JP2002151209A - Mounting structure of connector - Google Patents

Mounting structure of connector

Info

Publication number
JP2002151209A
JP2002151209A JP2000348100A JP2000348100A JP2002151209A JP 2002151209 A JP2002151209 A JP 2002151209A JP 2000348100 A JP2000348100 A JP 2000348100A JP 2000348100 A JP2000348100 A JP 2000348100A JP 2002151209 A JP2002151209 A JP 2002151209A
Authority
JP
Japan
Prior art keywords
connector
grommet
partition
hole
female
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.)
Pending
Application number
JP2000348100A
Other languages
Japanese (ja)
Inventor
Toshiyuki Hashimoto
利行 橋本
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Furukawa Electric Co Ltd
Original Assignee
Furukawa Electric Co Ltd
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 Furukawa Electric Co Ltd filed Critical Furukawa Electric Co Ltd
Priority to JP2000348100A priority Critical patent/JP2002151209A/en
Publication of JP2002151209A publication Critical patent/JP2002151209A/en
Pending legal-status Critical Current

Links

Abstract

PROBLEM TO BE SOLVED: To aim at improvement of sealing property of a partition penetrating part in a simple structure, and to provide a mounting structure of a connector which enables connection even if there is error in mounting position of a connector at a receptacle side. SOLUTION: With the mounting structure of a connector for coupling a first connector 2 located at one side of a partition 5 with a second connector 3 located at the other side of the partition through a partition penetrating part 5a, the second connector 3 has a grommet mounted for choking the penetrating part 5a, the first connector 2 is set at one side of the penetrating part 5a to wait for the second connector, so that, when the second connector 3 is inserted into the penetrating part 5a, the grommet 4 is mounted on the penetrating part 5a to choke it as a result, and also, the second connector 3 is so structured to be coupled with the first connector 2 provided with. A change-over switch is mounted on a socket main body so as to be able cut off power easily when it is not needed.

Description

【発明の詳細な説明】DETAILED DESCRIPTION OF THE INVENTION

【0001】[0001]

【発明の属する技術分野】本発明は、隔壁間の貫通部に
おいて電気接続を行うコネクタの取付構造に関する。
BACKGROUND OF THE INVENTION 1. Field of the Invention The present invention relates to a connector mounting structure for making electrical connection at a penetrating portion between partition walls.

【0002】[0002]

【従来の技術】例えば、車両のエンジンルーム内のワイ
ヤハーネスと室内のワイヤハーネスとを接続するに当た
って、作業者がエンジンルームと室内とを画成する隔壁
としてのダッシュパネルに穿設された貫通孔を通してハ
ーネスを貫通させ、コネクタの接続作業を行っていた。
即ち、図4及び図5に示すように作業者がエンジンルー
ム11内の複数のワイヤーハーネス14の各コネクタ1
5を1個づつエンジンルーム11側(E/G側)からダ
ッシュパネル12のハーネス貫通孔12aを通して、室
内側に配索すると共にこれらのワイヤハーネス14を保
護する保護チューブ16のグロメット16aにより貫通
孔12aを閉塞し、各ワイヤハーネス14と対応する室
内側のワイヤハーネス17の各コネクタ18と結合して
いた。
2. Description of the Related Art For example, when connecting a wire harness in an engine room of a vehicle to a wire harness in a room, a worker has a through hole formed in a dash panel as a partition wall which defines the engine room and the room. Through the harness to connect the connector.
That is, as shown in FIG. 4 and FIG. 5, the worker operates the connector 1 of each of the plurality of wire harnesses 14 in the engine room 11.
5 are routed one by one from the engine room 11 side (E / G side) through the harness through hole 12a of the dash panel 12 to the indoor side and through holes by the grommet 16a of the protection tube 16 for protecting these wire harnesses 14. 12a was closed and connected to each connector 18 of the wire harness 17 on the indoor side corresponding to each wire harness 14.

【0003】しかしながら、貫通孔12aに複数のコネ
クタ15を順次貫通配索し、更にグロメット16aを貫
通孔12aに装着し、次いで、室内側で複数のコネクタ
15と18との接続を行うために作業工数が多く、しか
も、作業がし難く、作業性が悪いという状況にあった。
そこで、隔壁貫通部の一側にコネクタを待ち受けさせて
隔壁貫通部での貫通操作のみにより接続作業を行うよう
にしたコネクタ構造が提案されている。例えば、図6に
示すようにインパネの組付時に室内側コネクタ(雄コネ
クタ)21をセットし、ダッシュパネル12の貫通孔1
2aにパッキン20を介してエンジン側コネクタ(雌コ
ネクタ)22をセットし、エンジン側コネクタ22に設
けた可動ラックピン23を挿入することで、当該エンジ
ン側コネクタ22内に設けられ可動ラックピン23と噛
合するピニオン24を駆動し、このピニオン24と一体
に設けられたピニオン25により室内側コネクタ21内
に設けられたラック21aを駆動して室内側コネクタ2
1をエンジン側コネクタ22に引き寄せて結合するよう
にした電気コネクタがある(特願平11―110706
号)。
However, a plurality of connectors 15 are sequentially routed through the through-hole 12a, a grommet 16a is mounted in the through-hole 12a, and then a connection is made between the plurality of connectors 15 and 18 on the indoor side. There were many man-hours, work was difficult, and workability was poor.
Therefore, there has been proposed a connector structure in which a connector is made to stand by on one side of the partition wall penetrating portion and a connection operation is performed only by a penetrating operation in the partition wall penetrating portion. For example, as shown in FIG. 6, when the instrument panel is assembled, the indoor connector (male connector) 21 is set, and the through hole 1 of the dash panel 12 is set.
An engine-side connector (female connector) 22 is set to the 2a via a packing 20 and a movable rack pin 23 provided on the engine-side connector 22 is inserted into the engine-side connector 22 to engage with the movable rack pin 23 provided in the engine-side connector 22. By driving the pinion 24, the rack 21 a provided in the indoor connector 21 is driven by the pinion 25 provided integrally with the pinion 24, and the indoor connector 2 is driven.
1 is drawn to and coupled to the engine-side connector 22 (Japanese Patent Application No. 11-110706).
issue).

【0004】或いは、図7に示すようにインパネ13に
固定された室内側コネクタ(面接触コネクタ)27の先
端部をダッシュパネル12の貫通孔12aに遊貫させ、
エンジンルーム側からエンジン側コネクタ(バネ付面接
触コネクタ)28を結合し、貫通孔12aのフランジ1
2bに保護チューブ29のグロメット29aを液密に嵌
合させるようにしたワイヤハーネスの接続構造がある
(特願平10−255851号)。
[0004] Alternatively, as shown in FIG. 7, the distal end of an indoor side connector (surface contact connector) 27 fixed to the instrument panel 13 is allowed to freely pass through the through hole 12 a of the dash panel 12,
An engine side connector (spring contact connector) 28 is connected from the engine room side to the flange 1 of the through hole 12a.
2b has a connection structure of a wire harness in which the grommet 29a of the protection tube 29 is fitted in a liquid-tight manner (Japanese Patent Application No. 10-255851).

【0005】[0005]

【発明が解決しようとする課題】しかしながら、上記図
6に示す電気コネクタにおいては、ダッシュパネル貫通
部のシール性に不安があると共に構造が複雑であり、部
品点数が多いためにコストが高くなると共に大型とな
る。また、室内側(待受側)コネクタ21の取付位置に
誤差があるとエンジン側コネクタ22との接続が困難に
なる等の問題がある。
However, in the electric connector shown in FIG. 6, the sealing performance of the dash panel penetrating portion is uneasy, the structure is complicated, and the number of parts is large, so that the cost becomes high. It becomes large. Further, if there is an error in the mounting position of the indoor side (standby side) connector 21, there is a problem that connection with the engine side connector 22 becomes difficult.

【0006】また、図7に示すワイヤハーネスの接続構
造においても、室内側(待受側)のコネクタ27の取付
位置に誤差があるとエンジン側コネクタ28との接続が
困難になり、更に面接触コネクタを使用していることで
接触不良を起こす虞がある。また、ダッシュパネル貫通
部のシール性に不安がある等の問題がある。本発明は、
上述の点に鑑みてなされたもので、簡単な構成で隔壁貫
通部のシール性の向上を図り、且つ待受側のコネクタの
取付位置に誤差があっても接続することができるコネク
タの取付構造を提供することを目的とする。
In the connection structure of the wire harness shown in FIG. 7, if there is an error in the mounting position of the indoor side (standby side) connector 27, the connection with the engine side connector 28 becomes difficult, and furthermore, the surface contact is made. The use of the connector may cause a contact failure. In addition, there is a problem that there is concern about the sealing property of the dash panel penetration part. The present invention
In consideration of the above points, a connector mounting structure capable of improving the sealing performance of a partition penetration portion with a simple configuration and connecting even if there is an error in a mounting position of a connector on a standby side. The purpose is to provide.

【0007】[0007]

【課題を解決するための手段】上記目的を達成するため
に、請求項1の発明では、隔壁の一側に配置される第1
のコネクタに前記隔壁の他側に配置される第2のコネク
タを前記隔壁の貫通部を通して結合するコネクタの取付
構造において、前記第2のコネクタには前記貫通部を塞
ぐためのグロメットが装着され、前記第1のコネクタ
は、前記貫通部の一側に設置されて前記第2のコネクタ
を待ち受ける構造とされ、前記第2のコネクタを前記貫
通部に挿入したときに前記グロメットが前記貫通部に装
着されて塞ぎ、且つ前記第2のコネクタが前記第1のコ
ネクタに結合することを特徴とする。
In order to achieve the above object, according to the first aspect of the present invention, there is provided a fuel cell system comprising:
In a connector mounting structure for coupling a second connector disposed on the other side of the partition to the connector through a through portion of the partition, a grommet for closing the through portion is mounted on the second connector, The first connector is arranged on one side of the penetrating portion to wait for the second connector, and the grommet is attached to the penetrating portion when the second connector is inserted into the penetrating portion. And the second connector is coupled to the first connector.

【0008】請求項2の発明では、前記グロメットは、
前記第2のコネクタとの装着部と前記貫通部との装着部
とが同心的に設けられ且つ一側端が蛇腹部により全周に
亘り連設されて前記第2のコネクタが前記グロメット内
で変位可能とされ、前記第1のコネクタと第2のコネク
タの結合状態において前記第2のコネクタ及び貫通部に
装着されて前記隔壁の両側を遮断することを特徴とす
る。
[0008] In the invention of claim 2, the grommet is:
A mounting portion for the second connector and a mounting portion for the penetrating portion are provided concentrically, and one end is continuously provided around the entire circumference by a bellows portion, so that the second connector is located inside the grommet. It is displaceable, and is mounted on the second connector and the penetrating portion in a state where the first connector and the second connector are connected to shut off both sides of the partition.

【0009】第1のコネクタは、隔壁の一側に貫通部に
臨んで配置されて待受側コネクタとされる。第2のコネ
クタは、グロメットの装着部に装着され、隔壁貫通部の
他側に配置される。第2のコネクタは、第1のコネクタ
との嵌合部が貫通部を貫通して待ち受けている第1のコ
ネクタと結合し、グロメットが貫通孔に装着されて貫通
部を閉塞する。これにより、第1、第2のコネクタが貫
通部を通して結合されると共に、隔壁貫通部の両側がグ
ロメットにより塞がれて止水される。
The first connector is arranged on one side of the partition wall so as to face the through portion, and is a standby connector. The second connector is mounted on the mounting portion of the grommet, and is disposed on the other side of the partition wall penetrating portion. The second connector is coupled to the first connector in which the fitting portion with the first connector passes through the through portion and waits, and the grommet is mounted in the through hole to close the through portion. Thus, the first and second connectors are coupled through the through portion, and both sides of the partition through portion are closed by the grommet to stop water.

【0010】グロメットは、第2のコネクタの装着部が
貫通部の装着部に蛇腹部により連設されていることで、
第2のコネクタが貫通部に対して半径方向及び軸方向に
変位可能とされ、待受側コネクタである第1のコネクタ
が貫通部に対して半径方向、或いは第2のコネクタとの
結合方向にズレて取り付けられていても、取付誤差が吸
収されて第2のコネクタを第1のコネクタに確実に結合
することが可能となる。更に、蛇腹部により第2のコネ
クタが隔壁から縁切りされた状態となり、隔壁からの振
動によるストレスが吸収されて第2のコネクタに伝達さ
れなくなる。
In the grommet, the mounting portion of the second connector is connected to the mounting portion of the through portion by a bellows portion.
The second connector can be displaced in the radial direction and the axial direction with respect to the through portion, and the first connector, which is a standby connector, can be displaced in the radial direction with respect to the through portion or in the coupling direction with the second connector. Even if the connector is misaligned, the mounting error is absorbed and the second connector can be securely connected to the first connector. Further, the second connector is cut off from the partition wall by the bellows portion, and the stress caused by the vibration from the partition wall is absorbed and is not transmitted to the second connector.

【0011】[0011]

【発明の実施の形態】以下本発明の実施の態様を図面に
より説明する。図1は、本発明に係るコネクタの取付構
造の実施形態を示し、コネクタを分離した状態の断面図
である。図において、コネクタ1は、第1のコネクタと
しての雄コネクタ2と、第2のコネクタとしての雌コネ
クタ3と、グロメット4とにより構成されている。尚、
図において雄コネクタ2の複数の雄端子及び各雄端子に
接続されるワイヤハーネス、雌コネクタ3の前記複数の
雄端子と夫々接続する複数の雌端子及び各雌端子に接続
されるワイヤハーネスは、省略してある。このコネクタ
1は、例えば、車両のエンジンルーム側から室内側に配
索されるワイヤハーネスの接続部とされる。
Embodiments of the present invention will be described below with reference to the drawings. FIG. 1 is a sectional view showing an embodiment of a connector mounting structure according to the present invention, in which a connector is separated. In the figure, a connector 1 includes a male connector 2 as a first connector, a female connector 3 as a second connector, and a grommet 4. still,
In the figure, a plurality of male terminals of the male connector 2 and a wire harness connected to each male terminal, a plurality of female terminals of the female connector 3 respectively connected to the plurality of male terminals, and a wire harness connected to each female terminal are: Omitted. The connector 1 is, for example, a connection portion of a wire harness that is routed from the engine room side of the vehicle to the room side.

【0012】雄コネクタ2は、例えば、円筒形状をな
し、先端側の開口部2a内に前記複数の雄端子が突設さ
れており、開口端2cが略テーパ状に拡開して雌コネク
タ3と結合する際の調芯ガイドとされている。また、開
口部2aの端面近傍の壁面には内方に突出する係止爪2
d、2dが対向して設けられている。この雄コネクタ2
は、基端部2bが例えば、車両の室内側のインパネ(図
示せず)に固定される。
The male connector 2 has, for example, a cylindrical shape, and has a plurality of male terminals projecting into an opening 2a on the distal end side. It is used as an alignment guide at the time of coupling. A locking claw 2 protruding inward is provided on a wall surface near an end surface of the opening 2a.
d and 2d are provided to face each other. This male connector 2
The base end 2b is fixed to, for example, an instrument panel (not shown) on the indoor side of the vehicle.

【0013】雌コネクタ3は、雄コネクタ2と対応する
円筒形状をなし、先端部3aが雄コネクタ2の開口部2
aに嵌合可能とされ、外周面の先端近傍に雄コネクタ2
の係止爪2d、2dと対応する位置に係止凹部3c、3
cが設けられており、基端部3b近傍の外周面に全周に
亘り環状に係合用の凸条3dが設けられている。そし
て、雄コネクタ2の係止爪2d、2dと雌コネクタ3の
係止凹部3c、3cは、雌コネクタ3の先端部3aが雄
コネクタ2の開口部2aに嵌合してこれら雄コネクタ2
と雌コネクタ3とが完全に結合した状態において、係合
可能とされている。尚、各係止爪2dは、両側の係止面
が略対称の傾斜面を有する山形形状とされており、雄・
雌ハーフロックとされている。この雌コネクタ3は、防
水ブーツ付端子が使用され、基端部3b側からコネクタ
内への雨水の浸入が防止される。
The female connector 3 has a cylindrical shape corresponding to the male connector 2, and the distal end 3 a has an opening 2 of the male connector 2.
a male connector 2 near the tip of the outer peripheral surface.
At the positions corresponding to the locking claws 2d, 2d.
c is provided, and an engaging ridge 3d is provided in an annular shape over the entire outer peripheral surface near the base end 3b. The locking claws 2d, 2d of the male connector 2 and the locking recesses 3c, 3c of the female connector 3 are arranged such that the distal end 3a of the female connector 3 fits into the opening 2a of the male connector 2 and these male connectors 2
In a state in which the female connector 3 and the female connector 3 are completely connected, the female connector 3 can be engaged. Each locking claw 2d has a chevron shape with locking surfaces on both sides having a substantially symmetrical inclined surface.
Female half rock. The female connector 3 uses a terminal with a waterproof boot, and prevents rainwater from entering the connector from the base end 3b side.

【0014】グロメット4は、雌コネクタ3に外嵌装着
される内殻円筒部4aと、隔壁としてのダッシュパネル
5(図2)の貫通孔5aに装着される外殻円筒部4bと
が環状の空間4cを存して同心的に配置され、且つこれ
らの内殻円筒部4aの基端と外殻円筒部4bの基端とを
全周に亘り連設する蛇腹部4dとが一体に形成されてい
る。内殻円筒部4aの内周面略中央には雌コネクタ3の
係合用の凸条3dが嵌合する環状溝4eが設けられてお
り、外殻円筒部4bの略中央にはダッシュパネル5の貫
通孔5aが嵌合する環状溝4fが設けられている。
The grommet 4 has an annular inner shell portion 4a externally fitted to the female connector 3 and an outer shell cylindrical portion 4b mounted in a through hole 5a of a dash panel 5 (FIG. 2) as a partition. A bellows part 4d which is arranged concentrically with the space 4c and which continuously connects the base end of the inner shell part 4a and the base end of the outer shell part 4b over the entire circumference is integrally formed. ing. An annular groove 4e is provided at substantially the center of the inner peripheral surface of the inner shell cylindrical portion 4a, into which a ridge 3d for engagement of the female connector 3 is fitted. An annular groove 4f into which the through hole 5a fits is provided.

【0015】内殻円筒部4aの内径は、雌コネクタ3の
外径よりも僅かに小径とされ、外殻円筒部4bの外径
は、貫通孔5aよりも大径とされ、環状溝4fの底面の
外径は、貫通孔5aよりも僅かに大径とされている。外
殻円筒部4bの環状溝4fの前部4g(貫通孔5aへの
挿入側壁部)は、当該環状溝4f側から前端に向かって
略テーパ状に縮径する傾斜面とされており、前端が貫通
孔5aよりも僅かに小径とされて当該貫通孔5aへの挿
入が容易とされている。また、環状溝4fの後部4h
は、前部4gよりも大径とされており、貫通孔5aの周
縁部に幅広く密着して防水性を向上させると共に当該貫
通孔5aに挿入した際に突き抜けを防止するストッパの
機能を有している。このグロメット4は、弾性及び防水
性を有する例えば、ゴム部材により一体に形成されてい
る。
The inner diameter of the inner cylindrical portion 4a is slightly smaller than the outer diameter of the female connector 3, and the outer diameter of the outer cylindrical portion 4b is larger than the through hole 5a. The outer diameter of the bottom surface is slightly larger than the through hole 5a. A front part 4g (a side wall part inserted into the through-hole 5a) of the annular groove 4f of the outer shell cylindrical part 4b is an inclined surface whose diameter decreases in a substantially tapered shape from the annular groove 4f side toward the front end. Has a diameter slightly smaller than that of the through hole 5a, thereby facilitating insertion into the through hole 5a. Also, the rear part 4h of the annular groove 4f.
Is larger in diameter than the front part 4g, and has a function of a stopper that widely adheres to the periphery of the through hole 5a to improve waterproofness and also prevents penetration when inserted into the through hole 5a. ing. The grommet 4 is integrally formed of, for example, a rubber member having elasticity and waterproofness.

【0016】以下に作用を説明する。図2に示すように
雄コネクタ2は、基端部2dがインパネ(図示せず)に
固定されてダッシュパネル5の室内側に配置され、且つ
開口部2aが貫通孔5aと対向して配置されて待受側コ
ネクタとされる。雌コネクタ3は、グロメット4の内殻
円筒部4aに内嵌され、環状の凸条3dが環状溝4eに
嵌合して当該内殻円筒部4aに装着固定される。内殻円
筒部4aは、雄コネクタ2と結合する先端部3aを残し
て基端部3bの略全体に装着される。内殻円筒部4aの
内径は、雌コネクタ3の外径よりも僅かに小径とされて
いることで雌コネクタ3の外周面に弾性を有して密着
し、且つ環状の凸条3dと環状溝4eとが嵌合している
ことで、これら両者間が完全に止水される。このように
して雌コネクタ3にグロメット4が液密に装着固定され
る。
The operation will be described below. As shown in FIG. 2, the male connector 2 has a base end 2 d fixed to an instrument panel (not shown) and arranged inside the dash panel 5, and an opening 2 a arranged to face the through hole 5 a. The standby connector. The female connector 3 is fitted inside the inner cylindrical portion 4a of the grommet 4, and the annular ridge 3d is fitted into the annular groove 4e to be fixedly attached to the inner cylindrical portion 4a. The inner shell cylindrical portion 4a is attached to substantially the entire proximal end portion 3b except for the distal end portion 3a to be connected to the male connector 2. The inner diameter of the inner shell cylindrical portion 4a is slightly smaller than the outer diameter of the female connector 3 so that it has elasticity and close contact with the outer peripheral surface of the female connector 3, and has an annular ridge 3d and an annular groove. By fitting with 4e, the water between them is completely stopped. In this way, the grommet 4 is mounted and fixed to the female connector 3 in a liquid-tight manner.

【0017】次いで、雌コネクタ3の先端部3aをエン
ジンルーム側からダッシュパネル5の貫通孔5aに貫通
させて待ち受けている雄コネクタ2のテーパ状に拡開す
る開口端2cにより調芯しながら開口部2aに徐々に嵌
合する。そして、雌コネクタ3の基端部3bとグロメッ
ト4の外殻円筒部4bの後部4hとを押しながらグロメ
ット4の外殻円筒部4bの先端を貫通孔5aに挿入す
る。グロメット4の外殻円筒部4bは、前端が貫通孔5
aよりも僅かに小径とされていることで当該貫通孔5a
に容易に挿入される。グロメット4は、雌コネクタ3の
基端部3bと後部4hとが押されるに伴い外殻円筒部4
bのテーパ面をなす前部4gが貫通孔5aにより弾性に
抗して縮径されながら押し込められ、環状溝4fに貫通
孔5aが嵌合する。
Next, the distal end 3a of the female connector 3 is passed through the through hole 5a of the dash panel 5 from the engine room side, and the male connector 2 awaits and opens while being aligned with the tapered opening end 2c. It gradually fits into the part 2a. Then, the tip of the outer cylindrical portion 4b of the grommet 4 is inserted into the through hole 5a while pressing the base end 3b of the female connector 3 and the rear portion 4h of the outer cylindrical portion 4b of the grommet 4. The outer cylindrical portion 4b of the grommet 4 has a front end formed with a through hole 5b.
a is slightly smaller than the diameter of the through hole 5a.
Easily inserted into The grommet 4 is configured such that as the base end 3b and the rear part 4h of the female connector 3 are pressed, the outer shell cylindrical part 4 is pressed.
The front portion 4g, which forms a tapered surface b, is pushed in while being reduced in diameter against the elasticity by the through hole 5a, and the through hole 5a fits in the annular groove 4f.

【0018】図3に示すようにグロメット4は、環状溝
4fが貫通孔5aに嵌合した状態において前部4gが弾
性により元の形状に復帰して、前部4g及び後部4hが
貫通孔5aの両側の周縁部に密着し、且つ後部4hが大
径とされていることで貫通孔5aのエンジンルーム側周
縁部に幅広く密着する。更に、環状溝4fの底面の外径
が貫通孔5aよりも僅かに大径とされていることで当該
底面が貫通孔5aの内周面に密着する。更に、内殻円筒
部4aと外殻円筒部4bとが蛇腹部4dにより全周に亘
り連設されていることでダッシュパネル5の貫通孔5a
を挟んでエンジンルーム側と室内側とが完全に止水され
る。このようにして、グロメット4が貫通孔5aに液密
に装着固定される。
As shown in FIG. 3, in the grommet 4, the front portion 4g returns to its original shape by elasticity when the annular groove 4f is fitted in the through hole 5a, and the front portion 4g and the rear portion 4h are formed in the through hole 5a. The rear portion 4h has a large diameter, so that the rear portion 4h has a large diameter and closely adheres to the engine room side peripheral portion of the through hole 5a. Further, since the outer diameter of the bottom surface of the annular groove 4f is slightly larger than the through hole 5a, the bottom surface is in close contact with the inner peripheral surface of the through hole 5a. Further, since the inner shell cylindrical portion 4a and the outer shell cylindrical portion 4b are continuously provided over the entire circumference by the bellows portion 4d, the through hole 5a of the dash panel 5 is provided.
, The engine room side and the room side are completely shut off. Thus, the grommet 4 is mounted and fixed in the through hole 5a in a liquid-tight manner.

【0019】グロメット4は、内殻円筒部4aと外殻円
筒部4bとが環状空間部4cにより離隔し、蛇腹部4d
により連設されていることで、内殻円筒部4a即ち、雌
コネクタ3が外殻円筒部4b即ち、貫通孔5aに対して
半径方向及び軸方向に変位可能とされ、更に、内殻円筒
部4aの先端が雄コネクタ2のテーパ状に拡開する開口
端2c内に僅かに入り込んでも前記変位が可能とされて
いる。これにより、待受側コネクタである雄コネクタ2
が貫通孔5aに対して半径方向、或いは雌コネクタ3と
の結合方向にズレて取り付けられていても、取付誤差を
吸収して雌コネクタ3と結合することが可能となる。
The grommet 4 has an inner shell 4a and an outer shell 4b separated by an annular space 4c, and a bellows 4d.
The inner cylindrical portion 4a, that is, the female connector 3 can be displaced in the radial direction and the axial direction with respect to the outer cylindrical portion 4b, that is, the through-hole 5a. The displacement is possible even if the tip of 4a slightly enters the open end 2c of the male connector 2 which expands in a tapered shape. As a result, the male connector 2 which is the standby connector
Can be connected to the female connector 3 by absorbing the mounting error, even if they are displaced in the radial direction with respect to the through hole 5a or in the connecting direction with the female connector 3.

【0020】一方、雌コネクタ3は、基端が押されるに
伴い先端部3aが雄コネクタ2の開口部2aに挿入さ
れ、グロメット4の外殻円筒部4bが貫通孔5aに嵌合
固定された状態において雄コネクタ2と完全に結合さ
れ、係止爪2d、2dが係止凹部3c、3cに係合する
(図3)。これにより、雄コネクタ2と雌コネクタ3と
が結合状態に係止される。
On the other hand, the female connector 3 has the distal end 3a inserted into the opening 2a of the male connector 2 as the base end is pushed, and the outer cylindrical portion 4b of the grommet 4 is fitted and fixed in the through hole 5a. In this state, the male connector 2 is completely connected, and the locking claws 2d, 2d engage with the locking recesses 3c, 3c (FIG. 3). As a result, the male connector 2 and the female connector 3 are locked in a coupled state.

【0021】図3に示すように、雌コネクタ3は、雄コ
ネクタ2と結合した状態において、グロメット4により
ダッシュパネル5に対して半径方向及び雄コネクタ2と
の結合方向に変位可能とされ、更に、雄コネクタ2の開
口端2cがグロメット4の内殻円筒部4aと外殻円筒部
4bとの間の環状空間部4cに臨んでいることで、内殻
円筒部4aの先端がテーパ状に拡開する開口端2c内に
入り込んでも半径方向及び結合方向に変位が可能とされ
ている。そして、雌コネクタ3がダッシュパネル5から
縁切りされる。これにより、ダッシュパネル5の振動に
よるストレスが吸収されて雌コネクタ3に伝達されなく
なる。
As shown in FIG. 3, when the female connector 3 is coupled to the male connector 2, the grommet 4 allows the female connector 3 to be displaced in the radial direction with respect to the dash panel 5 and in the coupling direction with the male connector 2. Since the open end 2c of the male connector 2 faces the annular space 4c between the inner cylindrical portion 4a and the outer cylindrical portion 4b of the grommet 4, the tip of the inner cylindrical portion 4a expands in a tapered shape. Even if it enters the opening end 2c that opens, it can be displaced in the radial direction and the coupling direction. Then, the female connector 3 is cut off from the dash panel 5. Thereby, the stress caused by the vibration of the dash panel 5 is absorbed and is not transmitted to the female connector 3.

【0022】また、雄コネクタ2と雌コネクタ3との結
合を解除する場合は、室内側からグロメット4の前部4
gを弾性力に抗して縮径させて貫通孔5aと環状溝4f
との係合を解除し、エンジンルーム側に押し出す。雄コ
ネクタ2と雌コネクタ3との係止部は、雄・雌ハーフロ
ックとされていることで、前記グロメット4の押し出し
操作に伴い係止が解除され、雌コネクタ3がグロメット
4の内殻円筒部4aと共にエンジンルーム側に押し出さ
れて雄コネクタ2との結合が解除される。
When the connection between the male connector 2 and the female connector 3 is released, the front part 4 of the grommet 4 is
g is reduced in diameter against the elastic force so that the through hole 5a and the annular groove 4f are formed.
Disengage with and push it out to the engine room side. Since the locking portion between the male connector 2 and the female connector 3 is a male-female half lock, the locking is released with the pushing operation of the grommet 4, and the female connector 3 is connected to the inner shell cylinder of the grommet 4. The connection with the male connector 2 is released by being pushed out to the engine room side together with the portion 4a.

【0023】[0023]

【発明の効果】以上説明したように請求項1の本発明に
よれば、隔壁の一側に配置される第1のコネクタに前記
隔壁の他側に配置される第2のコネクタを前記隔壁の貫
通部を通して結合するコネクタの取付構造において、前
記第2のコネクタには前記貫通部を塞ぐためのグロメッ
トが装着され、前記第1のコネクタは、前記貫通部の一
側に設置されて前記第2のコネクタを待ち受ける構造と
され、前記第2のコネクタを前記貫通部に挿入したとき
に前記グロメットが前記貫通部に装着されて塞ぎ、且つ
前記第2のコネクタが前記第1のコネクタに結合する構
造とすることで、隔壁貫通部の両側を良好に止水するこ
とが可能となり、且つ第1のコネクタと第2のコネクタ
とを簡単に結合することができる。また、構造が極めて
簡単であり、部品点数が少なく、コストの大幅な低減が
図られる。
As described above, according to the first aspect of the present invention, the first connector disposed on one side of the partition is connected to the second connector disposed on the other side of the partition. In the mounting structure of the connector coupled through the through portion, the second connector is provided with a grommet for closing the through portion, and the first connector is provided on one side of the through portion and the second connector is provided with the second connector. A structure in which the grommet is attached to and closed by the penetrating portion when the second connector is inserted into the penetrating portion, and the second connector is coupled to the first connector. By doing so, it is possible to satisfactorily stop water on both sides of the partition wall penetration portion, and it is possible to easily couple the first connector and the second connector. Further, the structure is extremely simple, the number of parts is small, and the cost is significantly reduced.

【0024】請求項2の発明では、前記グロメットは、
前記第2のコネクタとの装着部と前記貫通部との装着部
とが同心的に設けられ且つ一側端が蛇腹部により全周に
亘り連設されて前記第2のコネクタが前記グロメット内
で変位可能とされ、前記第1のコネクタと第2のコネク
タの結合状態において前記第2のコネクタ及び貫通部に
装着されて前記隔壁の両側を遮断することにより、隔壁
貫通部のシール性を極めて向上させることができ、且つ
待受側の第1のコネクタの取付位置がズレていても容易
に結合することが可能となり、第1、第2のコネクタを
確実に結合することができると共に、作業性の向上が図
られる。更に、蛇腹部により第2のコネクタが隔壁から
縁切りされた状態となり、隔壁からの振動によるストレ
スが吸収されて第2のコネクタに伝達されなくなる。
According to a second aspect of the present invention, the grommet includes:
A mounting portion for the second connector and a mounting portion for the penetrating portion are provided concentrically, and one end is continuously provided around the entire circumference by a bellows portion, so that the second connector is located inside the grommet. It is displaceable, and is mounted on the second connector and the penetrating portion in a state where the first connector and the second connector are connected to block both sides of the partition wall, thereby greatly improving the sealability of the partition wall penetrating portion. And the first connector on the standby side can be easily connected even if the mounting position of the first connector is deviated, so that the first and second connectors can be securely connected and workability can be improved. Is improved. Further, the second connector is cut off from the partition wall by the bellows portion, and the stress caused by the vibration from the partition wall is absorbed and is not transmitted to the second connector.

【図面の簡単な説明】[Brief description of the drawings]

【図1】本発明に係るコネクタの取付構造の実施形態を
示し、コネクタを分離した状態の断面図である。
FIG. 1 is a sectional view showing an embodiment of a connector mounting structure according to the present invention, in a state where a connector is separated.

【図2】図1に示すコネクタを隔壁貫通部に取り付ける
場合の説明図である。
FIG. 2 is an explanatory diagram when the connector shown in FIG. 1 is attached to a partition wall penetration portion.

【図3】図2に示すコネクタを隔壁に取り付けた状態の
断面図である。
FIG. 3 is a sectional view showing a state where the connector shown in FIG. 2 is attached to a partition.

【図4】車両のエンジンルーム側と室内側とを接続する
ワイヤハーネスの説明図である。
FIG. 4 is an explanatory diagram of a wire harness that connects an engine room side and a room side of a vehicle.

【図5】図4に示すワイヤハーネスのコネクタの説明図
である。
FIG. 5 is an explanatory view of a connector of the wire harness shown in FIG. 4;

【図6】エンジンルーム側と室内側を接続するワイヤハ
ーネスのコネクタの従来例を示す断面図である。
FIG. 6 is a cross-sectional view showing a conventional example of a wire harness connector for connecting an engine room side and a room side.

【図7】エンジンルーム側と室内側を接続するワイヤハ
ーネスのコネクタの従来例を示す断面図である。
FIG. 7 is a cross-sectional view showing a conventional example of a wire harness connector for connecting an engine room side and a room side.

【符号の説明】[Explanation of symbols]

1 コネクタ 2 雄コネクタ(第1のコネクタ) 3 雌コネクタ(第2のコネクタ) 4 グロメット 4a 内殻円筒部 4b 外殻円筒部 4d 蛇腹部 5 ダッシュパネル(隔壁) 5a 貫通孔 DESCRIPTION OF SYMBOLS 1 Connector 2 Male connector (1st connector) 3 Female connector (2nd connector) 4 Grommet 4a Inner shell cylindrical part 4b Outer shell cylindrical part 4d Bellows part 5 Dash panel (partition wall) 5a Through hole

Claims (2)

【特許請求の範囲】[Claims] 【請求項1】 隔壁の一側に配置される第1のコネクタ
に前記隔壁の他側に配置される第2のコネクタを前記隔
壁の貫通部を通して結合するコネクタの取付構造におい
て、 前記第2のコネクタには前記貫通部を塞ぐためのグロメ
ットが装着され、 前記第1のコネクタは、前記貫通部の一側に設置されて
前記第2のコネクタを待ち受ける構造とされ、 前記第2のコネクタを前記貫通部に挿入したときに前記
グロメットが前記貫通部に装着されて塞ぎ、且つ前記第
2のコネクタが前記第1のコネクタに結合することを特
徴とするコネクタの取付構造。
1. A connector mounting structure for coupling a second connector disposed on the other side of the partition to a first connector disposed on one side of the partition through a through portion of the partition. A grommet for closing the through portion is attached to the connector, and the first connector is provided on one side of the through portion and waits for the second connector. A connector mounting structure, wherein the grommet is attached to and closed by the through portion when inserted into the through portion, and the second connector is coupled to the first connector.
【請求項2】 前記グロメットは、前記第2のコネクタ
との装着部と前記貫通部との装着部とが同心的に設けら
れ且つ一側端が蛇腹部により全周に亘り連設されて前記
第2のコネクタが前記グロメット内で変位可能とされ、
前記第1のコネクタと第2のコネクタの結合状態におい
て前記第2のコネクタ及び貫通部に装着されて前記隔壁
の両側を遮断することを特徴とする請求項1に記載のコ
ネクタの取付構造。
2. The grommet according to claim 1, wherein a mounting portion for the second connector and a mounting portion for the penetrating portion are provided concentrically, and one side end is continuously provided by a bellows portion over the entire circumference. A second connector is displaceable within the grommet;
2. The connector mounting structure according to claim 1, wherein the first connector and the second connector are attached to the second connector and the penetrating portion to shut off both sides of the partition wall. 3.
JP2000348100A 2000-11-15 2000-11-15 Mounting structure of connector Pending JP2002151209A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP2000348100A JP2002151209A (en) 2000-11-15 2000-11-15 Mounting structure of connector

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP2000348100A JP2002151209A (en) 2000-11-15 2000-11-15 Mounting structure of connector

Publications (1)

Publication Number Publication Date
JP2002151209A true JP2002151209A (en) 2002-05-24

Family

ID=18821735

Family Applications (1)

Application Number Title Priority Date Filing Date
JP2000348100A Pending JP2002151209A (en) 2000-11-15 2000-11-15 Mounting structure of connector

Country Status (1)

Country Link
JP (1) JP2002151209A (en)

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2006035615A1 (en) * 2004-09-29 2006-04-06 Heiwa Corporation Game machine control board unit
JP2007087869A (en) * 2005-09-26 2007-04-05 Matsushita Electric Ind Co Ltd Connector arrangement structure and electronic device
EP2858181A1 (en) 2013-10-03 2015-04-08 Yasaki Corporation Connector
TWI624116B (en) * 2016-11-25 2018-05-11 Guo Zhao Sheng Assembly socket
JP7376311B2 (en) 2019-10-24 2023-11-08 矢崎エナジーシステム株式会社 panel mount connector

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2006035615A1 (en) * 2004-09-29 2006-04-06 Heiwa Corporation Game machine control board unit
JPWO2006035615A1 (en) * 2004-09-29 2008-05-15 株式会社平和 Control board unit for gaming machines
JP2007087869A (en) * 2005-09-26 2007-04-05 Matsushita Electric Ind Co Ltd Connector arrangement structure and electronic device
EP2858181A1 (en) 2013-10-03 2015-04-08 Yasaki Corporation Connector
TWI624116B (en) * 2016-11-25 2018-05-11 Guo Zhao Sheng Assembly socket
JP7376311B2 (en) 2019-10-24 2023-11-08 矢崎エナジーシステム株式会社 panel mount connector

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