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WO2018173688A1 - Raccord étanche à l'eau - Google Patents

Raccord étanche à l'eau Download PDF

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Publication number
WO2018173688A1
WO2018173688A1 PCT/JP2018/007970 JP2018007970W WO2018173688A1 WO 2018173688 A1 WO2018173688 A1 WO 2018173688A1 JP 2018007970 W JP2018007970 W JP 2018007970W WO 2018173688 A1 WO2018173688 A1 WO 2018173688A1
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WO
WIPO (PCT)
Prior art keywords
rubber plug
rear end
housing
holder
connector
Prior art date
Application number
PCT/JP2018/007970
Other languages
English (en)
Japanese (ja)
Inventor
宏芳 前岨
一尾 敏文
Original Assignee
株式会社オートネットワーク技術研究所
住友電装株式会社
住友電気工業株式会社
Priority date (The priority date 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 date listed.)
Filing date
Publication date
Application filed by 株式会社オートネットワーク技術研究所, 住友電装株式会社, 住友電気工業株式会社 filed Critical 株式会社オートネットワーク技術研究所
Publication of WO2018173688A1 publication Critical patent/WO2018173688A1/fr

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  • the present invention relates to a waterproof connector.
  • a waterproof connector that prevents water from entering the connector.
  • a rubber plug is fitted into a cylindrical portion provided at the rear portion of the housing.
  • the rubber plug closely adheres to the outer peripheral surface of the electric wire drawn rearward through the inside of the cylindrical portion in a liquid-tight manner, and closely adheres to the inner peripheral surface of the cylindrical portion in a liquid-tight manner.
  • a rubber plug holder for preventing the rubber plug from being detached is attached to the rear side of the rubber plug.
  • the rubber plug holder includes a rear wall that faces the rear surface of the rubber plug, and an elastic locking piece that can be locked to a locking projection protruding from the outer surface of the housing. When the locking projection and the elastic locking piece are locked in the front-rear direction (the direction in which the rubber plug holder is detached), the rubber plug holder is prevented from being detached.
  • the rubber plug with a portion (called a clamping portion) that is sandwiched between the rear end portion of the cylindrical portion and the rear wall of the rubber plug holder.
  • a clamping portion By providing a pinching portion projecting on the outer peripheral surface of the rubber plug, the pinching portion is sandwiched between the rear end portion of the cylindrical portion and the rear wall of the rubber plug holder, and elastically adheres to both, and the cylindrical portion It seems that the gap between the rear end of the rubber plug and the rear wall of the rubber plug holder is closed.
  • the rear wall of the rubber plug holder is pressed rearward (withdrawal direction) by the elastic force of the clamping portion. If the rubber plug holder is pressed in the disengagement direction with an excessive force, an excessive force continues to act on the locking surface between the locking protrusion and the elastic locking piece, which is not desirable.
  • the present invention has been completed based on the above circumstances, and provides a waterproof connector capable of enhancing waterproofness while preventing the rubber plug holder from being pressed in the detaching direction with excessive force.
  • the purpose is to do.
  • the waterproof connector of the present invention the terminal fitting connected to the terminal portion of the electric wire is accommodated in the housing, and the tubular portion that opens to the rear is provided in the rear portion, and is fitted into the tubular portion, A rubber plug that adheres in a liquid-tight manner to the outer peripheral surface of the electric wire drawn out rearward through the inside of the cylindrical portion and in a liquid-tight manner to an inner peripheral surface of the cylindrical portion; and after the rubber plug A rubber plug holder that is attached to a side and prevents the rubber plug from being detached.
  • the rubber plug holder has a rear wall facing the rear surface of the rubber plug, and the housing and the rubber plug holder
  • the rubber plug has a lock structure that is locked in the front-rear direction to prevent the rubber plug holder from being detached, and the rubber plug protrudes from the outer peripheral surface of the rubber plug so as to protrude from the rear end portion of the cylindrical portion and the rubber plug Having a flange portion disposed between the holder and the rear wall, A protrusion that protru
  • the waterproof property can be improved.
  • the elastic force of the flange portion and the ridge portion is distributed in the direction intersecting the front-rear direction by an inclined surface formed on at least one of the contact surfaces between the rear end portion of the cylindrical portion and the ridge portion. Therefore, it is possible to prevent the rubber plug holder from being pressed in the detaching direction with an excessive force.
  • Sectional drawing which is a connector in a present Example, and shows a normal fitting state with the other party connector Exploded perspective view showing connector A perspective view showing a housing Perspective view showing rubber stopper A perspective view showing the connector viewed from the front Perspective view showing the connector as seen from the rear Top view showing connector Bottom view showing connector Side view showing connector Sectional view showing connector
  • the inclined surface may be formed at a rear end portion of the cylindrical portion and provided along an outer peripheral edge of the rear end portion of the cylindrical portion. According to such a structure, the protrusion part contact
  • the waterproof connector (hereinafter simply referred to as connector C) in the present embodiment is a shielded connector that is connected to a terminal portion of a shielded cable (electric wire) 10.
  • the connector C is a communication connector mounted on a vehicle such as an electric vehicle or a hybrid vehicle, and is connected to a counterpart connector 80 provided on an in-vehicle camera module such as a back monitor camera.
  • the fitting surface side of both the connectors C and 80 (the left side of FIG. 1 for the connector C and the right side of FIG. 1 for the mating connector 80) is the front side, and the upper side of FIG. A description will be given assuming that the side of the connectors C and 80 where the lock structure is provided is the upper side and the lower side is the lower side.
  • the shielded cable 10 is a cable capable of high-speed communication, and includes a plurality of electric wires 11 as signal lines, a shield member 12 that collectively surrounds the electric wires 11, and an insulating sheath 13 that covers the outer periphery of the shield member 12. And have.
  • the shield member 12 for example, a braided member in which a metal strand is braided or a metal foil such as an aluminum foil can be used.
  • the connector C includes a housing 30 in which a shield terminal (terminal fitting) 20 connected to the terminal portion of the shielded cable 10 is accommodated.
  • the shield terminal 20 is a female terminal fitting to which a tab portion 84 of a mating shield terminal 83 described later is inserted and connected when the connector C and the mating connector 80 are properly fitted.
  • the shield terminal 20 includes an inner conductor 21 connected to the terminal portion of each electric wire 11, a dielectric 22 that houses the inner conductor 21, and an outer conductor 23 that covers the outer surface of the dielectric 22 (see FIG. 2). ).
  • the inner conductor 21 is fixed to the terminal portion of each electric wire 11 by soldering.
  • the dielectric 22 is made of an insulating synthetic resin material and can accommodate a plurality of inner conductors 21.
  • the inner conductor 21 is arranged in a plurality of stages (two stages in the present embodiment) in the vertical direction, and a plurality (three in this embodiment) are arranged in each stage.
  • the outer conductor 23 is a conductive metal plate, and has an upper shell 24 that covers the upper surface side of the dielectric 22 and a lower shell 25 that covers the lower surface side. The upper shell 24 and the lower shell 25 are combined in the vertical direction. The rear end portion of the outer conductor 23 is crimped along the outer peripheral surface of the shield member 12 exposed at the end portion of the shield cable 10.
  • the housing 30 is made of an insulating synthetic resin, and includes a terminal accommodating portion 31 in which the shield terminal 20 is accommodated, and an outer cylindrical portion 32 that surrounds the outer periphery of the terminal accommodating portion 31.
  • a space between the terminal accommodating portion 31 and the outer cylinder portion 32 is a fitting space 33 in which the hood portion 82 of the mating connector 80 is fitted.
  • the terminal accommodating portion 31 and the outer cylinder portion 32 are integrally connected by a connecting portion 34.
  • a rubber ring 35 that seals the fitting portion between the mating connector 80 and the connector C in a liquid-tight manner is fitted to the back end portion of the fitting space 33.
  • the terminal accommodating portion 31 is provided with a terminal locking portion 36 that is locked to the shield terminal 20 and prevents the shield terminal 20 from coming off.
  • the terminal locking portion 36 is cantilevered with a free end at the front end, and is locked to the outer conductor 23 of the shield terminal 20.
  • a lock arm 37 that locks the mating connector 80 and the connector C in a proper fitting state.
  • a pair of protective walls 38 rises on both sides of the lock arm 37.
  • the protective wall 38 is provided so as to protrude rearward from the connecting portion 34 and covers the rear end of the lock arm 37.
  • a cylindrical part 39 having a cylindrical shape that is continuous with the terminal accommodating part 31 and opens rearward is provided at the rear part of the housing 30 .
  • the tubular portion 39 surrounds the shielded cable 10 that is led out from the terminal accommodating portion 31 to the rear side.
  • a rubber plug 50 is accommodated inside the cylindrical portion 39.
  • a portion of the inner peripheral surface of the cylindrical portion 39 to which the rubber plug 50 is in close contact is an arc surface having no irregularities (see FIG. 3).
  • the rear end portion of the outer peripheral surface of the cylindrical portion 39 (the portion on the rear side of the pair of protective walls 38) is a portion that covers a peripheral wall 62 of a rubber plug holder 60 described later.
  • the housing 30 is provided with a lock protrusion 41 that constitutes a lock structure that prevents a rubber stopper holder 60 described later from being detached (see FIG. 10).
  • the lock protrusion 41 is provided on the outer peripheral surface of the tubular portion 39.
  • a pair of lock protrusions 41 is provided on both sides of the cylindrical portion 39 in the width direction (radial direction). The pair of lock protrusions 41 are symmetric with respect to the central axis of the cylindrical portion 39.
  • the front surface of the lock protrusion 41 is a housing side locking surface 42 to which the lock piece 66 of the rubber plug holder 60 is locked.
  • the housing-side locking surface 42 is an upright surface that is orthogonal to the front-rear direction.
  • the rear surface of the lock protrusion 41 is a guide surface 43 that guides the climbing of the lock piece 66.
  • the guide surface 43 is inclined so that the projecting dimension gradually increases from the rear end of the lock protrusion 41 toward the front.
  • An inclined surface (hereinafter referred to as a housing-side inclined surface 44) that is inclined with respect to the front-rear direction is formed at the rear end portion of the housing 30 (rear end portion of the tubular portion 39).
  • the housing side inclined surface 44 will be described in detail later.
  • the connector C has a rubber plug 50 that can be fitted into the cylindrical portion 39.
  • the rubber plug 50 is made of rubber such as silicon rubber, and is in liquid-tight contact with the outer peripheral surface of the shielded cable 10 that is drawn rearward through the inside of the cylindrical portion 39 and at the inner peripheral surface of the cylindrical portion 39. It adheres in a liquid-tight manner.
  • the rubber plug 50 as a whole has a cylindrical shape along the outer shape of the shield cable 10, and an insertion hole 51 through which the shield cable 10 is inserted is formed at a substantially central portion of the rubber plug 50.
  • the inner peripheral surface of the insertion hole 51 has a substantially identical circular shape over the entire length of the rubber plug 50.
  • the rubber plug 50 includes a main body portion 52 that fits into the tubular portion 39 of the housing 30 and a fitting portion 53 that fits into a through hole 63 of the rubber plug holder 60 described later.
  • a plurality of outer peripheral lip portions 54 protrude from the outer peripheral surface of the main body 52.
  • the outer peripheral lip portion 54 is elastically adhered to the inner peripheral surface of the tubular portion 39.
  • a plurality of inner peripheral lip portions 55 project from the inner peripheral surface of the main body portion 52.
  • the inner peripheral lip portion 55 is elastically adhered to the outer peripheral surface of the shield cable 10.
  • the fitting portion 53 has a cylindrical shape aligned with the through hole 63 of the rubber plug holder 60.
  • the outer diameter dimension of the fitting part 53 is slightly smaller than the outer diameter dimension of the main body part 52.
  • the fitting portion 53 passes through a through hole 63 of the rubber plug holder 60 described later and protrudes rearward from the rear wall 61.
  • a flange portion 56 disposed between the rear end portion of the tubular portion 39 and the rear wall 61 of the rubber plug holder 60 is provided.
  • the collar portion 56 will be described in detail later.
  • the connector C has a rubber plug holder 60 which is attached to the rear side of the rubber plug 50 and prevents the rubber plug 50 from being detached.
  • the rubber plug holder 60 is made of a synthetic resin and has a cap shape covering the tubular portion 39 as a whole.
  • the rubber plug holder 60 includes a rear wall 61 that faces the rear surface of the rubber plug 50 (the rear surface of the flange portion 56), and a peripheral wall 62 that covers the outer peripheral surface of the tubular portion 39.
  • the rear wall 61 has an annular shape, and a through hole 63 through which the shield cable 10 is inserted in a loosely inserted state is formed at the center.
  • the rear wall 61 has a wall surface orthogonal to the front-rear direction and covers the rear surface of the flange portion 56.
  • the peripheral wall 62 protrudes forward from the outer peripheral edge of the rear wall 61.
  • the peripheral wall 62 has a cylindrical shape that can be fitted to the rear end portion of the tubular portion 39 and substantially covers the entire circumference of the tubular portion 39.
  • the peripheral wall 62 has an upper surface wall 64 that covers the upper surface side of the tubular portion 39 (see FIG. 7) and a lower surface wall 65 that covers the lower surface side of the tubular portion 39 (see FIG. 8).
  • the upper surface wall 64 covers the vicinity of the rear end of the protective wall 38.
  • the lower surface wall 65 has a projecting dimension larger from the rear wall 61 than the upper surface wall 64, and covers the vicinity of the rear end of the outer cylindrical portion 32.
  • a groove 65A into which a rib 46 projecting from the outer peripheral surface of the cylindrical portion 39 is inserted is formed in an elongated shape in the front-rear direction.
  • the rubber plug holder 60 is provided with a lock piece 66 constituting a lock structure that prevents the rubber plug holder 60 from being detached (see FIG. 9).
  • the lock piece 66 has a cantilever shape whose front end is a free end, and a pair is provided at positions corresponding to the lock protrusions 41 of the housing 30 (both ends in the width direction of the rubber plug holder 60).
  • the lock piece 66 is provided between the upper wall 64 and the lower wall 65 and projects forward from the rear wall 61. As shown in FIG. 2, the inner surface of the lock piece 66 is an arc surface along the outer peripheral surface of the cylindrical portion 39.
  • the lock piece 66 has a pair of arm portions 67 that are long in the front-rear direction, and a lock portion 68 that is engaged with the lock protrusion 41 is passed to the front end portions of the pair of arm portions 67.
  • the rear surface of the lock portion 68 is a holder side locking surface 69 that locks to the housing side locking surface 42.
  • the holder side locking surface 69 is a surface orthogonal to the front-rear direction.
  • the rubber plug 50 protrudes forward from the flange portion 56 projecting from the outer peripheral surface of the rubber plug 50, and comes into contact with the rear end portion of the tubular portion 39. And a protrusion 57.
  • the flange 56 is provided at a position closer to the rear side than the center of the rubber plug 50 in the front-rear direction.
  • the flange 56 protrudes from the outer peripheral surface of the rubber plug 50 in a direction orthogonal to the axial direction of the rubber plug 50 and has a plate surface orthogonal to the axial direction of the rubber plug 50.
  • the collar portion 56 is continuously provided on the entire circumference of the rubber plug 50, and the protruding dimension from the outer peripheral surface of the rubber plug 50 is constant over the entire circumference.
  • the flange portion 56 protrudes outward from the outer peripheral lip portion 54.
  • the thickness dimension (dimension of the front-back direction) of the collar part 56 is made constant in the perimeter.
  • the ridge portion 57 protrudes from the front surface of the flange portion 56.
  • the protrusion 57 is provided continuously on the entire circumference of the flange 56, and has an annular shape with the entire circumference closed when viewed from the front.
  • the protruding portion 57 is provided along the outer peripheral edge of the flange portion 56.
  • the protrusion 57 is formed in a substantially half region in the protruding direction of the flange 56 (the radial direction of the rubber plug 50).
  • the rear surface of the collar portion 56 is a flat surface without unevenness.
  • a housing-side inclined surface 44 and a rubber plug-side inclined surface 58 that are inclined with respect to the front-rear direction are formed on the contact surface between the rear end portion of the tubular portion 39 and the protrusion 57. ing.
  • the housing side inclined surface 44 is provided along the outer peripheral side edge of the rear end portion of the cylindrical portion 39.
  • the housing-side inclined surface 44 is continuous over the entire circumference along the outer peripheral edge of the cylindrical portion 39.
  • the housing-side inclined surface 44 is inclined so that the outer diameter of the cylindrical portion 39 gradually increases from the rear end toward the front, in other words, the protrusion 57 that contacts the housing-side inclined surface 44 from the rear side. It has a slope that slides forward and outward.
  • the width dimension of the housing-side inclined surface 44 (the dimension in the radial direction of the cylindrical portion 39) is constant over the entire circumference.
  • a tapered portion 45 is formed at the inner peripheral edge of the rear end portion of the tubular portion 39 so as to be inclined so that the inner diameter dimension decreases toward the front.
  • the rubber plug-side inclined surface 58 is formed on the radially inner surface (inner peripheral surface) of the protrusion 57.
  • the rubber plug-side inclined surface 58 is continuous over the entire circumference along the inner peripheral surface of the protrusion 57.
  • the rubber plug-side inclined surface 58 is inclined in the same direction as the housing-side inclined surface 44, in other words, is inclined so that the inner diameter dimension of the protrusion 57 gradually increases from the rear end toward the front.
  • the rubber plug side inclined surface 58 and the housing side inclined surface 44 have the same inclination angle.
  • the width dimension of the rubber plug side inclined surface 58 (the dimension in the radial direction of the rubber plug 50) is larger than the width dimension of the housing side inclined surface 44.
  • the size in the front-rear direction of the rubber plug-side inclined surface 58 is made larger than the size in the front-rear direction of the housing-side inclined surface 44.
  • the outer peripheral surface of the protrusion 57 is located at the end of the flange 56 in the radial direction, and is a surface parallel to the axial direction of the rubber plug 50.
  • the mating connector 80 is a shielded connector having the same configuration as the connector C. Similarly to the connector C, the mating connector 80 has a mating housing 81 in which a mating shield terminal 83 connected to the terminal portion of the mating shield cable 86 is housed. Is provided with a cylindrical portion 89 opening rearward.
  • the counterpart shield terminal 83 is a male terminal fitting having a tab portion 84 protruding forward.
  • a hood portion 82 that opens forward and fits into the fitting space 33 of the connector C is provided at the front portion of the counterpart housing 81.
  • the cylindrical portion 89 is fitted with a counterpart rubber plug 87 that is liquid tightly attached to the outer peripheral surface of the counterpart shielded cable 86 and that is closely attached to the inner peripheral surface of the cylindrical portion 89 in a liquid-tight manner.
  • a mating rubber plug holder 88 for preventing the mating rubber plug 87 from being detached is attached.
  • the mating housing 81 and the mating rubber plug holder 88 have a lock structure that is locked in the front-rear direction and prevents the mating rubber plug holder 88 from being detached.
  • the mating rubber plug 87 has a flange 87A that protrudes from the outer peripheral surface of the rubber plug 87 and is arranged between the rear end of the cylindrical portion 89 and the rear wall 88A of the mating rubber plug holder 88.
  • the flange portion 87 ⁇ / b> A has a protrusion 87 ⁇ / b> B that protrudes forward and contacts the rear end portion of the tubular portion 89.
  • a housing-side inclined surface 89A and a rubber plug-side inclined surface 87C that are inclined with respect to the front-rear direction are formed on the contact surface between the rear end portion of the tubular portion 89 and the protrusion 87B.
  • the mating shield cable 86 of the mating connector 80, the mating shield terminal 83, the mating housing 81, the mating rubber plug 87, and the mating rubber plug holder 88 are the shield cable 10 of the connector C, the shield terminal 20, respectively. Since the basic structure is the same as that of the housing 30, the rubber plug 50, and the rubber plug holder 60, a detailed description thereof will be omitted.
  • the rubber plug 50 and the rubber plug holder 60 are passed through the shield cable 10 first.
  • the rubber plug 50 and the rubber plug holder 60 are disposed at a position away from the terminal portion of the shielded cable 10 rearward.
  • the shield terminal 20 is connected to the end of the shielded cable 10.
  • the inner conductor 21 is accommodated in the dielectric 22, and the conductor exposed at the end portion of each electric wire 11 is soldered to the inner conductor 21.
  • the outer conductor 23 is assembled on the outer periphery of the dielectric 22 and connected to the shield member 12.
  • the shield terminal 20 is accommodated in the housing 30.
  • the shield terminal 20 is inserted into the terminal accommodating portion 31 of the housing 30 from the rear, the terminal locking portion 36 is locked to the shield terminal 20 and the shield terminal 20 is prevented from coming off.
  • the rubber plug 50 is fitted into the cylindrical portion 39.
  • the rubber plug 50 is moved along the shielded cable 10, and the main body portion 52 is pushed into the cylindrical portion 39.
  • the outer peripheral lip portion 54 is elastically crushed and is in close contact with the inner peripheral surface of the tubular portion 39
  • the inner peripheral lip portion 55 is elastically crushed and is in close contact with the outer peripheral surface of the shielded cable 10.
  • the flange portion 56 is close to the rear end portion of the tubular portion 39, and the protrusion 57 covers the housing-side inclined surface 44, and the rubber plug-side inclined surface 58 is along the housing-side inclined surface 44.
  • the rubber plug holder 60 is fitted into the cylindrical portion 39.
  • the rubber plug holder 60 is moved along the shielded cable 10, the lock piece 66 is aligned with the lock protrusion 41, and the peripheral wall 62 of the rubber plug holder 60 is externally fitted and pushed into the tubular portion 39.
  • the lock portion 68 of the lock piece 66 is guided by the inclination of the guide surface 43 of the lock protrusion 41, the lock piece 66 elastically bends outward, and eventually the lock portion 68 gets over the lock protrusion 41 and the lock piece 66 returns elastically.
  • the lock portion 68 and the lock protrusion 41 are locked in the front-rear direction, and the rubber stopper holder 60 is prevented from being detached.
  • the rear wall 61 of the rubber plug holder 60 presses the rear surface of the rubber plug 50 (the rear surface of the flange portion 56), and the flange portion 56 and the protrusion 57 are moved in the front-rear direction.
  • the rubber plug holder 60 is slightly retracted by the elastic restoring force of the flange portion 56 and the ridge portion 57.
  • the gap between the rear end portion of the tubular portion 39 and the rear wall 61 of the rubber plug holder 60 is widened, the flange portion 56 and the protruding portion 57 are in a state of closing the gap.
  • the connector C of the present embodiment includes a housing 30 in which a shield terminal 20 connected to a terminal portion of the shielded cable 10 is accommodated inside and a tubular portion 39 that opens rearward is provided in the rear portion.
  • a rubber plug that adheres in a liquid-tight manner to the outer peripheral surface of the shielded cable 10 that is drawn backward through the inside of the cylindrical portion 39 and that adheres in a liquid-tight manner to the inner peripheral surface of the cylindrical portion 39.
  • a rubber plug holder 60 for preventing the rubber plug 50 from being detached is attached to the rear side of the rubber plug 50.
  • the rubber plug holder 60 has a rear wall 61 facing the rear surface of the rubber plug 50.
  • the housing 30 and the rubber plug holder 60 are locked in the front-rear direction to prevent the rubber plug holder 60 from being detached.
  • the rubber plug 50 has a lock piece 66, and is protruded from the outer peripheral surface of the rubber plug 50 and is disposed between the rear end portion of the tubular portion 39 and the rear wall 61 of the rubber plug holder 60.
  • 56, and the flange portion 56 has a protrusion 57 that protrudes forward and contacts the rear end of the tubular portion 39.
  • a housing-side inclined surface 44 and a rubber plug-side inclined surface 58 that are inclined with respect to the front-rear direction are formed on the contact surface between the rear end portion of the tubular portion 39 and the protrusion 57.
  • the waterproof property can be improved.
  • the housing-side inclined surface 44 and the rubber plug-side inclined surface 58 formed on the contact surface between the rear end portion of the cylindrical portion 39 and the protruding portion 57 the elasticity of the flange portion 56 and the protruding portion 57 is obtained.
  • the generated force is distributed in a direction crossing the front-rear direction (a direction parallel to the direction in which the rubber plug holder 60 is detached), it is possible to prevent the rubber plug holder 60 from being pressed in the direction in which the rubber plug holder 60 is excessively pressed. it can.
  • housing side inclined surface 44 is provided along the outer peripheral side edge of the rear end portion of the cylindrical portion 39. According to this configuration, the ridge 57 that contacts the housing-side inclined surface 44 can escape to the outside of the tubular portion 39.
  • the present invention is not limited to the embodiments described with reference to the above description and drawings.
  • the following embodiments are also included in the technical scope of the present invention.
  • (1) In the said Example although the protrusion 57 is provided along the outer periphery of the collar part 56, it is not restricted to this, A protrusion is extended along the intermediate part or inner periphery of a collar. It may be provided.
  • the housing-side inclined surface 44 and the rubber plug-side inclined surface 58 are provided on both the abutting surface of the tubular portion 39 and the protrusion 57, Not limited to this, an inclined surface may be formed on only one of the contact surfaces of the rear end portion of the tubular portion and the protruding portion.
  • the lock protrusion 41 and the lock piece 66 are exemplified as the lock structure for preventing the rubber stopper holder 60 from being detached. If there is, it can be changed to another structure.

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  • Connector Housings Or Holding Contact Members (AREA)

Abstract

L'invention concerne un raccord étanche à l'eau configuré de telle sorte qu'un support de bouchon en caoutchouc est empêché d'être pressé par une force excessive dans la direction dans laquelle le support de bouchon en caoutchouc est séparé et de telle sorte que les propriétés d'étanchéité à l'eau sont améliorées. Ce raccord étanche à l'eau est pourvu : d'un boîtier (30) pourvu d'une section cylindrique (39) à l'extrémité arrière de celui-ci ; et d'un bouchon en caoutchouc (50) ajusté dans la section cylindrique (39) ; d'un support de bouchon en caoutchouc (60) pour empêcher la séparation du bouchon en caoutchouc (50). Le boîtier (30) et le support de bouchon en caoutchouc (60) ont des structures de verrouillage (41, 66) venant en prise l'une avec l'autre dans la direction avant-arrière pour empêcher la séparation du support de bouchon en caoutchouc (60). Le bouchon en caoutchouc (50) a une bride (56) faisant saillie à partir de la surface périphérique externe du bouchon en caoutchouc (50) et disposée entre l'extrémité arrière de la section cylindrique (39) et la paroi arrière (61) du support de bouchon en caoutchouc (60). La bride (56) a une arête (57) faisant saillie vers l'avant et en contact avec l'extrémité arrière de la section cylindrique (39). Au moins une des surfaces de contact entre l'extrémité arrière de la section cylindrique (39) et l'arête (57) est pourvue d'une surface inclinée (44, 58) qui est inclinée par rapport à la direction avant-arrière.
PCT/JP2018/007970 2017-03-22 2018-03-02 Raccord étanche à l'eau WO2018173688A1 (fr)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
JP2017-055346 2017-03-22
JP2017055346A JP6834645B2 (ja) 2017-03-22 2017-03-22 防水コネクタ

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WO2018173688A1 true WO2018173688A1 (fr) 2018-09-27

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WO (1) WO2018173688A1 (fr)

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112636061A (zh) * 2019-09-24 2021-04-09 住友电装株式会社 通信线缆
WO2022048090A1 (fr) * 2020-09-04 2022-03-10 盐城市华悦汽车部件有限公司 Borne de connexion étanche à l'eau pour automobile
WO2022054456A1 (fr) * 2020-09-14 2022-03-17 株式会社オートネットワーク技術研究所 Connecteur de blindage

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Publication number Priority date Publication date Assignee Title
JPH06349541A (ja) * 1993-06-14 1994-12-22 Sumitomo Wiring Syst Ltd 防水コネクタ用ゴム栓
JP2013504847A (ja) * 2009-09-11 2013-02-07 エフシーアイ・オートモティヴ・ホールディング マット状シールジョイント、当該シールマットを備えている電気コネクタ、及び当該シールマットの製造方法

Patent Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH06349541A (ja) * 1993-06-14 1994-12-22 Sumitomo Wiring Syst Ltd 防水コネクタ用ゴム栓
JP2013504847A (ja) * 2009-09-11 2013-02-07 エフシーアイ・オートモティヴ・ホールディング マット状シールジョイント、当該シールマットを備えている電気コネクタ、及び当該シールマットの製造方法

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112636061A (zh) * 2019-09-24 2021-04-09 住友电装株式会社 通信线缆
US11374350B2 (en) * 2019-09-24 2022-06-28 Sumitomo Wiring Systems, Ltd. Waterproof communication cable
WO2022048090A1 (fr) * 2020-09-04 2022-03-10 盐城市华悦汽车部件有限公司 Borne de connexion étanche à l'eau pour automobile
WO2022054456A1 (fr) * 2020-09-14 2022-03-17 株式会社オートネットワーク技術研究所 Connecteur de blindage
JP2022047668A (ja) * 2020-09-14 2022-03-25 株式会社オートネットワーク技術研究所 シールドコネクタ
JP7460959B2 (ja) 2020-09-14 2024-04-03 株式会社オートネットワーク技術研究所 シールドコネクタ

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