JP6000202B2 - Crimping terminal, connection structure, connector, and crimping method for crimping terminal - Google Patents

Crimping terminal, connection structure, connector, and crimping method for crimping terminal Download PDF

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JP6000202B2
JP6000202B2 JP2013150956A JP2013150956A JP6000202B2 JP 6000202 B2 JP6000202 B2 JP 6000202B2 JP 2013150956 A JP2013150956 A JP 2013150956A JP 2013150956 A JP2013150956 A JP 2013150956A JP 6000202 B2 JP6000202 B2 JP 6000202B2
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crimping
coated
longitudinal direction
crimp
wire
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JP2014038837A (en
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幸大 川村
幸大 川村
翔 外池
翔 外池
高村 聡
聡 高村
隆人 中嶋
隆人 中嶋
小林 浩
浩 小林
大泰 多賀
大泰 多賀
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THE FURUKAW ELECTRIC CO., LTD.
Toyota Motor Corp
Furukawa Automotive Systems Inc
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THE FURUKAW ELECTRIC CO., LTD.
Toyota Motor Corp
Furukawa Automotive Systems Inc
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この発明は、例えば自動車用ワイヤーハーネスのコネクタ等に装着されるような圧着端子、接続構造体、コネクタ、及び圧着端子の圧着方法に関する。   The present invention relates to a crimping terminal, a connection structure, a connector, and a crimping method for a crimping terminal that are mounted on, for example, a connector of an automobile wire harness.

自動車等に装備された電装機器は、被覆電線を束ねたワイヤーハーネスを介して、別の電装機器や電源装置と接続して電気回路を構成している。この際、ワイヤーハーネスと電装機器や電源装置とは、それぞれに装着したコネクタ同士で接続されている。
これらコネクタは、被覆電線に圧着して接続した圧着端子が内部に装着されており、凹凸対応して接続される雌型コネクタと雄型コネクタとを嵌合させる構成である。
An electrical equipment equipped in an automobile or the like constitutes an electrical circuit by being connected to another electrical equipment or a power supply device via a wire harness in which covered electric wires are bundled. At this time, the wire harness and the electrical equipment and the power supply device are connected to each other by connectors attached thereto.
These connectors have a configuration in which a crimp terminal connected by crimping to a covered electric wire is mounted inside, and a female connector and a male connector that are connected corresponding to the unevenness are fitted.

ところで、このようなコネクタは、様々な環境下で使用されているため、雰囲気温度の変化による結露などによって意図しない水分が被覆電線の表面に付着することがある。そして、被覆電線の表面を伝ってコネクタ内部に水分が侵入すると、被覆電線の先端より露出している電線導体の表面が腐食するという問題がある。   By the way, since such a connector is used in various environments, unintended moisture may adhere to the surface of the covered electric wire due to dew condensation due to a change in ambient temperature. And when moisture penetrates into the connector through the surface of the covered electric wire, there is a problem that the surface of the electric wire conductor exposed from the tip of the covered electric wire is corroded.

そこで、圧着端子で圧着された電線導体への水分の侵入を防止する様々な技術が提案されている。
例えば、特許文献1に記載の電線の止水構造は、電線の芯線を圧着する芯線バレル、及び電線の絶縁被覆層を圧着する絶縁被覆バレルを備えた圧着端子において、圧着端子に圧着した電線の絶縁被覆層とともに、芯線バレル、及び絶縁被覆バレルを、熱収縮チューブを被覆することで、絶縁被覆層からの水分の侵入を防止するとされている。
Accordingly, various techniques for preventing moisture from entering the wire conductor crimped by the crimp terminal have been proposed.
For example, the water stop structure of an electric wire described in Patent Document 1 is a crimp terminal including a core wire barrel for crimping a core wire of an electric wire and an insulation coating barrel for crimping an insulating coating layer of the electric wire. It is said that the penetration of moisture from the insulating coating layer is prevented by covering the core wire barrel and the insulating coating barrel with the heat-shrinkable tube together with the insulating coating layer.

しかしながら、特許文献1に記載の電線の止水構造は、熱収縮チューブを装着する工程、及び熱収縮チューブを過熱する工程が必要であり、加えて熱収縮チューブを確実に収縮させる時間を要するため、電線の芯線を圧着した芯線バレルに対する止水に多大な工数を要するという問題がある。
さらに、熱収縮チューブが外気に晒されるため、経年劣化や変質の抑制が難しく、熱収縮チューブが変形や損傷して水分が侵入するおそれがある。
However, the water stop structure of the electric wire described in Patent Document 1 requires a process of attaching the heat-shrinkable tube and a process of overheating the heat-shrinkable tube, and in addition, it takes time to reliably shrink the heat-shrinkable tube. In addition, there is a problem that a great amount of man-hours are required to stop the water for the core wire barrel to which the core wire of the electric wire is crimped.
Furthermore, since the heat-shrinkable tube is exposed to the outside air, it is difficult to suppress aging deterioration and deterioration, and the heat-shrinkable tube may be deformed or damaged, and moisture may enter.

特開2011−81918号公報JP 2011-81918 A

この発明は、上述の問題に鑑み、被覆体側からの水分の侵入を確実に防止することができる圧着端子、接続構造体、コネクタ、及び圧着端子の圧着方法を提供することを目的とする。   In view of the above problems, an object of the present invention is to provide a crimp terminal, a connection structure, a connector, and a crimp method for a crimp terminal that can reliably prevent moisture from entering from the side of the covering body.

この発明は、電線導体の外周を絶縁性の被覆体で被覆した被覆電線における前記被覆体の先端近傍に対して加締めて圧着する被覆圧着部と、前記被覆体の先端から前記被覆電線の長手方向に所定の長さ露出した前記電線導体に対して加締めて圧着する導体圧着部とで一体に構成したバレル部を備えた圧着端子であって、前記被覆圧着部を、前記被覆電線の短手方向における断面形状を、前記被覆体を包囲する閉断面形状に形成するとともに、前記長手方向に所定の長さ延設して形成し、前記導体圧着部を、前記被覆圧着部を前記長手方向に延設して形成するとともに、前記短手方向における断面形状を前記電線導体を包囲する閉断面形状に形成し、前記被覆圧着部に、圧着状態において前記被覆体を前記短手方向に圧縮するように、前記被覆圧着部の内面から前記被覆電線の短手方向における中心に向けて突出する突形状に圧着前に形成するとともに、前記長手方向に交差する方向に沿って、長手方向視において前記被覆圧着部の内面に沿って隙間なく形成した圧縮部を備え、前記被覆圧着部の外面に、前記圧縮部に対応する凹部を設け、前記被覆圧着部における端部に、帯状のキャリアが取り付けられていることを特徴とする。 The present invention includes a coated crimping portion that crimps and crimps a wire conductor in which an outer periphery of an electric wire conductor is coated with an insulating coating to the vicinity of the tip of the coating, and a length of the coated wire from the tip of the coating A crimping terminal including a barrel portion integrally formed with a conductor crimping portion that crimps and crimps the wire conductor exposed for a predetermined length in a direction, the sheath crimping portion being a short of the sheathed wire The cross-sectional shape in the hand direction is formed into a closed cross-sectional shape that surrounds the covering body, and is formed by extending a predetermined length in the longitudinal direction, and the conductor crimping portion is formed in the longitudinal direction. The cross-sectional shape in the short direction is formed into a closed cross-sectional shape surrounding the electric wire conductor, and the covering body is compressed in the short direction in the pressure-bonded state on the covering pressure-bonding portion. So that the coating An inner surface of the coated crimping portion is formed in a protruding shape that protrudes from the inner surface of the coated portion toward the center in the short direction of the coated electric wire before crimping, and in a longitudinal direction along the direction intersecting the longitudinal direction. A compression portion formed without a gap along the outer surface of the covering crimping portion, a recess corresponding to the compression portion is provided on an outer surface of the covering crimping portion, and a band-shaped carrier is attached to an end portion of the covering crimping portion. And

上記バレル部は、内部中空形状のクローズバレル形式とすることができる。
上記閉断面形状は、端部を溶着して形成した閉断面形状、あるいは重ね合わせた端部を溶着して一体に形成した閉断面形状などとすることができる。
The barrel portion may be a closed barrel type having an internal hollow shape.
The closed cross-sectional shape may be a closed cross-sectional shape formed by welding the end portions, or a closed cross-sectional shape formed integrally by welding the overlapped end portions.

上記短手方向に圧縮とは、上下左右方向に被覆体を圧縮、あるいは被覆体の径方向中心に向けて被覆体を圧縮などとすることができる。
上記突形状は、長手方向における断面形状が略凸状、略山型状、あるいは被覆圧着部を縮径した形状などとすることができる。
The compression in the short side direction may be compression of the covering body in the vertical and horizontal directions or compression of the covering body toward the radial center of the covering body.
The protruding shape can be a shape in which the cross-sectional shape in the longitudinal direction is substantially convex, substantially mountain-shaped, or a shape in which the diameter of the coated crimping portion is reduced.

この発明により、圧着端子は、被覆体側からの水分の侵入を確実に防止することができる。
具体的には、短手方向の断面形状が閉断面形状の被覆圧着部、及び導体圧着部と、圧縮部とを備えたことにより、バレル部は、被覆体側の端部から被覆圧着部の内部に水分が侵入することを防止できる。さらに、例えばバレル部における電線導体側端部をシールする、あるいは封止することで、バレル部の長手方向両端から内部に水分が侵入することを確実に防止することができる。
According to the present invention, the crimp terminal can reliably prevent the intrusion of moisture from the cover side.
Specifically, the barrel part is provided from the end on the covering body side to the inside of the covering crimping part by including a covering crimping part having a cross-sectional shape in the short side direction, a conductor crimping part, and a compression part. It is possible to prevent moisture from entering the water. Furthermore, for example, by sealing or sealing the end portion on the electric wire conductor side in the barrel portion, it is possible to reliably prevent moisture from entering the inside from both longitudinal ends of the barrel portion.

加えて、被覆体と被覆圧着部との境界に圧縮部を備えたため、圧着端子は、外気に晒されることによる圧縮部の経年劣化などを抑制するとともに、外的要因による圧縮部の損傷を防止することができる。このため、圧着端子は、圧着状態における被覆圧着部の内部への水分の侵入を確実、かつ継続的に防止することができる。
従って、圧着端子は、圧着状態における被覆圧着部の内部への水分の侵入を確実に防止することができる。
In addition, since the compression part is provided at the boundary between the coated body and the coated crimp part, the crimp terminal suppresses the deterioration of the compressed part due to exposure to the outside air and prevents damage to the compressed part due to external factors. can do. For this reason, the crimp terminal can reliably and continuously prevent the intrusion of moisture into the inside of the coated crimp portion in the crimped state.
Therefore, the crimp terminal can reliably prevent moisture from entering the inside of the coated crimp portion in the crimped state.

また、前記被覆圧着部に、圧着状態において前記被覆体を前記短手方向に圧縮するように、前記被覆圧着部の内面から前記被覆電線の短手方向における中心に向けて突出する突形状に圧着前に形成するとともに、前記長手方向に交差する方向に沿って、長手方向視において前記被覆圧着部の内面に沿って隙間なく形成した圧縮部を備えたことにより、圧着端子は、被覆体と被覆圧着部との隙間から侵入した水分をより確実に止水することができる。   Further, in the crimped state, the coated body is crimped to a protruding shape that protrudes from the inner surface of the coated crimped portion toward the center in the short direction of the coated electric wire so that the coated body is compressed in the short direction in the crimped state. The crimp terminal is formed before and has a compression portion formed without gaps along the inner surface of the coated crimp portion in the longitudinal direction along the direction intersecting the longitudinal direction. Water that has entered from the gap with the crimping part can be more reliably stopped.

具体的には、圧縮部で被覆体を短手方向に圧縮することで、被覆体の反発力により被覆体と被覆圧着部との隙間を確実に塞ぐことができる。このため、被覆体に対して被覆圧着部を加締めた際、被覆圧着部の変形に伴い生じる隙間を確実に閉塞することができる。   Specifically, by compressing the covering body in the short direction by the compression portion, the gap between the covering body and the covering crimping portion can be reliably closed by the repulsive force of the covering body. For this reason, when crimping | bonding a covering crimping | compression-bonding part with respect to a covering, the gap which arises with a deformation | transformation of a covering crimping part can be obstruct | occluded reliably.

さらに、被覆圧着部に圧縮部を形成することで、外的要因による損傷や変質を抑制することができ、被覆圧着部の内部への水分の侵入をより継続的に防止することができる。
加えて、長手方向視において、圧縮部を隙間なく形成することで、圧着状態における被覆圧着部の内部への水分の侵入をより確実に防止することができる。
従って、圧着端子は、被覆体と被覆圧着部との隙間を確実に閉塞する圧縮部によって止水性の向上を図ることができる。
Furthermore, by forming the compression part in the coated crimping part, it is possible to suppress damage and alteration due to external factors, and to more continuously prevent moisture from entering the coated crimped part.
In addition, when the compression portion is formed without a gap when viewed in the longitudinal direction, it is possible to more reliably prevent moisture from entering the inside of the coated crimp portion in the crimped state.
Therefore, the crimping terminal can improve the water stoppage by the compression part that reliably closes the gap between the covering body and the covering crimping part.

また、前記圧縮部を、前記被覆圧着部の内面から前記被覆電線の短手方向における中心に向けて突出する突形状に形成することにより、圧着端子は、圧縮部による止水性をより向上することができる。
具体的には、圧縮部を突形状としたことにより、被覆体をより確実に圧縮することができる。さらに、突形状の圧縮部によって被覆体が略凸凹状に変形するため、水分の侵入経路を複雑化、かつ侵入経路の距離を長くすることができる。これにより、被覆体と被覆圧着部との隙間に侵入した水分が電線導体に到達することをより困難にすることができる。
In addition, by forming the compression portion in a protruding shape that protrudes from the inner surface of the coated crimp portion toward the center in the short direction of the coated electric wire, the crimp terminal further improves the water stoppage by the compression portion. Can do.
Specifically, the covering can be more reliably compressed by making the compression portion have a protruding shape. Furthermore, since the covering is deformed into a substantially uneven shape by the projecting compression portion, the intrusion route of moisture can be complicated and the distance of the intrusion route can be increased. Thereby, it can be made more difficult for the water | moisture content which penetrate | invaded the clearance gap between a coating | covering body and a coating | coated crimping | compression-bonding part to reach | attain an electric wire conductor.

加えて、圧着により突形状の圧縮部が被覆体に食い込むため、万一、長手方向に引抜き力が加わっても、被覆電線が圧着端子から容易に外れることを防止できる。
従って、圧着端子は、圧縮部を突形状とすることで、より確実な止水性を確保することできる。
In addition, since the protruding compressed portion bites into the cover body by crimping, even if a pulling force is applied in the longitudinal direction, the covered wire can be prevented from easily coming off from the crimp terminal.
Therefore, the crimp terminal can ensure more reliable water-stopping by making the compression portion have a protruding shape.

また、この発明の態様として、前記バレル部に、前記導体圧着部を前記長手方向に延設し、前記長手方向における先端を封止した封止部を備えることができる。
この発明により、圧着端子は、バレル部における電線導体側の開口からの水分の侵入を防止することができる。さらに、封止部、及び上述の圧縮部により、圧着端子は、圧着状態におけるバレル部の内部を密閉状態にすることができる。これにより、圧着端子は、バレル部の内部への水分の侵入をより確実に防止することができる。
従って、圧着端子は、圧着状態におけるバレル部の内部を密閉状態にすることで、確実な止水性を確保するととともに、より安定した導電性を確保することができる。
As an aspect of the present invention, the barrel portion can be provided with a sealing portion that extends the conductor crimping portion in the longitudinal direction and seals the tip in the longitudinal direction.
According to the present invention, the crimp terminal can prevent moisture from entering from the opening on the wire conductor side in the barrel portion. Furthermore, the crimp part can make the inside of the barrel part in a crimping state sealed by the sealing part and the above-described compression part. Thereby, the crimp terminal can prevent the penetration | invasion of the water | moisture content to the inside of a barrel part more reliably.
Therefore, the crimp terminal can secure a reliable water stop and ensure a more stable conductivity by sealing the inside of the barrel portion in the crimped state.

また、この発明は、上述した圧着端子におけるバレル部によって、前記被覆電線と前記圧着端子とを接続した接続構造体であることを特徴とする。
この発明により、圧着端子のバレル部により圧着するだけで確実な止水性を確保できる接続構造体を構成することができる。したがって、安定した導電性を確保することができる。
Moreover, this invention is the connection structure which connected the said covered electric wire and the said crimp terminal with the barrel part in the crimp terminal mentioned above.
According to the present invention, it is possible to configure a connection structure that can ensure reliable water-stopping only by crimping with a barrel portion of a crimp terminal. Therefore, stable conductivity can be ensured.

また、この発明の態様として、前記電線導体を、アルミ系材料で構成するとともに、少なくとも前記バレル部を、銅系材料で構成することができる。
この発明により、銅線による電線導体を有する被覆電線に比べて軽量化できるとともに、上述した確実な止水性により、いわゆる異種金属腐食(以下において電食という)を防止することができる。
As an aspect of the present invention, the wire conductor can be made of an aluminum-based material, and at least the barrel portion can be made of a copper-based material.
According to the present invention, it is possible to reduce the weight as compared with a covered electric wire having an electric wire conductor made of copper wire, and to prevent so-called dissimilar metal corrosion (hereinafter referred to as “electrolytic corrosion”) due to the above-described reliable water stoppage.

詳しくは、被覆電線の電線導体に従来用いられていた銅系材料をアルミニウムあるいはアルミニウム合金などのアルミ系材料に置き換え、そのアルミ系材料製の電線導体を圧着端子に圧着した場合においては、端子材料の錫めっき、金めっき、銅合金等の貴な金属との接触により、卑な金属であるアルミ系材料が腐食される現象、すなわち電食が問題となる。   Specifically, if the copper-based material conventionally used for the wire conductor of the covered electric wire is replaced with an aluminum-based material such as aluminum or aluminum alloy, and the wire conductor made of the aluminum-based material is crimped to the crimp terminal, the terminal material Phenomenon in which aluminum base material, which is a base metal, is corroded by contact with noble metals such as tin plating, gold plating, copper alloy, etc., that is, electrolytic corrosion becomes a problem.

なお、電食とは、貴な金属と卑な金属とが接触している部位に水分が付着すると、腐食電流が生じ、卑な金属が腐食、溶解、消失等する現象である。この現象により、圧着端子の圧着部に圧着されたアルミ系材料製の導体部分が腐食、溶解、消失し、やがては電気抵抗が上昇する。その結果、十分な導電機能を果たせなくなるという問題があった。
しかしながら、上述した確実な止水性により、銅系材料による導体部分を有する被覆電線に比べて軽量化を図りながら、いわゆる電食を防止することができる。
The electrolytic corrosion is a phenomenon in which, when moisture adheres to a site where a noble metal and a base metal are in contact, a corrosion current is generated, and the base metal is corroded, dissolved, or lost. Due to this phenomenon, the conductor portion made of an aluminum-based material that is crimped to the crimping portion of the crimping terminal is corroded, dissolved, or lost, and eventually the electrical resistance increases. As a result, there is a problem that a sufficient conductive function cannot be achieved.
However, so-called galvanic corrosion can be prevented by reducing the weight as compared with the covered electric wire having a conductor portion made of a copper-based material due to the above-described reliable water-stopping property.

また、この発明は、上述の接続構造体を複数束ねて構成したワイヤーハーネスであることを特徴とする。
この発明により、圧着端子と電線導体を構成する金属種によらず、安定した導電性を確保したワイヤーハーネスを構成することができる。
Moreover, this invention is a wire harness configured by bundling a plurality of the connection structures described above.
By this invention, the wire harness which ensured the stable electroconductivity can be comprised irrespective of the metal seed | species which comprises a crimp terminal and an electric wire conductor.

また、この発明は、上述の接続構造体における圧着端子をコネクタハウジング内に配置したコネクタであることを特徴とする。
この発明により、圧着端子と電線導体を構成する金属種によらず、安定した導電性を確保したまま圧着端子を接続することができる。
In addition, the present invention is a connector in which the crimp terminal in the connection structure described above is disposed in a connector housing.
According to the present invention, it is possible to connect the crimp terminal while ensuring stable conductivity regardless of the metal type constituting the crimp terminal and the wire conductor.

詳述すると、例えば、雌型のコネクタと雄型のコネクタを互いに嵌合して、各コネクタのコネクタハウジング内に配置した圧着端子を互いに接続する際、止水性を確保したまま各コネクタの圧着端子を互いに接続することができる。
従って、コネクタは、確実な導電性を備えた接続状態を確保することができる。
More specifically, for example, when a female connector and a male connector are fitted to each other and the crimp terminals arranged in the connector housing of each connector are connected to each other, the crimp terminal of each connector is secured while maintaining water-tightness. Can be connected to each other.
Therefore, the connector can ensure a connection state with reliable conductivity.

また、この発明は、電線導体の外周を絶縁性の被覆体で被覆した被覆電線における前記被覆体の先端近傍に対して加締めて圧着する被覆圧着部と、前記被覆体の先端から前記被覆電線の長手方向に所定の長さ露出した前記電線導体に対して加締めて圧着する導体圧着部とで構成したバレル部を備えた圧着端子の圧着方法であって、前記バレル部を、前記被覆電線の短手方向における断面形状を、前記被覆体を包囲する閉断面形状に形成するとともに、前記長手方向に所定の長さ延設して形成した前記被覆圧着部と、前記被覆圧着部を前記長手方向に延設して形成するとともに、前記短手方向における断面形状を前記電線導体を包囲する閉断面形状に形成した前記導体圧着部とで構成し、前記被覆圧着部における端部が帯状のキャリアに取り付けられており、前記被覆圧着部の内面から前記被覆電線の短手方向における中心に向けて突出する突形状に圧着前に形成するとともに、前記長手方向に交差する方向に沿って、長手方向視において前記被覆圧着部の内面に沿って隙間なく形成した圧縮部を備えるとともに、外面に、前記圧縮部に対応する凹部を設けた前記被覆圧着部を、前記被覆圧着部の内面と前記被覆体の外面との境界において、前記圧縮部で前記被覆体を前記短手方向に圧縮するように、前記被覆体の先端近傍に対して加締めて圧着することを特徴とする。
この発明により、より確実に圧縮部を形成し、被覆体と被覆圧着部との隙間をより確実に閉塞することができる。
The present invention also provides a coated crimping portion that crimps and crimps the vicinity of the tip of the coated body in the coated wire in which the outer periphery of the wire conductor is coated with an insulating coated body, and the coated wire from the distal end of the coated body A crimping method of a crimp terminal comprising a barrel crimping portion that is crimped by crimping the wire conductor exposed for a predetermined length in the longitudinal direction of the wire conductor, the barrel portion being the covered wire The cross-sectional shape in the short direction is formed into a closed cross-sectional shape surrounding the covering body, and the covering pressure-bonding portion formed by extending a predetermined length in the longitudinal direction, and the covering pressure-bonding portion The cross-sectional shape in the short-side direction is formed by the conductor crimping portion formed in a closed cross-sectional shape surrounding the electric wire conductor, and the end of the covering crimping portion is a band-shaped carrier Attach to Is and, with formed before bonding the inner surface of the insulation crimp portion protrusion shape protruding toward the center in the lateral direction of the covered electric wire along a direction intersecting the longitudinal direction, in the longitudinal direction viewed Rutotomoni comprising a compression portion without a gap formed along an inner surface of the insulation crimp portion, the outer surface, the insulation crimp portion provided with a recess corresponding to the compression section, of the inner surface and the covering body of the insulation crimp portion At the boundary with the outer surface, crimping is performed by crimping the vicinity of the tip of the covering body so that the covering portion is compressed in the short direction by the compression portion.
By this invention, a compression part can be formed more reliably and the clearance gap between a coating body and a covering crimping | compression-bonding part can be obstruct | occluded more reliably.

この発明により、被覆体側からの水分の侵入を確実に防止できる圧着端子、接続構造体、コネクタ、及び圧着端子の圧着方法を提供することができる。   According to the present invention, it is possible to provide a crimping terminal, a connection structure, a connector, and a crimping method of the crimping terminal that can surely prevent moisture from entering from the covering body side.

被覆電線、及び圧着端子における上方からの外観を示す外観斜視図。The external appearance perspective view which shows the external appearance from the upper direction in a covered electric wire and a crimp terminal. バレル部における溶接について説明する説明図。Explanatory drawing explaining the welding in a barrel part. 図1中のA−A矢視断面における加締め工程を説明する説明図。Explanatory drawing explaining the crimping process in the AA arrow cross section in FIG. 図1中のA−A矢視断面における圧着接続構造体の断面形状を示す断面図。Sectional drawing which shows the cross-sectional shape of the crimping connection structure in the AA arrow cross section in FIG. メス型コネクタとオス型コネクタの接続対応状態を示す斜視図。The perspective view which shows the connection corresponding state of a female connector and a male connector. 別の圧着端子、及び圧着接続構造体を説明する説明図。Explanatory drawing explaining another crimp terminal and a crimp connection structure. 別の圧着端子、及び圧着接続構造体を説明する説明図。Explanatory drawing explaining another crimp terminal and a crimp connection structure. 別の圧着端子、及び圧着接続構造体を説明する説明図。Explanatory drawing explaining another crimp terminal and a crimp connection structure. 異なる止水突部の形状を説明する説明図。Explanatory drawing explaining the shape of a different water stop protrusion. バレル部における別の溶接方法について説明する説明図。Explanatory drawing explaining another welding method in a barrel part.

この発明の一実施形態を以下図面と共に説明する。
まず、本実施例における被覆電線200、及び圧着端子100について図1、及び図2を用いて詳しく説明する。
なお、図1は被覆電線200、及び圧着端子100における上方からの外観斜視図を示し、図2はバレル部130における溶接について説明する説明図を示している。
An embodiment of the present invention will be described with reference to the drawings.
First, the covered electric wire 200 and the crimp terminal 100 in the present embodiment will be described in detail with reference to FIGS. 1 and 2.
1 shows an external perspective view of the covered electric wire 200 and the crimp terminal 100 from above, and FIG. 2 shows an explanatory view for explaining the welding in the barrel portion 130.

また、図1中において、矢印Xは長手方向を示し(以下「長手方向X」とする)、矢印Yは幅方向を示している(以下、「幅方向Y」とする)。さらに、長手方向Xにおいて、後述するボックス部110側(図中の左側)を前方とし、ボックス部110に対して後述する被覆電線200側(図中の右側)を後方とする。
また、図2(a)は、ボックス部110を二点鎖線で示す透過状態とした圧着端子100の底面側の概略斜視図を示し、図2(b)は図2(a)におけるZ部拡大図を示している。
In FIG. 1, an arrow X indicates the longitudinal direction (hereinafter referred to as “longitudinal direction X”), and an arrow Y indicates the width direction (hereinafter referred to as “width direction Y”). Furthermore, in the longitudinal direction X, a box part 110 side (left side in the figure) described later is defined as the front, and a covered electric wire 200 side (right side in the figure) described later with respect to the box part 110 is defined as the rear.
2A shows a schematic perspective view of the bottom surface side of the crimp terminal 100 in which the box portion 110 is in a transmissive state indicated by a two-dot chain line, and FIG. 2B is an enlarged Z portion in FIG. 2A. The figure is shown.

被覆電線200は、アルミニウム素線201aを束ねたアルミニウム芯線201を、絶縁樹脂で構成する絶縁被覆202で被覆して構成している。詳しくは、アルミニウム芯線201は、断面が0.75mmとなるように、アルミニウム合金線を撚って構成している。さらに、被覆電線200は、絶縁被覆202の先端から所定の長さアルミニウム芯線201を露出させている。 The covered electric wire 200 is configured by covering an aluminum core wire 201 in which aluminum strands 201a are bundled with an insulating coating 202 made of an insulating resin. Specifically, the aluminum core wire 201 is formed by twisting an aluminum alloy wire so that the cross section becomes 0.75 mm 2 . Furthermore, the covered electric wire 200 exposes the aluminum core wire 201 having a predetermined length from the tip of the insulating coating 202.

圧着端子100は、メス型端子であり、長手方向Xの前方から後方に向かって、図示省略するオス型端子のオスタブの挿入を許容するボックス部110と、ボックス部110の後方で、所定の長さのトランジション部120を介して配置されたバレル部130とを一体に構成している。   The crimp terminal 100 is a female terminal and has a box portion 110 that allows insertion of a male tab of a male terminal (not shown) from the front to the rear in the longitudinal direction X, and a predetermined length at the rear of the box portion 110. The barrel portion 130 disposed via the transition portion 120 is integrally formed.

この圧着端子100は、表面が錫メッキ(Snメッキ)された黄銅等の銅合金条(図示せず)を、平面展開した端子形状に打ち抜いた後、中空四角柱体のボックス部110と後方視略O型のバレル部130とからなる立体的な端子形状に曲げ加工するとともに、バレル部130を溶接して構成したクローズバレル形式の端子である。   This crimp terminal 100 is formed by punching a copper alloy strip (not shown) such as brass whose surface is tin-plated (Sn-plated) into a planarly expanded terminal shape, and then rearwardly viewing the box portion 110 of the hollow rectangular column body. This is a closed barrel type terminal which is formed by bending a three-dimensional terminal shape including a substantially O-shaped barrel portion 130 and welding the barrel portion 130.

ボックス部110は、底面部111の長手方向Xと直交する幅方向Yの両側部に連設された側面部112の一方を、他方の端部に重なり合うように折り曲げて、長手方向Xの前方側から見て略矩形の倒位の中空四角柱体で構成されている。   The box portion 110 is formed by bending one of the side surface portions 112 continuously provided on both side portions in the width direction Y orthogonal to the longitudinal direction X of the bottom surface portion 111 so as to overlap the other end portion. It is composed of a hollow quadrangular prism body that is in a substantially rectangular inverted shape as viewed from above.

さらに、ボックス部110の内部には、底面部111における長手方向Xの前方側を延設して、長手方向Xの後方に向かって折り曲げて形成され、挿入されるオス型端子の挿入タブ(図示省略)に接触する弾性接触片113(図3参照)を備えている。   Further, an insertion tab of a male terminal (illustrated) is formed inside the box portion 110 by extending the front side in the longitudinal direction X of the bottom surface portion 111 and bending it toward the rear in the longitudinal direction X. The elastic contact piece 113 (refer FIG. 3) which contacts (omission) is provided.

バレル部130は、絶縁被覆202を圧着する被覆圧着部131と、露出したアルミニウム芯線201を圧着する芯線圧着部132とを一体で構成するとともに、芯線圧着部132より前方端部を略平板状に押しつぶすように変形させた封止部133で構成している。   The barrel portion 130 integrally includes a cover crimping portion 131 for crimping the insulating coating 202 and a core wire crimping portion 132 for crimping the exposed aluminum core wire 201, and the front end portion of the core wire crimping portion 132 is substantially flat. The sealing portion 133 is deformed so as to be crushed.

バレル部130の被覆圧着部131は、図3(a)に示すように、上述の実施例1における被覆圧着部131に対して止水突部134を予め形成している。
この止水突部134は、長手方向Xにおける断面形状を被覆圧着部131の内面から内側に向けて突出した略凸状に形成するとともに、被覆圧着部131の内面において長手方向Xと交差する周方向に沿って途切れることなく連続して形成している。
なお、止水突部134は、表面が錫メッキ(Snメッキ)された黄銅等の銅合金条を、平面展開した端子形状に打ち抜いた際、プレス成形により形成している。
As shown in FIG. 3A, the cover crimping part 131 of the barrel part 130 is formed with a water stop protrusion 134 in advance with respect to the cover crimping part 131 in the first embodiment described above.
The water stop protrusion 134 has a cross-sectional shape in the longitudinal direction X formed in a substantially convex shape that protrudes inward from the inner surface of the coated crimping portion 131, and a circumference that intersects the longitudinal direction X on the inner surface of the coated crimped portion 131. It is formed continuously without interruption along the direction.
The water stop protrusion 134 is formed by press molding when a copper alloy strip such as brass whose surface is tin-plated (Sn plated) is punched into a terminal shape developed in a plane.

このバレル部130は、図2に示すように、端子形状に打ち抜いた銅合金条におけるバレル部130を被覆電線200の外周を包囲する大きさに丸めるとともに、丸めた端部130a同士を突き合わせて長手方向Xの溶接個所W1に沿って溶接して後方視略O型に形成している。換言すると、バレル部130は、幅方向Yにおける断面形状を閉断面形状に形成している。   As shown in FIG. 2, the barrel portion 130 is formed by rounding the barrel portion 130 in a copper alloy strip punched into a terminal shape to a size that surrounds the outer periphery of the covered electric wire 200, and butting the rounded end portions 130 a to each other. It welds along the welding part W1 of the direction X, and is formed in the back view substantially O type. In other words, the barrel part 130 forms the cross-sectional shape in the width direction Y into a closed cross-sectional shape.

さらに、バレル部130の封止部133は、図2に示すように、バレル部130の長手方向Xの前端を閉塞するように幅方向Yの溶接個所W2に沿って溶接して封止している。
つまり、バレル部130は、長手方向Xの前端、及び端部130a同士を溶着して閉塞して、長手方向Xの後方に開口を有する略筒状に形成されている。
Furthermore, as shown in FIG. 2, the sealing part 133 of the barrel part 130 is welded and sealed along the welding point W2 in the width direction Y so as to close the front end in the longitudinal direction X of the barrel part 130. Yes.
That is, the barrel part 130 is formed in a substantially cylindrical shape having a front end in the longitudinal direction X and an end part 130 a which are welded and closed, and an opening is provided in the rear in the longitudinal direction X.

次に、このように被覆圧着部131の内周面に予め止水突部134が形成された圧着端子100のバレル部130に被覆電線200を挿入するとともに、バレル部130を加締めて圧着する工程、及び圧着後の圧着接続構造体1について、図3及び図4を用いて詳しく説明する。   Next, the covered electric wire 200 is inserted into the barrel portion 130 of the crimp terminal 100 in which the water stop protrusion 134 is previously formed on the inner peripheral surface of the coated crimp portion 131 as described above, and the barrel portion 130 is crimped to be crimped. The process and the crimped connection structure 1 after crimping will be described in detail with reference to FIGS.

なお、図3は図1中のA−A矢視断面における加締め工程を説明する説明図を示し、図4は図1中のA−A矢視断面における圧着接続構造体1の断面形状の断面図を示している。
さらに、図3(a)は図1中のA−A矢視断面図を示し、図3(b)は被覆電線200を挿入した圧着端子100に対して圧着工具10で加締める工程を説明する説明図を示している。
3 shows an explanatory view for explaining the caulking step in the cross section taken along the line AA in FIG. 1, and FIG. 4 shows the cross-sectional shape of the crimped connection structure 1 in the cross section taken along the line AA in FIG. A cross-sectional view is shown.
3A is a cross-sectional view taken along the line AA in FIG. 1, and FIG. 3B illustrates a process of crimping the crimp terminal 100 into which the covered electric wire 200 is inserted with the crimp tool 10. An explanatory diagram is shown.

上述した圧着端子100のバレル部130に対して、図3(a)に示すように、後方からアルミニウム芯線201が露出した被覆電線200を内部に挿入する。この際、露出したアルミニウム芯線201が、図3(b)に示すように、芯線圧着部132に配置されるよう挿入する。
その後、図3(b)に示すように、被覆電線200を挿入した圧着端子100のバレル部130に対して、アンビルとクリンパで構成された1組の圧着工具10で挟み込むようにして加締める。
As shown in FIG. 3A, the covered electric wire 200 with the aluminum core wire 201 exposed is inserted into the barrel portion 130 of the crimp terminal 100 described above from the rear. At this time, the exposed aluminum core wire 201 is inserted so as to be disposed in the core wire crimping portion 132 as shown in FIG.
Thereafter, as shown in FIG. 3B, the barrel portion 130 of the crimp terminal 100 into which the covered electric wire 200 has been inserted is crimped by being sandwiched by a pair of crimp tools 10 constituted by an anvil and a crimper.

この1組の圧着工具10は、図3(b)に示すように、アンビルとなる第1圧着型11、及びクリンパとなる第2圧着型12で構成されている。さらに、圧着工具10の内面形状は、圧着後における被覆圧着部131、及び芯線圧着部132の外面形状に応じた形状に形成されている。   As shown in FIG. 3B, the one set of crimping tools 10 includes a first crimping die 11 that becomes an anvil and a second crimping die 12 that becomes a crimper. Furthermore, the inner surface shape of the crimping tool 10 is formed in a shape corresponding to the outer surface shape of the coated crimping part 131 and the core wire crimping part 132 after crimping.

このような圧着工具10で、被覆電線200を挿入した圧着端子100のバレル部130を、1組の圧着工具10で挟み込むようにして芯線圧着部132、及び被覆圧着部131を加締め、アルミニウム芯線201、及び絶縁被覆202を圧着して圧着接続構造体1を構成する。   With such a crimping tool 10, the core wire crimping part 132 and the coated crimping part 131 are crimped so that the barrel part 130 of the crimping terminal 100 into which the covered electric wire 200 is inserted is sandwiched between a pair of crimping tools 10, and an aluminum core wire The crimp connection structure 1 is configured by crimping 201 and the insulating coating 202.

具体的には、圧着接続構造体1は、図4に示すように、圧着工具10で芯線圧着部132を加締めることで、芯線圧着部132とアルミニウム芯線201とが圧着して導通可能に接続されている。さらに、圧着工具10で被覆圧着部131を加締めることで、被覆圧着部131と絶縁被覆202とが圧着して接続されている。   Specifically, as shown in FIG. 4, the crimping connection structure 1 is crimped between the core wire crimping portion 132 and the aluminum core wire 201 by caulking the core wire crimping portion 132 with the crimping tool 10 so as to be conductive. Has been. Further, by crimping the covering crimping portion 131 with the crimping tool 10, the covering crimping portion 131 and the insulating coating 202 are crimped and connected.

このようにして圧着端子100のバレルを加締めて被覆電線200を圧着して接続するとともに、アルミニウム芯線201と圧着端子100との導通性を確保した圧着接続構造体1を構成する。   In this way, the crimp connection structure 1 is constructed in which the barrel of the crimp terminal 100 is crimped and the covered electric wire 200 is crimped and connected, and the electrical conductivity between the aluminum core wire 201 and the crimp terminal 100 is ensured.

この圧着接続構造体1は、図3(b)に示すように、被覆圧着部131によって圧着された絶縁被覆202を、止水突部134が被覆電線200の径方向中心に向けてさらに圧縮している。   As shown in FIG. 3B, the crimped connection structure 1 further compresses the insulating coating 202 crimped by the coated crimping portion 131 so that the water stop projection 134 is directed toward the radial center of the coated electric wire 200. ing.

次に、上述した圧着接続構造体1をコネクタハウジングの内部に装着したコネクタについて図5を用いて説明する。
なお、図5はメス型コネクタ21とオス型コネクタ31の接続対応状態の斜視図を示し、図5中においてオス型コネクタ31を二点鎖線で図示している。
Next, a connector in which the above-described crimped connection structure 1 is mounted in the connector housing will be described with reference to FIG.
FIG. 5 is a perspective view of the connection state of the female connector 21 and the male connector 31. In FIG. 5, the male connector 31 is indicated by a two-dot chain line.

メス型コネクタハウジング22は、圧着端子100を長手方向Xに沿って装着可能な複数の開口を内部に有して、幅方向Yにおける断面形状が略矩形状のボックス形状に形成している。このようなメス型コネクタハウジング22の内部に対して、上述した圧着端子100で構成した複数の圧着接続構造体1を長手方向Xに沿って装着してメス型コネクタ21を備えたワイヤーハーネス20を構成する。   The female connector housing 22 has a plurality of openings inside which the crimp terminals 100 can be mounted along the longitudinal direction X, and is formed in a box shape having a substantially rectangular cross-sectional shape in the width direction Y. A wire harness 20 provided with a female connector 21 by mounting a plurality of crimp connection structures 1 constituted by the above-described crimp terminals 100 along the longitudinal direction X to the inside of such a female connector housing 22. Configure.

また、メス型コネクタハウジング22に対応するオス型コネクタハウジング32は、メス型コネクタハウジング22と同様に、圧着端子を装着可能な複数の開口を内部に有して、幅方向Yにおける断面形状が略矩形状であってメス型コネクタハウジング22に対して凹凸対応して接続可能に形成している。   Similarly to the female connector housing 22, the male connector housing 32 corresponding to the female connector housing 22 has a plurality of openings into which crimp terminals can be attached, and has a substantially cross-sectional shape in the width direction Y. It is rectangular and is formed so as to be connectable to the female connector housing 22 in correspondence with the unevenness.

このようなオス型コネクタハウジング32の内部に対して、図示を省略するオス型の圧着端子で構成した圧着接続構造体1を長手方向Xに沿って装着してオス型コネクタ31を備えたワイヤーハーネス30を構成する。
そして、メス型コネクタ21とオス型コネクタ31とを嵌合することで、ワイヤーハーネス20とワイヤーハーネス30とを接続する。
A wire harness provided with a male connector 31 by mounting the crimp connection structure 1 constituted by a male crimp terminal (not shown) along the longitudinal direction X to the inside of such a male connector housing 32. 30 is configured.
Then, the wire harness 20 and the wire harness 30 are connected by fitting the female connector 21 and the male connector 31 together.

以上のような構成を実現する圧着端子100、圧着接続構造体1、メス型コネクタ21、及び圧着端子100の圧着方法は、絶縁被覆202側からの水分の侵入を確実に防止することができる。
具体的には、バレル部130の前端に封止部133を備えたことにより、圧着端子100は、バレル部130の前端からの水分の侵入を防止することができる。さらに、被覆圧着部131の内周面に止水突部134を形成したことにより、バレル部130の後方側端部からバレル部130の内部に水分が侵入することを防止できる。
The crimping method of the crimp terminal 100, the crimp connection structure 1, the female connector 21, and the crimp terminal 100 that realizes the above configuration can reliably prevent moisture from entering from the insulating coating 202 side.
Specifically, by providing the sealing portion 133 at the front end of the barrel portion 130, the crimp terminal 100 can prevent moisture from entering from the front end of the barrel portion 130. Furthermore, by forming the water stop protrusion 134 on the inner peripheral surface of the cover crimping portion 131, it is possible to prevent moisture from entering the inside of the barrel portion 130 from the rear side end portion of the barrel portion 130.

すなわち、封止部133、及び止水突部134により、圧着端子100は、圧着状態におけるバレル部130の内部を密閉状態にすることができる。これにより、圧着端子100は、バレル部130の内部への水分の侵入をより確実に防止することができる。   That is, with the sealing part 133 and the water stop protrusion 134, the crimp terminal 100 can make the inside of the barrel part 130 in a crimped state sealed. Thereby, the crimp terminal 100 can prevent the penetration | invasion of the water | moisture content to the inside of the barrel part 130 more reliably.

より詳しくは、圧着状態における絶縁被覆202を止水突部134でさらに圧縮することで、絶縁被覆202の反発力によって絶縁被覆202と被覆圧着部131との隙間を確実に塞ぐことができる。このため、絶縁被覆202に対して被覆圧着部131を加締めた際、被覆圧着部131の変形に伴い生じる隙間を確実に閉塞することができる。   More specifically, by further compressing the insulating coating 202 in the crimped state with the water stop protrusion 134, the gap between the insulating coating 202 and the coated crimping portion 131 can be reliably closed by the repulsive force of the insulating coating 202. For this reason, when the covering crimping part 131 is crimped with respect to the insulation coating 202, the gap which arises with a deformation | transformation of the covering crimping part 131 can be obstruct | occluded reliably.

さらに、被覆圧着部131に止水突部134を形成することで、外的要因による損傷や変質を抑制することができ、被覆圧着部131の内部への水分の侵入をより継続的に防止することができる。
加えて、後方視において、止水突部134を周方向に沿って隙間なく形成することで、圧着状態における被覆圧着部131の内部への水分の侵入をより確実に防止することができる。
Furthermore, by forming the water stop protrusion 134 in the coated crimping portion 131, damage and alteration due to external factors can be suppressed, and water intrusion into the coated crimped portion 131 can be prevented more continuously. be able to.
In addition, by forming the water stop protrusion 134 without any gap along the circumferential direction in the rear view, it is possible to more reliably prevent moisture from entering the inside of the cover crimping part 131 in the crimped state.

また、止水突部134を突形状としたことにより、絶縁被覆202をより確実に圧縮することができる。さらに、突形状の止水突部134によって絶縁被覆202が略凸凹状に変形するため、水分の侵入経路を複雑化、かつ侵入経路の距離を長くすることができる。これにより、絶縁被覆202と被覆圧着部131との隙間に侵入した水分がアルミニウム素線201aに到達することをより困難にすることができる。   Moreover, the insulating coating 202 can be more reliably compressed by making the water stop protrusion 134 into a protruding shape. Furthermore, since the insulation coating 202 is deformed into a substantially uneven shape by the protruding water stop protrusion 134, the water intrusion path can be complicated and the distance of the intrusion path can be increased. Thereby, it is possible to make it more difficult for moisture that has entered the gap between the insulating coating 202 and the coating crimping portion 131 to reach the aluminum strand 201a.

加えて、圧着により突形状の止水突部134が絶縁被覆202に食い込むため、万一、長手方向Xに引抜き力が加わっても、被覆電線200が圧着端子100から容易に外れることを防止できる。
従って、圧着端子100は、封止部133、及び止水突部134を形成したことで、圧着状態においてより確実な止水性を確保することができ、バレル部130の内部への水分の侵入をより確実に防止することができる。
In addition, since the protruding water stop protrusion 134 bites into the insulating coating 202 by crimping, even if a pulling force is applied in the longitudinal direction X, the covered electric wire 200 can be prevented from being easily detached from the crimp terminal 100. .
Therefore, since the crimp terminal 100 has the sealing portion 133 and the water stop protrusion 134 formed therein, it is possible to ensure a more reliable water stop in the crimped state, and to prevent moisture from entering the barrel portion 130. It can prevent more reliably.

また、上述した止水突部134を形成した圧着端子100により、圧着端子100のバレル部130に被覆電線200を圧着するだけで確実な止水性を確保できる圧着接続構造体1を構成することができる。
従って、圧着接続構造体1は、より安定した導電性を確保することができる。
In addition, the crimp connection structure 1 that can ensure reliable water stop by simply crimping the covered electric wire 200 to the barrel portion 130 of the crimp terminal 100 by the crimp terminal 100 having the water stop protrusion 134 described above can be configured. it can.
Therefore, the crimp connection structure 1 can ensure more stable conductivity.

また、圧着接続構造体1における圧着端子100をメス型コネクタハウジング22の内部に配置してメス型コネクタ21を構成することにより、メス型コネクタハウジング22の内に配置した圧着端子100にオス型コネクタ31の圧着端子を接続する際、止水性を確保したままメス側コネクタ21の圧着端子100をオス型コネクタ31に接続することができる。
従って、メス型コネクタ21は、確実な導電性を備えた接続状態を確保することができる。
In addition, by forming the female connector 21 by disposing the crimp terminal 100 in the crimp connection structure 1 inside the female connector housing 22, the male connector is connected to the crimp terminal 100 disposed in the female connector housing 22. When connecting the 31 crimping terminals, the crimping terminal 100 of the female connector 21 can be connected to the male connector 31 while ensuring water-stopping.
Therefore, the female connector 21 can ensure a connection state with reliable conductivity.

また、被覆電線200の芯線を、アルミニウム合金で構成するとともに、バレル部130を、銅合金で構成したことにより、銅線による芯線を有する被覆電線200に比べて軽量化することができる。さらに、封止部133、及び止水突部134による確実な止水性により、異種金属で構成された圧着端子100と被覆電線200とによる電食の発生を防止することができる。   In addition, the core wire of the covered electric wire 200 is made of an aluminum alloy, and the barrel portion 130 is made of a copper alloy, so that the weight can be reduced compared to the covered electric wire 200 having a core wire made of copper wire. Furthermore, the reliable water stoppage by the sealing part 133 and the water stop protrusion 134 can prevent the occurrence of electrolytic corrosion by the crimp terminal 100 and the covered electric wire 200 made of different metals.

なお、上述の説明において、被覆圧着部131の内周面に止水突部134をあらかじめ形成したが、これに限定せず、絶縁被覆202を圧縮する形状であれば、適宜の形状に形成してもよい。   In the above description, the water stopping protrusion 134 is formed in advance on the inner peripheral surface of the covering crimping portion 131. However, the present invention is not limited to this, and any shape can be used as long as the insulating covering 202 is compressed. May be.

例えば、別の圧着端子100、及び圧着接続構造体1を説明する説明図を示す図6から図9において、図6(a)に示すように、長手方向Xにおける断面形状が被覆圧着部131の内面から被覆電線200の径方向中心に向けて突出した略山型状で、周方向に沿って途切れることなく連続して形成した山型突部135を、長手方向Xに所定の間隔を隔てて被覆圧着部131の内面に複数形成してもよい。この際、圧着接続構造体1は、図6(b)に示すように、圧着状態における絶縁被覆202を山型突部135でさらに圧縮することで、より確実な止水性を確保することができる。   For example, in FIG. 6 to FIG. 9 showing explanatory views for explaining another crimp terminal 100 and the crimp connection structure 1, as shown in FIG. 6A, the cross-sectional shape in the longitudinal direction X is the covering crimp part 131. Mountain-shaped projections 135 that are substantially chevron-shaped protruding from the inner surface toward the center in the radial direction of the covered electric wire 200 and formed continuously without being interrupted along the circumferential direction are spaced apart in the longitudinal direction X by a predetermined interval. A plurality of coating crimping portions 131 may be formed on the inner surface. At this time, as shown in FIG. 6 (b), the crimping connection structure 1 can ensure more reliable water-stopping by further compressing the insulating coating 202 in the crimped state with the mountain-shaped protrusion 135. .

また、別の圧着端子100の例として、図7(a)に示すように、長手方向Xの断面形状が被覆圧着部131の内面から被覆電線200の径方向中心に向けて突出した断面ハット状で、周方向に沿って途切れることなく連続して形成した台形突部136を被覆圧着部131の内面に形成してもよい。この際、圧着接続構造体1は、図7(b)に示すように、圧着状態における絶縁被覆202を台形突部136でさらに圧縮することで、より確実な止水性を確保することができる。   As another example of the crimp terminal 100, as shown in FIG. 7A, a cross-sectional hat shape in which the cross-sectional shape in the longitudinal direction X protrudes from the inner surface of the coated crimp portion 131 toward the radial center of the coated electric wire 200. Thus, the trapezoidal protrusion 136 formed continuously without being interrupted along the circumferential direction may be formed on the inner surface of the cover crimping portion 131. At this time, as shown in FIG. 7 (b), the crimped connection structure 1 can ensure more reliable water-stopping by further compressing the insulating coating 202 in the crimped state with the trapezoidal protrusion 136.

さらにまた、別の圧着端子100の例として、図8(a)に示すように、長手方向Xの断面形状が被覆圧着部131の内面から被覆電線200の径方向中心に向けて起立した形状で、周方向に沿って途切れることなく連続して形成した起立突起部137を、長手方向Xに所定の間隔を隔てて被覆圧着部131の内面に複数形成してもよい。この際、圧着接続構造体1は、図8(b)に示すように、圧着状態における絶縁被覆202を起立突起部137でさらに圧縮することで、より確実な止水性を確保することができる。   Furthermore, as another example of the crimp terminal 100, as shown in FIG. 8A, the cross-sectional shape in the longitudinal direction X is raised from the inner surface of the coated crimp portion 131 toward the radial center of the coated electric wire 200. A plurality of standing protrusions 137 formed continuously without being interrupted along the circumferential direction may be formed on the inner surface of the coated crimping part 131 at a predetermined interval in the longitudinal direction X. At this time, as shown in FIG. 8 (b), the crimped connection structure 1 can ensure more reliable water-stopping by further compressing the insulating coating 202 in the crimped state with the standing protrusions 137.

また、上述の説明において、止水突部134を周方向に沿って途切れることなく連続するよう形成したが、これに限定せず、後方視において絶縁被覆202の外周面を隙間なく圧縮可能な形状であれば、適宜の形状としてもよい。   In the above description, the water stop protrusion 134 is formed so as to be continuous without being interrupted along the circumferential direction. However, the present invention is not limited to this, and the outer peripheral surface of the insulating coating 202 can be compressed without gaps in the rear view. Any suitable shape may be used.

例えば、圧着工具10で被覆圧着部131を加締めて止水突部を形成する場合、異なる止水突部138の形状を説明する説明図を示す図9のように、長手方向Xに所定の間隔を隔てて配置した複数の分割止水突部139を、後方視において周方向に隙間が生じないように配置して止水突部138を構成してもよい。   For example, when forming the water stop protrusion by caulking the cover press bonding part 131 with the pressure bonding tool 10, as shown in FIG. You may comprise the water stop protrusion 138 by arrange | positioning the some division | segmentation water stop protrusion 139 arrange | positioned at intervals so that a clearance gap may not arise in the circumferential direction in back view.

なお、図9(a)は圧着接続構造体1における長手方向Xの断面図を示し、図9(b)は図9(a)中におけるB−B矢視断面図を示し、図9(c)は図9(a)におけるC−C矢視断面図を示している。また、図9中において、被覆電線200の図示を省略している。   9A shows a cross-sectional view in the longitudinal direction X of the crimped connection structure 1, FIG. 9B shows a cross-sectional view taken along the line BB in FIG. 9A, and FIG. ) Shows a cross-sectional view taken along the line CC in FIG. Moreover, in FIG. 9, illustration of the covered electric wire 200 is abbreviate | omitted.

具体的には、図9における止水突部138は、図9(a)に示すように、被覆電線200の径方向で対面する1対の分割止水突部139を長手方向Xに所定の間隔を隔てて3つ配置して構成している。
この1対の分割止水突部139は、図9(a)から(c)に示すように、周方向における一部の範囲において、径方向で対面するように被覆圧着部131の内周面から突出させて形成している。換言すると、1対の分割止水突部139は、後方視において周方向に連続せず、隙間を有する形状に形成している。
Specifically, as shown in FIG. 9A, the water stop protrusion 138 in FIG. 9 has a pair of divided water stop protrusions 139 that face each other in the radial direction of the covered electric wire 200 in the longitudinal direction X. Three are arranged at intervals.
As shown in FIGS. 9A to 9C, the pair of split water blocking protrusions 139 has an inner peripheral surface of the covering crimping portion 131 so as to face in the radial direction in a partial range in the circumferential direction. It is formed protruding from. In other words, the pair of split water blocking protrusions 139 is formed in a shape having a gap without being continuous in the circumferential direction in the rear view.

そして、長手方向Xにおいて最も後方に位置する分割止水突部139aに対して、中央に位置する分割止水突部139bは、図9(b)及び(c)に示すように、周方向に90度回転して形成している。さらに、長手方向Xにおいて、最も前方に位置する分割止水突部139cは、最も後方に位置する分割止水突部139aと周方向において同位置に形成している。すなわち、後方視において止水突部138は、3つの分割止水突部139がそれぞれの周方向における隙間を閉鎖するように配置して形成されている。   And with respect to the divided water blocking protrusion 139a located at the rearmost in the longitudinal direction X, the divided water blocking protrusion 139b located in the center is arranged in the circumferential direction as shown in FIGS. 9B and 9C. It is rotated 90 degrees. Furthermore, in the longitudinal direction X, the split water stop 139c located at the foremost position is formed at the same position in the circumferential direction as the split water stop protrusion 139a located at the back. That is, in the rear view, the water stop protrusion 138 is formed so that the three divided water stop protrusions 139 are arranged so as to close the gaps in the respective circumferential directions.

このため、圧着端子100、及び圧着接続構造体1は、被覆圧着部131の後端からバレル部130の内部に侵入した水分を、3つの分割止水突部139のいずれかで必ず止水することができる。   For this reason, the crimp terminal 100 and the crimp connection structure 1 always stop the water that has entered the barrel part 130 from the rear end of the covering crimp part 131 by any one of the three split water stop protrusions 139. be able to.

また、上述の説明において、圧着端子100をメス型の圧着端子としたが、これに限定せず、メス型の圧着端子100に対して長手方向Xに嵌合するオス型の圧着端子であってもよい。
また、被覆電線200における芯線をアルミニウム合金とし、圧着端子100を黄銅等の銅合金としたが、これに限定せず、被覆電線200における芯線、及び圧着端子100を黄銅等の銅合金やアルミニウム合金などの同一金属で構成してもよい。
In the above description, the crimp terminal 100 is a female crimp terminal. However, the present invention is not limited to this, and is a male crimp terminal that fits in the longitudinal direction X with respect to the female crimp terminal 100. Also good.
Moreover, although the core wire in the covered electric wire 200 is made of an aluminum alloy and the crimp terminal 100 is made of a copper alloy such as brass, the core wire in the covered electric wire 200 and the crimp terminal 100 are made of a copper alloy such as brass or an aluminum alloy. You may comprise with the same metal.

この発明の構成と、上述の実施形態との対応において、
この発明の電線導体は、実施形態のアルミニウム芯線201に対応し、
以下同様に、
被覆体は、絶縁被覆202に対応し、
導体圧着部は、芯線圧着部131に対応し、
短手方向は、幅方向Yに対応し、
圧縮部は、止水突部134,138、台形突部136、山型突部135、及び起立突起部137に対応し、
アルミ系材料は、アルミニウム合金に対応し、
銅系材料は、黄銅等の銅合金条に対応し、
接続構造体は、圧着接続構造体1に対応し、
コネクタハウジングは、メス型コネクタハウジング22、及びオス型コネクタハウジング32に対応し、
コネクタは、メス型コネクタ21、及びオス型コネクタ31に対応するが、
この発明は、上述の実施形態の構成のみに限定されるものではなく、多くの実施の形態を得ることができる。
In correspondence between the configuration of the present invention and the above-described embodiment,
The electric wire conductor of this invention corresponds to the aluminum core wire 201 of the embodiment,
Similarly,
The covering corresponds to the insulating coating 202,
The conductor crimping part corresponds to the core wire crimping part 131,
The short direction corresponds to the width direction Y,
The compression parts correspond to the water stop protrusions 134 and 138, the trapezoidal protrusion 136, the mountain-shaped protrusion 135, and the standing protrusion 137,
Aluminum material corresponds to aluminum alloy,
Copper material corresponds to copper alloy strips such as brass,
The connection structure corresponds to the crimp connection structure 1,
The connector housing corresponds to the female connector housing 22 and the male connector housing 32,
The connector corresponds to the female connector 21 and the male connector 31,
The present invention is not limited only to the configuration of the above-described embodiment, and many embodiments can be obtained.

本実施形態では、圧着端子100のバレル部130を、アルミニウムやアルミニウム合金等の卑な金属からなるアルミニウム芯線201に圧着接続する例を説明したが、その卑な金属以外に、例えば、銅や銅合金等の貴な金属からなる導体部分に圧着接続してもよく、前記実施形態と略同等の作用及び効果を奏することができる。   In the present embodiment, the example in which the barrel portion 130 of the crimp terminal 100 is crimped and connected to the aluminum core wire 201 made of a base metal such as aluminum or aluminum alloy has been described, but other than the base metal, for example, copper or copper It may be crimped and connected to a conductor portion made of a noble metal such as an alloy, and can exhibit substantially the same functions and effects as those of the above embodiment.

詳しくは、上述の構成のバレル部130は、圧着状態において、水の浸入を防止できるため、例えば、これまで線間止水のために圧着後にシールなどが必要であった銅や銅合金等の芯線で構成する被覆電線を接続してもよい。   Specifically, since the barrel portion 130 having the above-described configuration can prevent water from entering in a crimped state, for example, copper or a copper alloy that has been required to have a seal after crimping so far, for example, for water-stop between lines. You may connect the covered electric wire comprised with a core wire.

たとえば、上述の説明では、図2に示すように、端子形状に打ち抜いた銅合金条を丸めるとともに、端部130a同士を突き合わせて長手方向Xの溶接個所W1に沿って溶接して後方視略O型に形成してから、長手方向Xの前端部分をつぶすとともに、幅方向Yの溶接個所W2に沿って溶接して封止して、長手方向Xの前端が封止部133で封止させ、長手方向Xの後方に開口を有する略筒状のバレル部130を形成したが、バレル部130における別の溶接方法について説明する説明図である図10に示すように、バレル部130の形状を形成してから、溶接個所を溶接してバレル部130を形成してもよい。   For example, in the above description, as shown in FIG. 2, the copper alloy strip punched into the terminal shape is rounded, the end portions 130 a are butted together and welded along the welding point W <b> 1 in the longitudinal direction X, and the rear view is substantially O. After forming the mold, the front end portion in the longitudinal direction X is crushed and welded and sealed along the welding point W2 in the width direction Y, and the front end in the longitudinal direction X is sealed with the sealing portion 133, Although the substantially cylindrical barrel portion 130 having an opening at the rear in the longitudinal direction X is formed, the shape of the barrel portion 130 is formed as shown in FIG. 10 which is an explanatory view for explaining another welding method in the barrel portion 130. After that, the barrel portion 130 may be formed by welding the welding points.

詳述すると、図10(a)に示すように、端子形状に打ち抜いた銅合金条を丸めるとともに、長手方向Xの前端部分をつぶして、封止部133を含むバレル部130の形状にあらかじめ形成する。   More specifically, as shown in FIG. 10A, the copper alloy strip punched into a terminal shape is rounded, and the front end portion in the longitudinal direction X is crushed so as to be formed in the shape of the barrel portion 130 including the sealing portion 133 in advance. To do.

そして、丸めて突き合わさる端部130a同士を長手方向Xの溶接個所W3に沿って溶接するとともに、封止部133において幅方向Yの溶接個所W4に沿って溶接して封止してバレル部130を完成させる。   Then, the end portions 130a that are rounded and faced are welded along the welded portion W3 in the longitudinal direction X, and the sealed portion 133 is welded and sealed along the welded portion W4 in the width direction Y to be sealed. To complete.

また、図2に示すように、バレル部130の底面側で端部130a同士を突き合わして溶接してもよいし、図10(a),(b)に示すように、バレル部130上面側で端部130a同士を突き合わして溶接してもよい。   Further, as shown in FIG. 2, the end portions 130a may be butted against each other on the bottom surface side of the barrel portion 130, and as shown in FIGS. 10 (a) and 10 (b), the upper surface side of the barrel portion 130 may be used. The end portions 130a may be butted together and welded.

さらには、図10(c)に示すように、圧着状態において、バレル部130の被覆圧着部131を、被覆電線200の絶縁被覆202に対して正面視円形状に圧着し、芯線圧着部132を、アルミニウム芯線に対して正面視略U字状に圧着してもよい。   Furthermore, as shown in FIG. 10C, in the crimped state, the coated crimped portion 131 of the barrel portion 130 is crimped to the insulating coating 202 of the coated electric wire 200 in a circular shape when viewed from the front, and the core wire crimped portion 132 is The aluminum core wire may be crimped in a substantially U shape when viewed from the front.

また、圧着端子100は、図10に示すように、帯状のキャリアKに取り付けられたままの状態でバレル部130を溶接してから、被覆電線200を圧着接続する際、あるいは被覆電線200を圧着接続した後、キャリアKから分離してもよいが、キャリアKから分離された状態で圧着端子100を形成し、被覆電線200を圧着接続してもよい。   In addition, as shown in FIG. 10, the crimp terminal 100 is welded to the barrel portion 130 while being attached to the belt-like carrier K, and then crimped and connected to the covered wire 200 or crimped. After being connected, it may be separated from the carrier K, but the crimp terminal 100 may be formed in a state separated from the carrier K, and the covered electric wire 200 may be crimped.

さらにまた、バレル部130の被覆圧着部131において、被覆圧着部131の内面と、被覆電線200の絶縁被覆202との間に止水性のあるシール材を介在させて圧着し、バレル部130の後方における止水性を向上させてもよい。   Furthermore, in the cover crimping part 131 of the barrel part 130, a pressure-proof sealing material is interposed between the inner surface of the cover crimping part 131 and the insulating coating 202 of the covered electric wire 200, and the rear part of the barrel part 130 is pressed. The water-stopping property may be improved.

1…圧着接続構造体
21…メス型コネクタ
22…メス型コネクタハウジング
31…オス型コネクタ
32…オス型コネクタハウジング
100…圧着端子
130…バレル部
131…被覆圧着部
132…芯線圧着部
133…封止部
134、138…止水突部
135…山型突部
136…台形突部
137…起立突起部
200…被覆電線
201…アルミニウム芯線
202…絶縁被覆
X…長手方向
Y…幅方向
DESCRIPTION OF SYMBOLS 1 ... Crimp connection structure 21 ... Female connector 22 ... Female connector housing 31 ... Male connector 32 ... Male connector housing 100 ... Crimp terminal 130 ... Barrel part 131 ... Cover crimp part 132 ... Core wire crimp part 133 ... Sealing Portions 134, 138 ... Water stop projection 135 ... Mountain-shaped projection 136 ... Trapezoidal projection 137 ... Standing projection 200 ... Covered wire 201 ... Aluminum core wire 202 ... Insulation coating X ... Longitudinal direction Y ... Width direction

Claims (7)

電線導体の外周を絶縁性の被覆体で被覆した被覆電線における前記被覆体の先端近傍に対して加締めて圧着する被覆圧着部と、前記被覆体の先端から前記被覆電線の長手方向に所定の長さ露出した前記電線導体に対して加締めて圧着する導体圧着部とで一体に構成したバレル部備えられた圧着端子であって、
前記被覆圧着部
前記被覆電線の短手方向における断面形状を前記被覆体を包囲する閉断面形状に形成されるとともに、前記長手方向に所定の長さ延設して形成されており
前記導体圧着部
前記被覆圧着部前記長手方向に延設して形成されるとともに、前記短手方向における断面形状前記電線導体を包囲する閉断面形状に形成され
前記被覆圧着部に、
圧着状態において前記被覆体を前記短手方向に圧縮するように、前記被覆圧着部の内面から前記被覆電線の短手方向における中心に向けて突出する突形状に圧着前に形成されるとともに、前記長手方向に交差する方向に沿って、長手方向視において前記被覆圧着部の内面に沿って隙間なく形成された圧縮部備えられ、
前記被覆圧着部の外面に、
前記圧縮部に対応する凹部が設けられ、
前記被覆圧着部における端部に、帯状のキャリアが取り付けられている
圧着端子。
A coated crimping portion for crimping by crimping the outer periphery of the wire conductor with the insulating coated body in the vicinity of the tip of the coated body; and a predetermined length from the distal end of the coated body in the longitudinal direction of the coated wire a barrel which is formed integrally with the conductor crimping portion for crimping crimped to the wire conductor exposed length provided crimping terminal,
The coated crimping part is
Wherein is a cross-sectional shape in the lateral direction of the covered wires are formed in closed cross section that surrounds the covering member Rutotomoni is formed by extending a predetermined length in the longitudinal direction,
The conductor crimping part is
The insulation crimp portion is formed to extend in the longitudinal direction Rutotomoni, wherein the cross-sectional shape in the lateral direction are formed in closed cross section surrounding said wire conductor,
In the coated crimping part,
The covering body in the crimped state to compress the lateral direction, the coating is from the inner surface of the crimping portion is formed before bonding the protrusion shape protruding toward the center in the lateral direction of the covered wires Rutotomoni, wherein along a direction intersecting the longitudinal direction, the compression unit that is no gap formed along an inner surface of the insulation crimp portion in the longitudinal direction as viewed is provided,
On the outer surface of the coated crimping part,
A recess corresponding to the compression part is provided;
A crimp terminal , wherein a band-shaped carrier is attached to an end of the coated crimp portion .
前記バレル部に、
前記導体圧着部前記長手方向に延設され、前記長手方向における先端を封止した封止部備えられ
請求項1に記載の圧着端子。
In the barrel part,
The conductor crimping portion is extended in the longitudinal direction, the crimping terminal according to claim 1 in which the sealing portion sealing the front end is provided in the longitudinal direction.
請求項1または2に記載の圧着端子におけるバレル部によって、前記被覆電線と前記圧着端子と接続され
接続構造体。
The connection structure in which the said covered electric wire and the said crimp terminal were connected by the barrel part in the crimp terminal of Claim 1 or 2.
前記電線導体、アルミ系材料で構成されるとともに、
少なくとも前記バレル部、銅系材料で構成され
請求項3に記載の接続構造体。
The wire conductor, Rutotomoni consists of an aluminum-based material,
The connection structure according to claim 3, wherein at least the barrel portion is made of a copper-based material.
請求項3または請求項4に記載の接続構造体複数束ねられて構成され
ワイヤーハーネス。
Claim 3 or wire harness connection structure is configured by bundling a plurality of claim 4.
請求項3または請求項4に記載の接続構造体における圧着端子コネクタハウジング内に配置され
コネクタ。
Connector crimp terminal is placed in the connector housing in the connection structure according to claim 3 or claim 4.
電線導体の外周を絶縁性の被覆体で被覆した被覆電線における前記被覆体の先端近傍に対して加締めて圧着する被覆圧着部と、前記被覆体の先端から前記被覆電線の長手方向に所定の長さ露出した前記電線導体に対して加締めて圧着する導体圧着部とで構成したバレル部を備えた圧着端子の圧着方法であって、
前記バレル部を、
前記被覆電線の短手方向における断面形状を、前記被覆体を包囲する閉断面形状に形成するとともに、前記長手方向に所定の長さ延設して形成した前記被覆圧着部と、前記被覆圧着部を前記長手方向に延設して形成するとともに、前記短手方向における断面形状を前記電線導体を包囲する閉断面形状に形成した前記導体圧着部とで構成し、
前記被覆圧着部における端部が帯状のキャリアに取り付けられており、
前記被覆圧着部の内面から前記被覆電線の短手方向における中心に向けて突出する突形状に圧着前に形成するとともに、前記長手方向に交差する方向に沿って、長手方向視において前記被覆圧着部の内面に沿って隙間なく形成した圧縮部を備えるとともに、外面に、前記圧縮部に対応する凹部を設けた前記被覆圧着部を、前記被覆圧着部の内面と前記被覆体の外面との境界において、前記圧縮部で前記被覆体を前記短手方向に圧縮するように、前記被覆体の先端近傍に対して加締めて圧着する
圧着端子の圧着方法。
A coated crimping portion for crimping by crimping the outer periphery of the wire conductor with the insulating coated body in the vicinity of the tip of the coated body; and a predetermined length from the distal end of the coated body in the longitudinal direction of the coated wire A crimping method of a crimping terminal comprising a barrel portion constituted by a conductor crimping portion that crimps and crimps the wire conductor exposed for length,
The barrel portion,
The covered crimp portion formed by extending a predetermined length in the longitudinal direction while forming a cross-sectional shape in the short direction of the covered electric wire into a closed sectional shape surrounding the covered body, and the covered crimp portion And extending in the longitudinal direction, and forming the cross-sectional shape in the short direction with the conductor crimping portion formed in a closed cross-sectional shape surrounding the wire conductor,
The end of the coated crimping part is attached to a band-shaped carrier,
Formed before crimping into a protruding shape protruding from the inner surface of the coated crimping portion toward the center in the short direction of the coated electric wire, and along the direction intersecting the longitudinal direction, the coated crimping portion in the longitudinal direction Rutotomoni comprising a compression unit which is no gap formed along an inner surface, an outer surface, said insulation crimp portion provided with a recess corresponding to the compression section, the boundary between the inner surface and the outer surface of the covering body of the insulation crimp portion The crimping method for crimping terminals according to claim 1, wherein the compressing portion compresses the covering body in the short-side direction and crimps the covering body in the vicinity of the front end thereof.
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