connection block further having at least one conduit secured in at least one conduit passageway extending between said engagement surface and said retaining surface, said connection block further having a retention passage extending from said engagement surface to said retaining surface;
attaching a retainer to said connection block, said retainer having an opening therein and at least one finger extending into said opening, said retainer further having opposed locating tabs extending into said retention passage of said connection block;
providing said component with an outwardly extending member; and
placing said connection block adjacent said component such that said outwardly extending member of said component extends through said opening into said retention passage whereby said at least one finger engages said outwardly extending member to align the central axis of said outwardly extending component with the central axis of said retention passage of said member of said connection block.
18. The method of aligning at least one conduit to a component as set forth in claim 17 , further comprising the steps of:
locating said opening in the retainer adjacent said retention passage such that said outwardly extending member extends through said opening of said retainer and said retention passage; and
attaching a fastener to said outwardly extending member, said fastener engaging said retaining surface to secure said connection block to said component.
19. The method of aligning at least one conduit to a component as set forth in claim 17 wherein the step of providing said component with an outwardly extending member includes providing a threaded stud on said component.
20. The method of aligning at least one conduit to a component as set forth in claim 19 further comprising the steps of:
locating said retainer on said connection block such that said opening therein is adjacent said retention passage;
placing said connection block on said threaded stud such that said threaded stud is inserted into said opening whereby said at least one finger engages said threaded stud;
pushing said connection block toward said component to deflect said at least one finger causing it to slide along said threaded stud until said at least one conduit is seated in said component and said at least one finger engages said threaded stud to hold said connection block in position; and
placing a fastener on said threaded stud, said fastener engaging said retaining surface of said connection block to secure said connection block to said component.
21. An alignment device for aligning at least one conduit within at least one conduit port of a housing component having a partially threaded stud thereon, said alignment device comprising:
a connection block having at least one conduit passage therein and a retention passageway offset from said at least one conduit passage, said at least one conduit being mounted in said at least one conduit passage, said retention passageway having a central axis; and
means for aligning said at least one conduit in said at least one conduit port of said housing component, said means for aligning comprising a retainer clip attached to said connection block, said retainer clip having an opening with a central axis, said opening further having a means for maintaining said central axis of said opening and said central axis of said retention passageway substantially coincidentally aligned, whereby as said at least one conduit is inserted into said at least one conduit port of said housing, said threaded stud of said housing component is inserted into said opening of said retainer clip such that the central axis of said threaded stud, said central axis of said opening and said central axis of said retention passageway substantially maintains coincidental alignment until said at least one conduit becomes fully inserted into said at least one port.
22. The alignment device as claimed in claim 21 wherein said at least one conduit passage of said connection block is slotted such that said at least one conduit passage is open longitudinally and laterally to enable easier assembly of said at least one conduit to said connection block.
23. The alignment device as claimed in claim 21 wherein said retainer clip further comprises a substantially U-shaped member having a base and two leg portions, each leg portion extending in a direction away from said base, said opening being located in said base, each of said legs having a locking tab located on a distal end thereof, whereby each of said locking tabs engages said connection block to attach said retainer clip to said connection block.
24. The alignment device as claimed in claim 21 wherein said means for maintaining said central axis of said opening and said central axis of said retention passageway substantially coincidentally aligned further comprises:
at least one finger integrally formed with said retainer, said at least one finger extending into said opening of said retainer clip; and
at least one locating tab integrally formed with said retainer, said at least one locating tab extending into said retention passageway when said retainer clip is attached to said connection block such that said at least one locating tab contacts a sidewall of said retention passageway to orient said opening of said retainer with respect to said retention passageway whereby said central axis of said opening and said central axis of said retention passageway are substantially co-linear.
25. The alignment device as claimed in claim 24 wherein said at least one finger comprises a plurality of fingers extending into said opening, each of said plurality of fingers further having an inclined portion at an angle with respect to a base portion and having an arcuate outer edge.
26. The alignment device as claimed in claim 24 wherein said partially threaded stud member is attached to said housing, and further wherein said at least one finger of said retainer clip engages said partially threaded stud member to hold said connection block to said housing component.
27. The alignment device as claimed in claim 21 further comprising a fastener threadably received on said partially threaded stud member, said fastener operative to secure said connection block to said housing component.
28. The alignment device as claimed in claim 26 further comprising a fastener threadably received on said partially threaded stud member, said fastener operative to secure said connection block to said housing component.
29. The alignment device as claimed in claim 28 wherein said at least one finger comprises a plurality of fingers extending into said opening, each of said plurality of fingers inclined at an angle with respect to said base and further having an arcuate outer edge such that each of said plurality of fingers engage said partially threaded stud member to hold said connection block to said housing component.
30. The alignment device as claimed in claim 28 wherein said retainer clip further comprises a U-shaped member having a base and two leg portions, said opening located in said base, each of said legs having a locking tab located on a distal end thereof, said locking tabs engaging said connection block to attach said retainer clip to said connection block.
31. The alignment device as claimed in claim 21 wherein said retainer clip is attached to said connection block such that said opening of said retainer clip is adjacent said retention passage.
32. An alignment device for aligning a conduit within a conduit port of a housing component having a partially threaded stud thereon, said alignment device comprising:
a connection block having at least one conduit passage therein and a retention passageway offset from said at least one conduit passage, said conduit being mounted in said at least one conduit passage, said retention passageway having a central axis;
means for aligning said at least one conduit in said conduit port of said housing component, said means for aligning comprising a retainer clip mounted to said connection block, said retainer clip having an opening having a central axis, said opening further having means for maintaining said central axis of said opening of said retainer clip and said central axis of said retention passageway substantially coincidentally aligned.
33. The alignment device as claimed in claim 32 wherein said at least one conduit passage of said connection block is slotted such that said at least one conduit passage is open longitudinally and laterally to enable easier assembly of said at least one conduit to said connection block.
34. The alignment device as claimed in claim 32 wherein said retainer clip further comprises a substantially U-shaped member having a base and two leg portions, each leg portion extending in a direction away from said base, said opening being located in said base, each of said legs having a locking tab located on a distal end thereof, whereby each of said locking tabs engages said connection block to attach said retainer clip to said connection block.
35. The alignment device as claimed in claim 32 wherein said means for maintaining said central axis of said opening and said central axis of said retention passageway substantially coincidentally aligned further comprises:
at least one finger integrally formed with said retainer, said at least one finger extending into said opening of said retainer clip; and
at least one locating tab integrally formed with said retainer, said at least one locating tab extending into said retention passageway when said retainer clip is attached to said connection block such that said at least one locating tab contacts a sidewall of said retention passageway to orient said opening of said retainer with respect to said retention passageway whereby said central axis of said opening and said central axis of said retention passageway are substantially co-linear.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
US12/393,137 US20090160182A1 (en) | 2005-11-18 | 2009-02-26 | Retainer Assembly for Conduit Connection |
Applications Claiming Priority (2)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
US11/282,737 US7510217B2 (en) | 2005-11-18 | 2005-11-18 | Retainer assembly for conduit connection |
US12/393,137 US20090160182A1 (en) | 2005-11-18 | 2009-02-26 | Retainer Assembly for Conduit Connection |
Related Parent Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
US11/282,737 Continuation US7510217B2 (en) | 2005-11-18 | 2005-11-18 | Retainer assembly for conduit connection |
Publications (1)
Publication Number | Publication Date |
---|---|
US20090160182A1 true US20090160182A1 (en) | 2009-06-25 |
Family
ID=38052761
Family Applications (2)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
US11/282,737 Expired - Fee Related US7510217B2 (en) | 2005-11-18 | 2005-11-18 | Retainer assembly for conduit connection |
US12/393,137 Abandoned US20090160182A1 (en) | 2005-11-18 | 2009-02-26 | Retainer Assembly for Conduit Connection |
Family Applications Before (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
US11/282,737 Expired - Fee Related US7510217B2 (en) | 2005-11-18 | 2005-11-18 | Retainer assembly for conduit connection |
Country Status (1)
Country | Link |
---|---|
US (2) | US7510217B2 (en) |
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN103567755A (en) * | 2012-08-07 | 2014-02-12 | 珠海格力电器股份有限公司 | Tooling plate |
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US10164373B1 (en) * | 2013-03-15 | 2018-12-25 | Koolance, Inc. | Automatic engagement system for liquid or power connections |
US9114687B2 (en) * | 2013-03-15 | 2015-08-25 | Denso International America, Inc. | AC dual joint-block design |
EP3872383B1 (en) * | 2020-02-28 | 2022-09-07 | A. Raymond et Cie | Adaptor with quick connect coupling |
CN116329917B (en) * | 2023-06-01 | 2023-08-01 | 中科摩通(常州)智能制造股份有限公司 | Pipeline assembly station for expansion valve and assembly method |
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Also Published As
Publication number | Publication date |
---|---|
US20070114790A1 (en) | 2007-05-24 |
US7510217B2 (en) | 2009-03-31 |
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Legal Events
Date | Code | Title | Description |
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STCB | Information on status: application discontinuation |
Free format text: ABANDONED -- FAILURE TO RESPOND TO AN OFFICE ACTION |