Vehicle door handle
10501966 ยท 2019-12-10
Assignee
Inventors
- Koichi Nagata (Chiryu, JP)
- Nobukazu Araki (Hekinan, JP)
- Seiji Shimada (Nagoya, JP)
- Eiji Mushiake (Aichi-ken, JP)
- Masayuki Kawano (Kariya, JP)
Cpc classification
E05B79/22
FIXED CONSTRUCTIONS
E05B81/78
FIXED CONSTRUCTIONS
E05B77/34
FIXED CONSTRUCTIONS
E05B81/76
FIXED CONSTRUCTIONS
E05B79/06
FIXED CONSTRUCTIONS
E05B85/14
FIXED CONSTRUCTIONS
International classification
E05B79/22
FIXED CONSTRUCTIONS
E05B79/06
FIXED CONSTRUCTIONS
E05B81/78
FIXED CONSTRUCTIONS
E05B85/16
FIXED CONSTRUCTIONS
E05B85/14
FIXED CONSTRUCTIONS
E05B81/76
FIXED CONSTRUCTIONS
Abstract
A door handle for a vehicle includes a handle inner member made of a resin, which is arranged on a vehicle inner side, a handle outer member, which is assembled to a vehicle outer side of the handle inner member to form an accommodating portion between the handle outer member and the handle inner member, and a connector provided to the handle inner member. The connector includes a resin connector main body independent of the handle inner member and coupled integrally with the handle inner member. In the connector main body, connector terminals and an electronic component are connected in a component accommodating recessed portion formed on one side thereof and is communicated with the accommodating portion. A connection portion between the connector terminals and the electronic component is protected by potting material filled in the component accommodating recessed portion.
Claims
1. A door handle for a vehicle, comprising: a handle inner member made of a resin, which is adapted to be arranged on a vehicle inner side of a door of the vehicle, the handle inner member including a supporting through hole extending through the handle inner member in a vehicle width direction; a handle outer member, which is assembled to a vehicle outer side of the handle inner member to form an accommodating portion between the handle outer member and the handle inner member; a connector main body made of a resin, which is formed as a member independent of the handle inner member and connected to the handle inner member, wherein the connector main body penetrates through the supporting through hole in the vehicle width direction and is supported by the supporting through hole; a component accommodating recessed portion, which is formed in a vehicle outer side end portion of the connector main body to communicate with the accommodating portion, the handle inner member surrounding at least a portion of the connector main body in which the component accommodating recessed portion is formed; a connector terminal, which is supported by the connector main body; an electronic component, which is connected to the connector terminal; and a potting material, which is filled in the component accommodating recessed portion, for protecting a connection portion between the connector terminal and the electronic component, wherein the potting material is disposed in the accommodating portion between the handle outer member and the handle inner member, the door handle for a vehicle further comprises a stopper configured to regulate an amount of insertion of the connector main body into the supporting through hole; the handle inner member includes an insertion through hole which extends through the handle inner member in the vehicle width direction; and the connector main body comprises: a connection arm which is inserted into the insertion through hole from the vehicle outer side; and an engagement claw which is provided at a vehicle inner-side end portion of the connection arm and is configured to connect the handle inner member and the connector main body to each other by engaging with the handle inner member from the vehicle inner side under a state in which the amount of insertion of the connector main body is regulated by the stopper.
2. A door handle for a vehicle according to claim 1, further comprising a guiding portion provided in the supporting through hole of the handle inner member, the guiding portion exhibiting a tube shape for guiding the insertion of the connector main body.
3. A door handle for a vehicle according to claim 2, wherein a vehicle inner-side opening of the guiding portion is set so as to be located inside of the vehicle with respect to an insertion hole of a door outer panel of the door.
4. A door handle for a vehicle according to claim 2, further comprising a projection formed on a vehicle inner-side end portion of the guiding portion, the projection being capable of coming into sliding contact with an outer circumferential surface of the connector main body.
5. A door handle for a vehicle according to claim 1, further comprising a retaining portion formed on the handle outer member, the retaining portion being configured to prevent removal of the connector main body to the vehicle outer side from the handle inner member.
Description
BRIEF DESCRIPTION OF DRAWINGS
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DESCRIPTION OF EMBODIMENT
(10) An embodiment of the present invention will be described referring to the drawings.
(11) Further, the door handle 10 is assembled swingably (turnably) to the base member at a turning connection portion 10a provided to a vehicle front-side end portion as is well-known, and is connected to a door opening and closing mechanism (not shown) at an engagement portion 10b provided to a vehicle rear-side end portion as is well-known. The door handle 10 is configured such that a middle portion thereof is gripped with a hand to be tilted in a vehicle outside direction by a required amount so as to enable an opening operation of the door opening and closing mechanism (not shown).
(12) The door handle 10 includes a handle inner member 11 made of a resin arranged on a vehicle inner side, a handle outer member 12 made of a resin assembled to a vehicle outer side of the handle inner member 11 to form an accommodating portion Ro between the handle outer member 12 and the handle inner member 11, and a handle-side connector CA provided to the handle inner member 11. The handle-side connector CA can be joined to and separated away from a door-side connector (now shown) as is well-known, and includes a connector main body 13 made of a resin and a plurality of connector terminals 14. In the accommodating portion Ro, an electronic component such as a transmitting antenna (not shown) is accommodated as is well-known.
(13) The handle inner member 11 includes a stepped supporting hole 11a and three insertion holes 11b. The supporting hole 11a supports the connector main body 13, and includes a receiving portion 11a1 on a vehicle outer-side end portion and five linear projections 11a2 on a vehicle inner-side end portion. Further, the supporting hole 11a includes a cylindrical guiding portion 11a3 (small-diameter hole portion of the supporting hole 11a) for guiding insertion of the connector main body 13.
(14) The cylindrical guiding portion 11a3 exhibits a cylindrical shape and has a length that is set so that a vehicle inner-side opening is located inside of the vehicle (arranged inside of the vehicle) with respect to the insertion hole 101a (see the virtual line of
(15) The handle outer member 12 is assembled integrally with the handle inner member 11 through use of appropriate connection means (for example, a connection screw (not shown)) so as to cover a vehicle outer side of the handle inner member 11. The handle outer member 12 includes a plurality of ribs formed on the inner side (vehicle inner side). One rib 12a thereof is arranged in a state of being close to the vehicle outer side of the connector CA, as illustrated in
(16) The connector main body 13 is formed as a member independent of the handle inner member 11, and includes a cylindrical leg portion 13a to be inserted into the supporting hole 11a of the handle inner member 11, a head portion 13b to be joined to the receiving portion 11a1 of the handle inner member 11, and connection arms 13c to be respectively inserted into the insertion holes 11b of the handle inner member 11. The leg portion 13a is configured to be able to come into sliding contact with each of the linear projections 11a2 of the handle inner member 11 on an outer circumferential surface thereof.
(17) The head portion 13b constructs a stopper S together with the receiving portion 11a1. The stopper S regulates the amount of insertion of the connector main body 13 into the supporting hole 11a. Further, on a vehicle outer side (one side) of the head portion 13b, a component accommodating recessed portion 13b1 which is communicated with the accommodating portion Ro is formed. In the component accommodating recessed portion 13b1, the connector terminals 14 supported by the connector main body 13 and an electronic component 15 (for example, a substrate) are connected so as to be electrically conductive. A connection portion between the connector terminals 14 and the electronic component 15 is protected by a potting material 16 filled in the component accommodating recessed portion 13b1. The potting material 16 itself is a well-known silicone-based embedding resin.
(18) Each of the connection arms 13c extends from the head portion 13b toward the leg portions 13a. At distal end portions of the connection arms 13c, engagement claws 13c1 (connection claws) that are elastically engageable with the engagement portions 11b1 of the handle inner member 11 are provided. Therefore, as illustrated in
(19) As illustrated in
(20) In this embodiment configured as described above, by/owing to filling the potting material 16 (silicone-based embedding resin) in the component accommodating recessed portion 13b1 formed on one side in the connector main body 13, the connection portion between the connector terminals 14 and the electronic component 15 can be protected. In this manner, the potting material 16 can be set so as not to adhere to the handle inner member 11. Therefore, although an expensive resin material (such as a polycarbonate (PC) resin and a polybutylene terephthalate (PBT) resin) with which the potting material 16 can be used needs to be adopted for the connector main body 13, an inexpensive resin material (such as a polyamide 6 (PA6) resin) can be adopted for the handle inner member 11.
(21) Therefore, in the door handle 10 of this embodiment, the expensive resin material with which the potting material 16 can be used is adopted (used) only for the connector main body 13. Accordingly, as compared with a case where the expensive resin material with which the potting material can be used is adopted (used) for the connector main body (13) and the handle inner member (11), the amount of use of the expensive resin material can be reduced to reduce the cost of the door handle 10.
(22) Moreover, in this embodiment, the stopper S configured to regulate the amount of insertion of the connector main body 13 into the supporting hole 11a formed in the handle inner member 11 is formed in a coupling portion between the connector main body 13 and the handle inner member 11. In addition, the engagement claws 13c1 to be elastically engaged with the engagement portions 11b1 provided to the handle inner member 11 under a state in which the amount of insertion is regulated by the stopper S are provided to the connector main body 13. Therefore, the connector main body 13 and the handle inner member 11 can be connected (coupled) to each other without using assembly tools such as a nut and a screw. Thus, the cost can be reduced by reducing the number of components.
(23) Further, in this embodiment, the cylindrical guiding portion 11a3 exhibiting the cylindrical shape for guiding the insertion of the connector main body 13 is provided to the supporting hole 11a of the handle inner member 11. Therefore, ease of assembly of the connector main body 13 to the handle inner member 11 can be satisfactorily provided. Further, the vehicle inner-side opening of the cylindrical guiding portion 11a3 is set so as to be located inside of the vehicle with respect to the insertion hole 101a of the door outer panel 101. Therefore, water can be appropriately prevented from entering the cylindrical guiding portion 11a3.
(24) Further, on the vehicle inner-side end portion of the cylindrical guiding portion 11a3, the linear projections 11a2 that can come into sliding contact with the outer circumferential surface of the connector main body 13 (outer circumferential surfaces of the leg portions 13a) are provided. Therefore, clattering of the connector main body 13 assembled to the handle inner member 11 inside the cylindrical guiding portion 11a3 can be prevented. It should be noted that a shape of each of the linear projections 11a2 may be appropriately set/designed. For example, a hemispherical (dot-like) projection may be used instead, to implement the present invention.
(25) Further, in this embodiment, the rib 12a (retaining portion) for preventing the removal of the connector main body 13 from the handle inner member 11 is formed on the handle outer member 12. Therefore, the removal of the connector main body 13 from the handle inner member 11 can be prevented through effective use of the rib 12a for reinforcement formed on the handle outer member 12.
(26) In the embodiment described above, the handle inner member 11 and the connector main body 13 are connected (coupled) integrally with each other through use of the connection arms 13c of the connector main body 13. However, the handle inner member 11 and the connector main body 13 may also be configured to be connected (coupled) integrally with each other through use of coupling means (such as a nut and a screw) other than the connection arms 13c to implement the present invention. Further, in the embodiment described above, the engagement portions 11b1 are provided to the handle inner member 11, and the connection arms 13c and the engagement claws 13c1 are provided to the connector main body 13. However, to implement the present invention, the connection arms (13c) and the engagement claws (13c1) may be provided to the handle inner member (11), and the engagement portions (11b1) may be provided to the connector main body (13). Further, to implement the present invention, the cylindrical guiding portion 11a3 and the linear projections 11a2 may be omitted, or even the rib 12a may be omitted.
(27) In the embodiment described above, the present invention is carried out with the turning connection portion 10a formed on the vehicle front-side end portion of the door handle 10 and the engagement portion 10b formed on the vehicle rear-side end portion of the door handle 10 being provided to the handle inner member 11. However, the present invention may also be implemented with the turning connection portion 10a formed on the vehicle front-side end portion of the door handle 10 and the engagement portion 10b formed on the vehicle rear-side end portion of the door handle 10 being provided to the handle outer member 12.
(28) Further, in the embodiment described above, the present invention is carried out with the door handle 10 for a vehicle according to the present invention being provided onto the door 100 mounted to the front left side of the vehicle. However, the door handle for a vehicle according to the present invention may be applied not only to a door mounted to a front right side of the vehicle but also to a door mounted to a rear right side or a rear left side of the vehicle in a similar manner or with appropriate changes. Further, the door handle for a vehicle according to the present invention may also be applied to a door mounted to a rear side of the vehicle (back door) in a similar manner or with appropriate changes.