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JP4813973B2 - Connecting member - Google Patents

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JP4813973B2
JP4813973B2 JP2006159670A JP2006159670A JP4813973B2 JP 4813973 B2 JP4813973 B2 JP 4813973B2 JP 2006159670 A JP2006159670 A JP 2006159670A JP 2006159670 A JP2006159670 A JP 2006159670A JP 4813973 B2 JP4813973 B2 JP 4813973B2
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holder
wire terminal
pin
opening
wire
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JP2007329032A5 (en
JP2007329032A (en
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次雄 安保
廣昭 村野
義和 田中
智和 松本
鉄 廣瀬
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Mitsubishi Cable Industries Ltd
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Mitsubishi Cable Industries Ltd
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Description

本発明は、例えば自動車のハーネス回路に使用する接続部材に関するものである。   The present invention relates to a connecting member used for a harness circuit of an automobile, for example.

自動車のハーネス回路においては、幹線から複数の枝線を分岐する必要が屡々ある。そのために従来では、幹線の一部の被覆を剥ぎ取り、露出した導体に枝線を圧着加工し分岐するスプライスジョイント方式と、幹線の端末部に回路分岐用コネクタを配し、幹線、枝線共に汎用コネクタ及び圧着端子を使用して分岐加工する例えば特許文献1に記載のジョイントコネクタ方式との2通りの方式が多く用いられている。   In an automobile harness circuit, it is often necessary to branch a plurality of branch lines from a trunk line. Therefore, conventionally, a part of the trunk line is stripped, a splice joint method that branches by crimping the branch line to the exposed conductor, and a circuit branch connector is arranged at the terminal part of the trunk line. For example, two types of methods such as a joint connector method described in Patent Document 1 are often used for branching using a general-purpose connector and a crimp terminal.

特願2005−71614号公報Japanese Patent Application No. 2005-71614

前者のスプライスジョイント方式では、電線を1〜3本毎に圧着加工しなければならず、それらの加工後の状態では作業性が非常に悪いという問題があり、また製造ライン上で圧着加工することが困難なので、ライン生産には不向きである。   In the former splice joint method, one to three electric wires must be crimped, and there is a problem that workability is very poor in the state after the machining, and crimping is performed on the production line. Is difficult for line production.

そこで、このスプライスジョイント方式の問題点を解決するものとして、後者のジョイントコネクタ方式が開発されている。このジョイントコネクタ方式では、ハーネス製造ライン上でのジョイント加工が可能となるため、スプライスジョイント方式と比較して生産効率が向上し、ハーネス回路の修正にも対応可能である。しかし、コネクタ及び嵌合する相手側汎用コネクタ、バスバー、接続端子などの部品点数が多くなることから、ハーネス回路の組立には時間がかかるのが実状である。   Therefore, the latter joint connector system has been developed as a solution to the problems of the splice joint system. This joint connector method enables joint processing on the harness production line, so that the production efficiency is improved as compared with the splice joint method, and it is possible to cope with the modification of the harness circuit. However, since the number of parts such as the connector and the mating general-purpose connector, bus bar, connection terminal, and the like increases, it takes a long time to assemble the harness circuit.

特に、特許文献1に開示されているジョイントコネクタを使用したワイヤハーネスでは、ジョイントコネクタが大きいために、分岐すべき個所で分岐することができず、ジョイントコネクタを収容できるスペースがある個所まで電線を延長しなければならず、ワイヤハーネスの小型化に反している。   In particular, in the wire harness using the joint connector disclosed in Patent Document 1, since the joint connector is large, the wire harness cannot be branched at a position where it should be branched, and the electric wire is connected to a place where there is a space for accommodating the joint connector. It must be extended, which is against the miniaturization of the wire harness.

つまり、ジョイントコネクタ方式でおいても、省スペース化、更なる作業性の向上、構造の簡素化など、解決しなければならない課題が多々ある。   That is, even with the joint connector system, there are many problems that need to be solved, such as space saving, further improvement of workability, and simplification of the structure.

本発明の目的は、上述の課題を解決し、製造し易く、ワイヤハーネスの組立性に優れた接続部材を提供することにある。   An object of the present invention is to solve the above-described problems, to provide a connecting member that is easy to manufacture and excellent in assembling of a wire harness.

上記目的を達成するための本発明に係る接続部材は、電線端子ごとに設けた複数の電線端子挿入口と内部ホルダ挿入用の開口部とを有する外部ホルダと、前記開口部から前記外部ホルダ内に挿入し、前記電線端子挿入口とそれぞれ連通する複数の電線端子保持孔を有すると共に、これらの電線端子保持孔と内部で交叉するスルーピン挿入孔を有する内部ホルダと、一端に受接続端を有し他端に電線を接続し前記受接続端を前記外部ホルダの電線端子挿入口を経て前記内部ホルダの電線端子保持孔に挿入する複数の電線端子と、棒状部分を前記外部ホルダの開口部を経て前記内部ホルダのスルーピン挿入孔に挿入し前記内部ホルダ内の前記電線端子の受接続端の接点に順次に接触させることにより前記電線端子同士を電気接続し、前記棒状部分の基部に前記外部ホルダの開口部を封止するための固定ホルダを取り付けたスルーピンと、から成ることを特徴とする。 In order to achieve the above object, a connecting member according to the present invention includes an external holder having a plurality of wire terminal insertion openings provided for each wire terminal and an opening for inserting an internal holder, and the opening to the inside of the external holder. inserted into, and having a plurality of wire terminal holding holes communicating respectively with said wire terminal insertion opening, closed with an internal holder having a Surupin insertion hole intersecting inside and these wire terminal holding holes, a receiving connection end to end a plurality of wire terminal inserting the connecting wires the receiving connecting terminal to the electric wire terminal holding holes of the outer holder of the wire terminal insertion openings of the inner holder through the other end to the rod-shaped portion opening in the outer holder after the insert into Surupin insertion hole of the inner holder the wire and terminals are electrically connected to by sequentially contacting the contacts of the receiving connecting end of the wire terminal in the inner holder, the rod-shaped portion Wherein said be made an opening of the outer holder from the Surupin fitted with fixing holder for sealing, the base.

本発明に係る接続部材によれば、複雑な内部形状を形成した内部ホルダを外部ホルダ内に挿入し、挿込端子を外部ホルダの電線端子挿入口を介して内部ホルダに挿入することで、内部ホルダ内で電線端子同士を導通し、構造的に簡素となり、電気的接続の信頼性が向上し、スペースファクタ、作業性、コストの低減が可能となる。   According to the connection member according to the present invention, the internal holder having a complicated internal shape is inserted into the external holder, and the insertion terminal is inserted into the internal holder via the electric wire terminal insertion port of the external holder. Electrical connection between the wire terminals in the holder is simplified, the structure is simplified, the reliability of electrical connection is improved, and the space factor, workability, and cost can be reduced.

特に、自動車のハーネス回路に使用すれば、従来のジョイント構造よりも格段に接続構造がコンパクトになり、ワイヤハーネス作業時間が短縮化される。   In particular, when used in a harness circuit of an automobile, the connection structure becomes much more compact than the conventional joint structure, and the wire harness working time is shortened.

また、小型化によりワイヤハーネス中での設置個所が限定されず、任意の個所に配置することができ、電線を延長しなくとも回路配線を行うことができる。   Further, the installation location in the wire harness is not limited due to the miniaturization, and it can be arranged at any location, and circuit wiring can be performed without extending the electric wire.

更に、防水構造の採用が可能で、防水機能を要する個所において使用できる。   Furthermore, a waterproof structure can be used, and it can be used in places where a waterproof function is required.

本発明を図示の実施例に基づいて詳細に説明する。   The present invention will be described in detail based on the embodiments shown in the drawings.

実施例1において、図1の分解斜視図に示すように、複数の電線端子挿入口1aを有する直方体状の外部ホルダ1と、受接続端保持孔2a、スルーピン挿入孔2bを有する内部ホルダ2と、前端の受接続端3aに筒状接点3bを設け、後端に電線4を接続した導体圧着部3cを有する複数の電線端子3と、スルーピン5を取り付けた固定ホルダ6とにより構成されている。   In the first embodiment, as shown in the exploded perspective view of FIG. 1, a rectangular parallelepiped external holder 1 having a plurality of wire terminal insertion openings 1a, an internal holder 2 having a receiving connection end holding hole 2a and a through pin insertion hole 2b, A cylindrical contact 3b is provided at the receiving connection end 3a at the front end, and a plurality of wire terminals 3 having a conductor crimping portion 3c with the electric wire 4 connected at the rear end, and a fixed holder 6 to which a through pin 5 is attached. .

外部ホルダ1には、左右両側から中央方向に向けて、複数個ずつの電線端子挿入口1aが形成され、内部に内部ホルダ2を内挿する空間部1bが設けられ、更に上下面の何れかに内部ホルダ2を挿入すると共に、固定ホルダ6を嵌合するための開口部1cが設けられている。   The outer holder 1 is formed with a plurality of wire terminal insertion openings 1a from the left and right sides toward the center, and is provided with a space portion 1b for inserting the inner holder 2 therein. An opening 1c for fitting the fixed holder 6 is provided while the inner holder 2 is inserted into the inner holder 2.

外部ホルダ1として使用する材料としては、例えば熱可塑性合成樹脂が適用され、中でも熱変形温度が高く、高剛性、電気絶縁特性、機械的特性の点で、ポリブチレンテレフタレート(PBT)やポリプロピレン(PP)などが好適である。また、縦横の大きさは使用する電線4の本数や径などにより適宜決定すればよいが、長さは通常では20mm〜150mm程度である。この外部ホルダ1の製造は、所定の金型に熱可塑性樹脂を射出成形させて製作する方法を採用することが一般的である。   As a material used as the external holder 1, for example, a thermoplastic synthetic resin is applied. Among them, polybutylene terephthalate (PBT) and polypropylene (PP) are used in view of high thermal deformation temperature, high rigidity, electrical insulation characteristics, and mechanical characteristics. And the like are preferred. The vertical and horizontal sizes may be appropriately determined depending on the number and diameter of the electric wires 4 to be used, but the length is usually about 20 mm to 150 mm. In general, the external holder 1 is manufactured by adopting a method in which a thermoplastic resin is injection molded into a predetermined mold.

内部ホルダ2は略直方体の形状とされ、電線端子挿入口1aと連通し、電線端子3の受接続端3aを保持する受接続端保持孔2aが設けられ、この受接続端保持孔2aと内部において直交するスルーピン挿入孔2bが形成されている。この内部ホルダ2の材料は外部ホルダ1と同等でよく、射出成形により製作することが好ましい。また、内部形状が複雑な場合には、縦断面又は横断面に複数個に分割して製作し、使用時に接着したり嵌め合わせて用いることができる。   The internal holder 2 is formed in a substantially rectangular parallelepiped shape, and is provided with a receiving connection end holding hole 2a that communicates with the wire terminal insertion port 1a and holds the receiving connection end 3a of the wire terminal 3. A through pin insertion hole 2b orthogonal to each other is formed. The material of the inner holder 2 may be the same as that of the outer holder 1 and is preferably manufactured by injection molding. Further, when the internal shape is complicated, it can be divided into a plurality of parts in a longitudinal section or a transverse section, and can be adhered or fitted together when used.

電線端子3は1枚の導電金属板を打ち抜いて形成されており、前端の舌片状の受接続端3aには短円筒状に絞り加工された筒状接点3bが設けられ、後端に導体圧着部3cが設けられ、この導体圧着部3cにより電線4の導体が圧着して接続されている。   The electric wire terminal 3 is formed by punching one conductive metal plate, and a front end tongue-like receiving connection end 3a is provided with a cylindrical contact 3b drawn into a short cylindrical shape, with a conductor at the rear end. A crimping portion 3c is provided, and the conductor of the electric wire 4 is crimped and connected by the conductor crimping portion 3c.

この電線端子3は銅板又は銅合金板から所定の形状に打抜き成形したものに、Sn鍍金をしたもの、又はSn鍍金した銅板又は銅合金板を所定の形状に打抜き成形したものを使用すればよい。材質は強度と導電性の点で黄銅が好ましく、更にはSn鍍金することで耐食性が向上し、かつスルーピン5との接点との導電性が得易くなる点で好適である。   The wire terminal 3 may be formed by stamping and molding a copper plate or copper alloy plate into a predetermined shape, or by Sn plating, or by punching and molding a Sn plated copper plate or copper alloy plate into a predetermined shape. . The material is preferably brass in terms of strength and conductivity, and is further preferred in that the corrosion resistance is improved by Sn plating and the conductivity with the contact with the through pin 5 is easily obtained.

筒状接点3bはスルーピン5と接触することで導通する形状であればよく、何れの側からもスルーピン5を挿入できるように、筒状接点3bの基部及び先端にテーパ状のガイドを設けることが望ましい。また、円筒状でなくとも、図2に示すような円孔3dでも多角形孔でも、或いは図3に示すような半円状、U字状、凹状、V字状の切抜き3eであってもよい。   The cylindrical contact 3b only needs to have a shape that allows conduction through contact with the through pin 5, and a tapered guide is provided at the base and tip of the cylindrical contact 3b so that the through pin 5 can be inserted from either side. desirable. Further, even if it is not cylindrical, it may be a circular hole 3d or a polygonal hole as shown in FIG. 2, or a semicircular, U-shaped, concave, or V-shaped cutout 3e as shown in FIG. Good.

電線4は導体の外周に絶縁層を被覆した絶縁電線が適用され、公知の電線径のものが適用できる。導体は従来から自動車ハーネス回路に使用される軟銅線や硬銅線の撚線、又は引張強度を維持し、線径を小さくした例えばCu−Sn合金線などの銅合金線の撚線や単線が適用される。また、絶縁層には従来から公知の絶縁材料が適用され、中でも環境対策としてノンハロゲンの絶縁材料を絶縁層に適用することが環境対策の面で好適である。   As the electric wire 4, an insulated electric wire in which an outer periphery of a conductor is covered with an insulating layer is applied, and those having a known electric wire diameter can be applied. The conductor is a twisted wire or a single wire of a copper alloy wire such as a Cu-Sn alloy wire that maintains a tensile strength and has a small wire diameter, such as a conventional copper wire or a hard copper wire used in an automobile harness circuit. Applied. In addition, conventionally known insulating materials are applied to the insulating layer, and among them, it is preferable to apply a non-halogen insulating material to the insulating layer as an environmental measure.

また、電線4の導体と電線端子3との接続は、公知のかしめ、溶接、ハンダ付け、圧着などが適用されるが、接続に要する時間、得られる接続強度の点で、実施例のような導体圧着部3cによる圧着接続が好適である。   In addition, the connection between the conductor of the electric wire 4 and the electric wire terminal 3 is performed by known caulking, welding, soldering, crimping, etc., but in terms of the time required for connection and the connection strength obtained, The crimping connection by the conductor crimping part 3c is suitable.

固定ホルダ6はスルーピン5を固定しており、固定ホルダ6の中間段部6aを外部ホルダ1の開口部1cに嵌合し、開口部1cを封止することにより、内部ホルダ2を外部ホルダ1に固定すると共に、スルーピン5を内部ホルダ2のスルーピン挿入孔2bに挿通して、電線端子3の筒状接点3bに挿入することができる。   The fixed holder 6 fixes the through pin 5, the intermediate step portion 6 a of the fixed holder 6 is fitted into the opening 1 c of the external holder 1, and the opening 1 c is sealed, whereby the internal holder 2 is connected to the external holder 1. The through pin 5 can be inserted into the through pin insertion hole 2 b of the internal holder 2 and inserted into the cylindrical contact 3 b of the electric wire terminal 3.

スルーピン5は複数の電線端子3の受接続端3a同士を導通させるための導電金属製の棒状部材であり、断面形状としては円形、三角形、四角形、多角形などが挙げられる。しかし、製造が容易で、挿入する際に大きな力が必要としない点、かつ安定して確実な導通が得易いということで、断面四角形が好適であり、この場合の電線端子3の接点形状は、円筒状又は円孔状が好適である。   The through pin 5 is a rod-shaped member made of conductive metal for conducting the receiving and connecting ends 3a of the plurality of electric wire terminals 3, and examples of the cross-sectional shape include a circle, a triangle, a quadrangle, and a polygon. However, it is easy to manufacture, does not require a large force when inserted, and is easy to obtain stable and reliable conduction, so that a square cross section is preferable. In this case, the contact shape of the wire terminal 3 is A cylindrical shape or a circular hole shape is preferable.

また、スルーピン5の硬さを受接続端3aよりも硬くすることで、電線端子3の受接続端3aの側を変形させながら挿入することが好ましい。このスルーピン5の硬さ及び受接続端3aの硬さは、加工、熱処理や材料の選択で適宜に調整することもできる。更に、筒状接点3bに確実に挿入させる点で、先端部を円錐形、角錐形又は円錐台形、角錐台形などの錐状台形とすることが好適である。   Moreover, it is preferable to insert the wire pin 3 while deforming the receiving / connecting end 3a side thereof by making the through pin 5 harder than the receiving / connecting end 3a. The hardness of the through pin 5 and the hardness of the receiving connection end 3a can be appropriately adjusted by processing, heat treatment, and selection of materials. Furthermore, it is preferable that the tip is a conical trapezoidal shape such as a conical shape, a pyramid shape, a truncated cone shape, a truncated pyramid shape, or the like, in order to be surely inserted into the cylindrical contact 3b.

スルーピン5は例えば1枚の導電金属板を折曲して折り畳むことにより、図4に示すような断面略四角形が得られるので、その後に先端部をプレス又は切削などにより錐状とすることができる。このような方法で作製することで、断面積の小さなスルーピン5でも、湾曲したり折損することが少なくなる。   The through pin 5 is obtained by bending and folding one conductive metal plate, for example, to obtain a substantially square cross section as shown in FIG. 4, and thereafter the tip can be formed into a cone shape by pressing or cutting. . By producing by such a method, even the through pin 5 having a small cross-sectional area is less likely to be bent or broken.

受接続端3aの接点が筒形状又は円形状であって、その内径がd1で、スルーピン5の横断面形状を略四角形とし、その対角線の長さをxとすると、d1<xであることが好ましい。また、スルーピン5の横断面を円形状とし、受接続端3aの接点を四角形の一辺の長さをd1とした孔部とすることもできる。この場合のスルーピン5の円形外径をd2とした場合には、d1<d2であることが好ましい。   The contact point of the receiving connection end 3a has a cylindrical shape or a circular shape, the inner diameter is d1, the cross-sectional shape of the through pin 5 is substantially square, and the length of the diagonal line is x, d1 <x. preferable. Alternatively, the through pin 5 may have a circular cross section, and the contact of the receiving connection end 3a may be a hole having a square side of d1 in length. In this case, when the circular outer diameter of the through pin 5 is d2, it is preferable that d1 <d2.

スルーピン5を電線端子3の筒状接点3bに嵌入するためには、或る程度の力を必要とするが、一体構造の固定ホルダ6を持って押し込むことにより容易に挿入することができる。   In order to fit the through pin 5 into the cylindrical contact 3 b of the electric wire terminal 3, a certain amount of force is required. However, the through pin 5 can be easily inserted by being pushed in by holding the fixed holder 6 having an integral structure.

固定ホルダ6の材料は電気絶縁性を有する材料であれば、特に限定する必要はないが、上記したようにスルーピン5を押し込む際に、或る程度の力がかかっても破損しないものが好ましい。例えば、ポリブチレンテレフタレート、ポリプロピレン、ポリエチレンなどの合成樹脂材が挙げられる。   The material of the fixing holder 6 is not particularly limited as long as it is an electrically insulating material. However, a material that does not break even when a certain amount of force is applied as described above is preferable. Examples thereof include synthetic resin materials such as polybutylene terephthalate, polypropylene, and polyethylene.

図5は組立状態の斜視図、図6はその断面図を示しており、外部ホルダ1に設けた計4個の電線端子挿入口1aからそれぞれ電線端子3が挿入され、受接続端3aの筒状接点3bの中心が、受接続端保持孔2aの中心軸に合致される。なお、受接続端3aの筒状接点3bが内部ホルダ2の中心で積み重なるために、電線端子挿入口1aは左右で段違いに形成されている。   5 is a perspective view of the assembled state, and FIG. 6 is a cross-sectional view thereof. The wire terminal 3 is inserted from each of the four wire terminal insertion openings 1a provided in the external holder 1, and the tube of the receiving connection end 3a is inserted. The center of the contact 3b is aligned with the central axis of the receiving end holding hole 2a. In addition, since the cylindrical contact 3b of the receiving connection end 3a is stacked at the center of the inner holder 2, the wire terminal insertion port 1a is formed in a stepwise manner on the left and right.

受接続端3aに筒状接点3bを有している場合には、電線端子挿入口1aに挿入するに際して、筒状接点3bが上下何れの側を向いているかは重要である。つまり、各受接続端3aを任意の向きで挿入すると、内部において整然と所定位置に位置付けすることができなくなるので、電線端子挿入口1aの入口部に筒状接点3bの向きを表示するなどを必要とする場合がある。   When the cylindrical contact 3b is provided at the receiving connection end 3a, it is important which side the cylindrical contact 3b is directed to when it is inserted into the wire terminal insertion port 1a. That is, if each receiving / connecting end 3a is inserted in an arbitrary direction, it cannot be neatly positioned at a predetermined position in the inside, so it is necessary to display the direction of the cylindrical contact 3b at the inlet of the wire terminal insertion port 1a. It may be.

内部ホルダ2の保持孔2aからスルーピン5が挿入されると、スルーピン5は受接続端3aの筒状接点3bに挿通することにより接触し、各電線端子3同士が導通される。そして、スルーピン5を取り外さない限り、電線端子3は分離することはない。   When the through pin 5 is inserted from the holding hole 2a of the internal holder 2, the through pin 5 comes into contact with the cylindrical contact 3b of the receiving connection end 3a, and the electric wire terminals 3 are electrically connected. And unless the through pin 5 is removed, the electric wire terminal 3 is not separated.

固定ホルダ6には、外部ホルダ1の開口部1cに設けた錠止部と錠止する機構を設け、外部ホルダ1から脱落することを防止することができる。また、捻回により外部ホルダ1とロックして、同様に脱落を防止する機構を設けることも可能であり、この場合にはスルーピン5も回動するので筒状接点3bとの接触がより安定したものになる。 The fixed holder 6 can be provided with a locking portion provided in the opening 1 c of the external holder 1 and a mechanism for locking, and can be prevented from falling off the external holder 1. Further, it is possible to provide a mechanism for locking the external holder 1 by twisting and preventing the dropout similarly. In this case, the through pin 5 is also rotated, so that the contact with the cylindrical contact 3b is more stable. Become a thing.

更には、スルーピン5を外部ホルダ1の反対側まで挿通して突出し、スルーピン5の先端にねじ部を設け、合成樹脂製の袋ナットを螺着して、固定ホルダ6を固定してもよい。或いは、外部ホルダ1の上にカバーを被着したりテープを巻回して、外部ホルダ1に固定ホルダ6を固定するようにすることもできる。   Furthermore, the fixing pin 6 may be fixed by inserting the through pin 5 to the opposite side of the external holder 1 and projecting it, providing a threaded portion at the tip of the through pin 5, and screwing a synthetic resin cap nut. Alternatively, the fixed holder 6 can be fixed to the external holder 1 by covering the external holder 1 with a cover or winding a tape.

図7は実施例2の防水タイプの外部ホルダ1、内部ホルダ2、電線端子3、固定ホルダ6の分解斜視図、図8は組立状態の断面図を示している。   FIG. 7 is an exploded perspective view of the waterproof type outer holder 1, the inner holder 2, the electric wire terminal 3, and the fixed holder 6 according to the second embodiment, and FIG. 8 is a sectional view of the assembled state.

電線端子3に付設した電線4には、合成ゴムから成る円筒状の防水シール材7が挿着され、電線端子3から延長した被覆圧着部3fにより固定されている。また、外部ホルダ1の電線端子挿入口1aの入口部は断面円形とされ、電線端子3を挿入した際に防水シール材7により密封されるようになっている。   A cylindrical waterproof sealing material 7 made of synthetic rubber is inserted into the electric wire 4 attached to the electric wire terminal 3 and fixed by a cover crimping portion 3 f extending from the electric wire terminal 3. Moreover, the entrance part of the electric wire terminal insertion port 1a of the external holder 1 has a circular cross section, and is sealed by the waterproof seal material 7 when the electric wire terminal 3 is inserted.

固定ホルダ6の中間段部6aには筒状の防水シール材8が装着され、この防水シール材8は外部ホルダ1の開口部1cに嵌合する際に防水構造となるようにされている。このような構成の実施例2においては、外部ホルダ1の内部には防水シール材7、8により水の浸入が阻止され、この接続部材を防水構造とすることができる。   A cylindrical waterproof seal material 8 is attached to the intermediate step portion 6 a of the fixed holder 6, and this waterproof seal material 8 has a waterproof structure when fitted into the opening 1 c of the external holder 1. In the second embodiment having such a configuration, water penetration is prevented by the waterproof sealing materials 7 and 8 inside the outer holder 1, and this connection member can have a waterproof structure.

なお、実施例1、2では電線端子挿入口1aを計4個設けて、ここに4個の電線端子3を挿入したが、更に多数の電線端子挿入口1aを設けて回路を設計することができる。また、列数は1列であっても、挿入するスルーピン5の数を1個ではなく、2個のスルーピン5を上下からそれぞれ挿入し、中央において短絡しない長さとすれば、電線端子3の導通を2つのグループに分けることが可能となる。   In the first and second embodiments, a total of four wire terminal insertion ports 1a are provided and four wire terminals 3 are inserted therein, but a circuit can be designed by providing a larger number of wire terminal insertion ports 1a. it can. Further, even if the number of rows is one, if the number of through pins 5 to be inserted is not one but two through pins 5 are inserted from above and below, and the length does not short-circuit at the center, the continuity of the wire terminal 3 Can be divided into two groups.

また、スルーピン5にも電線を接続することにより、電線端子3との接続回路を増加することもできる。   Moreover, the connection circuit with the electric wire terminal 3 can also be increased by connecting an electric wire to the through pin 5.

実施例1の分解斜視図である。1 is an exploded perspective view of Example 1. FIG. 電線端子の変形例の斜視図である。It is a perspective view of the modification of an electric wire terminal. 電線端子の他の変形例の要部斜視図である。It is a principal part perspective view of the other modification of an electric wire terminal. スルーピンの断面図である。It is sectional drawing of a through pin. 組立体の斜視図である。It is a perspective view of an assembly. 組立体の断面図である。It is sectional drawing of an assembly. 実施例2の分解斜視図である。3 is an exploded perspective view of Example 2. FIG. 組立体の断面図である。It is sectional drawing of an assembly.

符号の説明Explanation of symbols

1 外部ホルダ
1a 電線端子挿入口
1b 空間部
1c 開口部
2 内部ホルダ
2a 受接続端保持孔
2b スルーピン挿入孔
3 電線端子
3a 受接続端
3b 筒状接点
3c 導体圧着部
3d 円孔
3e 切抜き
3f 被覆圧着部
4 電線
5 スルーピン
6 固定ホルダ
6a 中間段部
7、8 防水シール材
DESCRIPTION OF SYMBOLS 1 External holder 1a Electric wire terminal insertion port 1b Space part 1c Opening part 2 Internal holder 2a Receiving connection end holding hole 2b Through pin insertion hole 3 Electric wire terminal 3a Receiving connection end 3b Cylindrical contact 3c Conductor crimping part 3d Circular hole 3e Cutout 3f Cover crimping Part 4 Electric wire 5 Through pin 6 Fixed holder 6a Intermediate step part 7, 8 Waterproof sealant

Claims (6)

電線端子ごとに設けた複数の電線端子挿入口と内部ホルダ挿入用の開口部とを有する外部ホルダと、
前記開口部から前記外部ホルダ内に挿入し、前記電線端子挿入口とそれぞれ連通する複数の電線端子保持孔を有すると共に、これらの電線端子保持孔と内部で交叉するスルーピン挿入孔を有する内部ホルダと、
一端に受接続端を有し他端に電線を接続し前記受接続端を前記外部ホルダの電線端子挿入口を経て前記内部ホルダの電線端子保持孔に挿入する複数の電線端子と、
棒状部分を前記外部ホルダの開口部を経て前記内部ホルダのスルーピン挿入孔に挿入し前記内部ホルダ内の前記電線端子の受接続端の接点に順次に接触させることにより前記電線端子同士を電気接続し、前記棒状部分の基部に前記外部ホルダの開口部を封止するための固定ホルダを取り付けたスルーピンと、
から成ることを特徴とする接続部材。
An external holder having a plurality of wire terminal insertion openings provided for each wire terminal and an opening for inserting an internal holder ;
Inserted from the opening in the outer holder, and having a plurality of wire terminal holding holes communicating respectively with said wire terminal insertion opening, an internal holder having a Surupin insertion hole intersecting inside and these wire terminal holding holes ,
A plurality of wire terminal to be inserted into the wire terminal holding holes of the inner holder to connect the wire to the other end has a receiving connection edge the receiving connecting end through the wire terminal insertion openings of the outer holder at one end,
A rod portion through the opening of the outer holder is inserted into Surupin insertion hole of the inner holder the wire terminals are electrically connected by sequentially contacting the contacts of the receiving connecting end of the wire terminal in the inner holder A through pin in which a fixed holder for sealing the opening of the external holder is attached to the base of the rod-shaped portion;
A connecting member comprising:
前記受接続端の接点は前記スルーピンを挿通する筒形としたことを特徴とする請求項1に記載の接続部材。 The connection member according to claim 1, wherein the contact of the receiving connection end has a cylindrical shape through which the through pin is inserted. 前記スルーピンの横断面を略四角形としたことを特徴とする請求項1又は2に記載の接続部材。 The connecting member according to claim 1 or 2 , wherein a cross section of the through pin is substantially rectangular. 前記スルーピンの先端は錐状又は錐状台形としたことを特徴とする請求項1〜の何れか1つの請求項に記載の接続部材。 The connecting member according to any one of claims 1 to 3 , wherein a tip of the through pin has a conical shape or a conical trapezoidal shape. 前記電線端子の電線接続部にシール部材を装着前記外部ホルダの電線端子挿入口との間を防水構造とし、前記固定ホルダの基部にシール部材を装着し前記外部ホルダの開口部との間を防水構造としたことを特徴とする請求項1〜4の何れか1つの請求項に記載の接続部材。 A seal member is attached to the electric wire connection portion of the electric wire terminal to form a waterproof structure between the electric wire terminal insertion port of the external holder, and a seal member is attached to the base portion of the fixed holder and between the opening portion of the external holder. The connection member according to claim 1 , wherein the connection member has a waterproof structure . 請求項1〜の何れか1つの請求項に記載の接続部材を使用したことを特徴とする自動車用ハーネス回路。 An automotive harness circuit, wherein the connection member according to any one of claims 1 to 5 is used.
JP2006159670A 2006-06-08 2006-06-08 Connecting member Active JP4813973B2 (en)

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