JP2007052991A - Vehicle-mounted electric wire and its waterproofing method - Google Patents

Vehicle-mounted electric wire and its waterproofing method Download PDF

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JP2007052991A
JP2007052991A JP2005236784A JP2005236784A JP2007052991A JP 2007052991 A JP2007052991 A JP 2007052991A JP 2005236784 A JP2005236784 A JP 2005236784A JP 2005236784 A JP2005236784 A JP 2005236784A JP 2007052991 A JP2007052991 A JP 2007052991A
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water
electric wire
repellent
vehicle
terminal
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JP4799956B2 (en
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Kenji Miyamoto
賢次 宮本
Tetsuji Tanaka
徹児 田中
Hiroki Hirai
宏樹 平井
Hirotaka Yamada
浩孝 山田
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Sumitomo Wiring Systems Ltd
AutoNetworks Technologies Ltd
Sumitomo Electric Industries Ltd
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Sumitomo Wiring Systems Ltd
AutoNetworks Technologies Ltd
Sumitomo Electric Industries Ltd
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Abstract

<P>PROBLEM TO BE SOLVED: To effectively suppress leakage of water from a terminal of a vehicle-mounted electric wire with a simple structure, while excellently maintaining bendability of the vehicle-mounted wire. <P>SOLUTION: In the vehicle-mounted electric wire (for example, a grounding wire 10) mounted on a vehicle having a covering material 14 at least at the outside of a conductor 12, an outer circumference face of the conductor 12 and an inner circumference face of the covering material 14 are covered with a water repellent film 30 for a prescribed length from at least one of the terminal. Further, a waterproofing treatment of this vehicle-mounted wire is carried out by a waterproofing treatment method including a process in which a water-repellent solution having dissolved a water-repellent material in a volatile solvent is supplied to at least one terminal and this water-repellent solution is infiltrated inside the vehicle-mounted wire from a gap B between the conductors 12 and a gap C between the covering material 14 and the conductors 12, and a process in which, after the above process, the volatile solvent is made to evaporate and the water-repellent material dissolved in the solvent is made to remain, and thereby, the water repellent film 30 is formed on the outer circumference face of the conductors 12 and inner circumference face of the covering material 14. <P>COPYRIGHT: (C)2007,JPO&INPIT

Description

本発明は、車両に搭載される車載用電線に防水処理を施す技術に関するものである。   The present invention relates to a technique for waterproofing an in-vehicle electric wire mounted on a vehicle.

前記車載用電線としては、高い防水性が求められるものがある。例えば、車両等に設けられる電気回路をアース端子に接続するためのアース用電線は、その端末に固定されたアース接続端子が外部に露出した状態で適当なアース部位(例えば車両のボディ)に接続されるため、当該端末から水分が侵入しやすく、当該水分が被覆材の内側を伝って回路に侵入すると当該回路の正常な動作を妨げるおそれがある。   Some of the on-vehicle electric wires are required to have high waterproof properties. For example, a grounding wire for connecting an electric circuit provided in a vehicle or the like to a grounding terminal is connected to a suitable grounding part (for example, a vehicle body) with the grounding terminal fixed to the terminal exposed to the outside. Therefore, moisture easily enters from the terminal, and if the moisture enters the circuit through the inside of the covering material, there is a possibility that normal operation of the circuit is hindered.

そこで、このようなアース用電線をはじめとする車載用電線に防水機能をもたせるための技術として、下記特許文献1には、車載用電線の一方の端末に流動性を有する止水剤を供給するとともに他方の端末を吸引することにより、当該止水剤を前記車載用電線の導体と被覆材との隙間に引き込んで充填する技術が開示されている。
特開2004−355851号公報
Therefore, as a technique for providing a waterproof function to an in-vehicle electric wire including such an electric wire for grounding, a water-stopping agent having fluidity is supplied to one terminal of the in-vehicle electric wire in Patent Document 1 below. In addition, a technique is disclosed in which the other end is sucked to draw the water-stopping agent into the gap between the conductor of the in-vehicle electric wire and the covering material.
JP 2004-355851 A

しかしながら、前記のように導体と被覆材との隙間を埋めるような状態で止水剤が充填された車載用電線では、その止水剤の存在の分だけ電線の屈曲性が低下して配線作業がしづらくなるおそれがあった。もちろん、前記止水剤として比較的柔軟性をもった材質を使用すれば、電線の屈曲性が大きく低下することはないが、その場合でも、前記隙間が確保されているものに比べると屈曲性はやや劣ることになる。   However, in a vehicle-mounted electric wire filled with a water-stopping agent so as to fill the gap between the conductor and the covering material as described above, the flexibility of the electric wire is reduced by the presence of the water-stopping agent, and the wiring work There was a risk that it would be difficult. Of course, if a relatively flexible material is used as the water-stopping agent, the flexibility of the wire will not be greatly reduced, but even in that case, the flexibility is higher than that in which the gap is secured. Slightly inferior.

また、前記のように、車載用電線の一方の端末に供給された流動性を有する止水剤を電線内部に引き込むという方法では、車載用電線の他方の端末を吸引する工程が必要であった。これに対し、このような工程を不要としてより簡単に車載用電線に防水処理を施すことができれば、製造効率の向上につながる。   In addition, as described above, the method of drawing the water-stopping agent having fluidity supplied to one end of the in-vehicle electric wire into the electric wire requires a step of sucking the other end of the in-vehicle electric wire. . On the other hand, if such a process is not required and the waterproofing can be performed on the in-vehicle electric wire more easily, the manufacturing efficiency is improved.

本発明は、このような事情に鑑み、屈曲性を良好に維持しながら、より簡単な構成で、電線端末からの水分の侵入を有効に抑止することのできる車載用電線及びその防水処理方法を提供することを目的とする。   In view of such circumstances, the present invention provides an in-vehicle electric wire and a waterproof treatment method thereof that can effectively suppress the intrusion of moisture from an electric wire terminal with a simpler structure while maintaining good flexibility. The purpose is to provide.

前記課題を解決するための手段として、本発明は、導体の外側に被覆材を有して車両に搭載される車載用電線であって、前記導体の外周面と被覆材の内周面とが、少なくとも一方の端末から所定長さにわたって撥水性の被膜により覆われていることを特徴とするものである(請求項1)。   As means for solving the above-mentioned problems, the present invention provides an in-vehicle electric wire that is mounted on a vehicle having a coating material on the outside of a conductor, and the outer peripheral surface of the conductor and the inner peripheral surface of the coating material are Further, it is characterized by being covered with a water-repellent coating over a predetermined length from at least one terminal (claim 1).

この車載用電線によれば、その少なくとも一方の端末において導体の外周面と被覆材の内周面とが撥水性の被膜によって覆われていることにより、当該端末に付着した水滴が導体間の隙間及び被覆材と導体との隙間を通って電線内部に侵入しようとしても、この隙間を形成する面を覆う前記撥水性の被膜の作用によってその侵入が阻害されるため、前記端末からの水分の侵入を有効に抑止することができる。そして、このような撥水性の被膜による防水構造を備えた車載用電線は、前記被覆材と導体との隙間等を閉塞しない状態で(電線内部に隙間を確保したまま)水分の侵入を抑止できるため、電線内部に止水剤が充填された従来の車載用電線に比べて屈曲性が良好に維持され、より配線作業性に優れたものとなる。   According to this in-vehicle electric wire, the outer peripheral surface of the conductor and the inner peripheral surface of the covering material are covered with a water-repellent coating at at least one end thereof, so that water droplets adhering to the end are separated by gaps between the conductors. In addition, even if an attempt is made to enter the inside of the electric wire through the gap between the covering material and the conductor, the penetration is inhibited by the action of the water-repellent coating covering the surface forming the gap, so that moisture enters from the terminal. Can be effectively suppressed. And the vehicle-mounted electric wire provided with the waterproof structure by such a water-repellent coating can suppress the intrusion of moisture in a state where the gap between the covering material and the conductor is not blocked (while the gap is secured inside the electric wire). Therefore, the flexibility is maintained well as compared with the conventional in-vehicle electric wire filled with a water-stopper inside the electric wire, and the wiring workability is further improved.

前記車載用電線は、配線作業の円滑化のため、あらかじめ前記端末に端子が接続された端子付き車載用電線であることが好ましい(請求項2)。   The vehicle-mounted electric wire is preferably a vehicle-mounted electric wire with a terminal in which a terminal is connected to the terminal in advance for facilitating wiring work (Claim 2).

この端子付き車載用電線では、端子に接続される導体露出部分や端子上に水分が付着することがあるが、その場合でも、前記撥水性の被膜により、当該水分が電線内部に侵入することを有効に抑止することができる。   In this in-vehicle electric cable with a terminal, moisture may adhere to the exposed conductor part and the terminal connected to the terminal, but even in that case, the water-repellent coating prevents the moisture from entering the inside of the electric wire. It can be effectively suppressed.

なお、この端子付き車載用電線の用途は特に限定されるものではないが、車両の所定箇所に設けられたアース部位に前記端子が接続されるアース用電線として好適に使用することができる(請求項3)。   In addition, although the use of this vehicle-mounted electric wire with a terminal is not particularly limited, it can be suitably used as an electric wire for grounding in which the terminal is connected to an earthing site provided at a predetermined location of a vehicle (claim) Item 3).

この構成によれば、アース用電線に防水処理を施すことができるので、一般に車両の外部環境の影響を受けやすいアース部位(例えば、車両のボディ)に接続されるアース用電線の端末から反対側の端末へ水分が侵入するのを抑止することができる。   According to this configuration, since the grounding wire can be waterproofed, it is generally opposite to the end of the grounding wire connected to a grounding part (for example, the vehicle body) that is generally susceptible to the external environment of the vehicle. It is possible to prevent moisture from entering the terminal.

ただし、本発明に係る車載用電線は、このようなアース用電線に限られず、防水性が求められる各種の車載用電線に使用することが可能である。例えば、防水機能を備えるコネクタに接続される電線であっても、特に高い防水性が要求される回路に接続される電線であれば、本発明に係る車載用電線を好適に使用することができる。   However, the in-vehicle electric wire according to the present invention is not limited to such a grounding electric wire, and can be used for various in-vehicle electric wires that require waterproofness. For example, even if the electric wire is connected to a connector having a waterproof function, the in-vehicle electric wire according to the present invention can be suitably used as long as the electric wire is connected to a circuit that requires particularly high waterproofness. .

さらに、本発明に係る車載用電線は、その端末に端子が接続されていない状態でも使用することができる。なお、このような電線を実際に配線する際には、電線の余分な部分を切断したり、端末部の被覆材を除去して導体を露出させたりする必要が生じるが、そのような場合でも、前記撥水性の被膜が形成されている領域内(前記端末から所定長さ内)において当該電線の切断や被覆材の除去を行うようにすれば、当該切断等を行った後においても前記撥水性の被膜を電線内に残存させることができるため、防水機能を損なうことがない。   Furthermore, the vehicle-mounted electric wire according to the present invention can be used even when a terminal is not connected to the terminal. In addition, when actually wiring such an electric wire, it is necessary to cut off an excess portion of the electric wire or to remove the covering material of the terminal portion to expose the conductor. If the wire is cut or the covering material is removed in the region where the water-repellent film is formed (within a predetermined length from the terminal), the repellent even after the cutting or the like is performed. Since the water-based film can remain in the electric wire, the waterproof function is not impaired.

前記撥水性の被膜は、水に対して90度以上の接触角を有する撥水性材料によって構成されていることが好ましい(請求項4)。   The water-repellent film is preferably made of a water-repellent material having a contact angle of 90 degrees or more with respect to water (claim 4).

この構成によれば、導体間の隙間及び被覆材と導体との隙間に水滴が侵入しようとしても、水の表面張力がこれを押し戻す方向に作用することとなるので、確実に電線内部への水分の侵入を防止することができる。   According to this configuration, even if water droplets try to enter the gap between the conductors and the gap between the covering material and the conductor, the surface tension of the water acts in a direction to push it back. Can be prevented from entering.

なお、前記撥水性材料としては、例えば、フッ素樹脂又はシリコーン樹脂が好適である(請求項5)。   In addition, as said water-repellent material, a fluororesin or a silicone resin is suitable, for example (Claim 5).

また、本発明は、導体の外側に被覆材を有して車両に搭載される車載用電線の少なくとも一方の端末を防水処理するための方法であって、当該端末に、揮発性の溶媒に撥水性材料が溶解してなる撥水性溶液を供給し、この撥水性溶液を前記導体間の隙間及び被覆材と導体との隙間から前記車載用電線の内部に浸透させる撥水性溶液供給工程と、前記撥水性溶液供給工程後、前記揮発性の溶媒を蒸発させて当該溶媒に溶解していた撥水性材料を残留させることにより、前記導体の外周面及び被覆材の内周面に撥水性の被膜を形成する溶媒蒸発工程とを含むことを特徴とするものである(請求項6)。   The present invention is also a method for waterproofing at least one terminal of an in-vehicle electric wire that has a coating material on the outside of a conductor and is mounted on a vehicle, the terminal being repelled by a volatile solvent. Supplying a water-repellent solution in which an aqueous material is dissolved, and supplying the water-repellent solution into the interior of the in-vehicle electric wire from the gap between the conductor and the gap between the covering material and the conductor; After the water-repellent solution supplying step, the volatile solvent is evaporated to leave the water-repellent material dissolved in the solvent, thereby forming a water-repellent coating on the outer peripheral surface of the conductor and the inner peripheral surface of the covering material. And a solvent evaporation step to be formed (claim 6).

この車載用電線の防水処理方法によれば、揮発性の溶媒に撥水性材料が溶解してなる撥水性溶液を電線端末に供給して当該溶液を電線内部に浸透させた後(撥水性溶液供給工程)、揮発性の溶媒を蒸発させる(溶媒蒸発工程)、というだけの簡単な方法で、導体の外周面及び被覆材の内周面に撥水性の被膜を形成することができる。しかも、撥水性溶液供給工程において電線端末に供給された溶液は、毛細管現象により自ら導体間の隙間及び被覆材と導体との隙間を通って電線内部に浸透するので、当該撥水性溶液を浸透させるために従来のように電線の他方の端末を吸引する必要がない。また、撥水性材料を溶解させるためのものとして揮発性の溶媒を使用したことにより、溶媒蒸発工程においては当該揮発性の溶媒が自然に蒸発するため、これを蒸発させるために電線を加熱する等の処理を行う必要がない。   According to this method for waterproofing an in-vehicle electric wire, after supplying a water-repellent solution obtained by dissolving a water-repellent material in a volatile solvent to the electric wire terminal and infiltrating the solution into the electric wire (water repellent solution supply) Step), a water-repellent film can be formed on the outer peripheral surface of the conductor and the inner peripheral surface of the covering material by a simple method of evaporating the volatile solvent (solvent evaporation step). In addition, the solution supplied to the wire terminal in the water-repellent solution supplying step permeates the inside of the wire through the gap between the conductors and the gap between the covering material and the conductor by capillary action, so that the water-repellent solution is infiltrated. Therefore, it is not necessary to suck the other end of the electric wire as in the prior art. In addition, since a volatile solvent is used as a solvent for dissolving the water repellent material, the volatile solvent naturally evaporates in the solvent evaporation step, and thus the electric wire is heated to evaporate the solvent. There is no need to perform the process.

前記撥水性溶液供給工程は、例えば、あらかじめ前記端末部の被覆材を所定長さだけ除去することで導体を露出させておき、その露出した導体の基端部付近に前記撥水性溶液を滴下することによって行うことが可能である(請求項7)。   In the water repellent solution supplying step, for example, the conductor is exposed in advance by removing the covering material of the end portion by a predetermined length, and the water repellent solution is dropped in the vicinity of the base end portion of the exposed conductor. (Claim 7).

この場合、撥水性溶液の滴下は、あらかじめ前記端末部の露出した導体に端子を接続しておき、この端子上の導体接続箇所近傍に前記撥水性溶液を溜めるようにしてこれを滴下するものであることが好ましい(請求項8)。   In this case, the dripping of the water repellent solution is a method in which a terminal is connected in advance to the exposed conductor of the terminal portion, and the water repellent solution is dripped so as to collect the water repellent solution in the vicinity of the conductor connecting portion on the terminal. It is preferable that it is present (claim 8).

このように、端子を撥水性溶液の受けとして利用することにより、安定して撥水性溶液を供給することができる。   Thus, by using the terminal as a receptacle for the water-repellent solution, the water-repellent solution can be stably supplied.

一方、前記撥水性溶液供給工程は、前記車載用電線の少なくとも一方の端末を前記撥水性溶液中に浸漬するようにして行ってもよい(請求項9)。   On the other hand, the water-repellent solution supplying step may be performed by immersing at least one terminal of the in-vehicle electric wire in the water-repellent solution (claim 9).

この構成によれば、撥水性溶液の滴下のために例えばディスペンサ等の設備が不要となるため、より安価に車載用電線に防水処理を施すことができる。   According to this configuration, for example, a dispenser or the like is not required for dripping the water repellent solution, so that the in-vehicle electric wire can be waterproofed at a lower cost.

以上説明したように、本発明によれば、屈曲性を良好に維持しながら、より簡単な構成で、電線端末からの水分の侵入を有効に抑止することのできる車載用電線及びその防水処理方法を提供することができる。   As described above, according to the present invention, an in-vehicle electric wire that can effectively suppress the intrusion of moisture from the electric wire terminal with a simpler structure while maintaining good flexibility, and a waterproofing method thereof Can be provided.

本発明の好ましい実施の形態を図面を参照しながら説明する。   A preferred embodiment of the present invention will be described with reference to the drawings.

なお、本実施形態では、車両に搭載された回路をアースに接続するためのアース用電線に止水処理する方法を説明するが、本発明はこれに限らず、防水性が求められる各種の車載用電線にも適用可能である。   In addition, although this embodiment demonstrates the method of water-stop-processing to the electric wire for earth | ground for connecting the circuit mounted in the vehicle to earth | ground, this invention is not limited to this, Various vehicle-mounted by which waterproofness is calculated | required It can also be applied to industrial wires.

本実施形態にかかるアース用電線は、以下のような製造方法によって製造することができる。   The ground wire according to the present embodiment can be manufactured by the following manufacturing method.

1)端子圧着工程
この工程は、図1(a)(b)に示すようなアース用電線10の一方の端末にアース接続端子20を圧着固定する工程である。
1) Terminal crimping process This process is a process of crimping and fixing the ground connection terminal 20 to one end of the grounding electric wire 10 as shown in FIGS.

前記アース用電線10には、導体12の周囲に被覆材14を有する絶縁電線を用いる。そして、その一方の端末の被覆材14を所定長さだけ除去して前記導体12を露出させておく。   As the grounding wire 10, an insulated wire having a covering 14 around the conductor 12 is used. Then, the covering material 14 at one end is removed by a predetermined length to expose the conductor 12.

このアース用電線10の端末に対し、図1(a)(b)に示すようなアース接続端子20を圧着固定する。図示のアース接続端子20は、単一の金属板で構成され、車両のボディアースに接続されるアース接続部21と、導体バレル22及びインシュレーションバレル24とを一体に有している。アース接続部21には図略のボルトが挿通可能なボルト挿通孔21aが設けられ、当該ボルトによって前記アース接続部21が車両のボディに締結されることにより、当該ボディに電気的に接続される(すなわちボディアースに接続される)ようになっている。   A ground connection terminal 20 as shown in FIGS. 1A and 1B is fixed to the end of the ground wire 10 by pressure. The illustrated ground connection terminal 20 is formed of a single metal plate, and integrally includes a ground connection portion 21 connected to a vehicle body ground, a conductor barrel 22 and an insulation barrel 24. The ground connection portion 21 is provided with a bolt insertion hole 21a through which a not-illustrated bolt can be inserted, and the ground connection portion 21 is fastened to the vehicle body by the bolt to be electrically connected to the body. (Ie connected to the body ground).

このアース接続端子20の前記両バレル22,24が開いた状態で、前記のように被覆材14が除去されたアース用電線10の端末をセットし、その後、前記導体バレル22及びインシュレーションバレル24をそれぞれ閉じて前記導体12及び被覆材14に圧着(かしめ)固定する。   In a state where both the barrels 22 and 24 of the ground connection terminal 20 are opened, the end of the grounding wire 10 from which the covering material 14 has been removed as described above is set, and then the conductor barrel 22 and the insulation barrel 24. Are closed and fixed to the conductor 12 and the covering material 14 by crimping.

2)撥水性溶液供給工程
この工程は、前記アース用電線10の一方の端末(アース接続端子20が固定される側の端末)に対して、撥水性溶液を供給する工程である。具体的には、図1(a)(b)に示す滴下位置A、すなわち導体12の露出部分の基端部付近に、図略のディスペンサによって撥水性溶液を滴下する。これにより、アース接続端子20の導体バレル22とインシュレーションバレル24との間に撥水性溶液を溜めるような状態で(アース接続端子20を撥水性溶液の受けとして利用しながら)、安定して撥水性溶液を供給することができる。なお、この滴下位置は端子構造に応じて適宜設定すればよい。また、撥水性溶液の滴下量や滴下の回数についても適宜設定すべきものであるが、滴下量が多い場合は、複数回に分けて撥水性溶液を滴下することが望ましい。
2) Water-repellent solution supplying step This step is a step of supplying a water-repellent solution to one terminal of the grounding electric wire 10 (the terminal on the side to which the ground connection terminal 20 is fixed). Specifically, the water repellent solution is dropped by a dispenser (not shown) at the dropping position A shown in FIGS. 1A and 1B, that is, near the base end of the exposed portion of the conductor 12. Thus, the water repellent solution is stored between the conductor barrel 22 and the insulation barrel 24 of the ground connection terminal 20 (while the ground connection terminal 20 is used as a receiver of the water repellent solution), and the water repellent solution is stably repelled. An aqueous solution can be supplied. In addition, what is necessary is just to set this dripping position suitably according to a terminal structure. Further, the dropping amount of the water repellent solution and the number of times of dropping should be set as appropriate. However, when the dropping amount is large, it is desirable to drop the water repellent solution in a plurality of times.

この撥水性溶液は、例えばフッ素樹脂、シリコーン樹脂のような、水に対して90度以上の接触角を有する撥水性の材料を揮発性の溶媒に溶解させることによって構成したものである。なお、このような撥水性材料を溶解させるための揮発性の溶媒としては、例えば、フッ素系溶媒、アルコール系溶媒、シリコーンオイル、ベンゼン、トルエン、キシレン等を用いることができる。   This water-repellent solution is constituted by dissolving a water-repellent material having a contact angle of 90 degrees or more with respect to water, such as a fluororesin or a silicone resin, in a volatile solvent. In addition, as a volatile solvent for dissolving such a water-repellent material, for example, a fluorine-based solvent, an alcohol-based solvent, silicone oil, benzene, toluene, xylene, or the like can be used.

前記アース接続端子20側の端末に滴下された撥水性溶液は、毛細管現象により、導体12間の隙間及び被覆材14と導体12との隙間からアース用電線10の内部に浸透する。具体的には、当該端末部分の拡大断面図である図2に示すように、滴下位置Aに滴下された撥水性溶液が、導体12を構成する各導体素線12aどうしの隙間B、及び、導体12と被覆材14との隙間Cを通って、毛細管現象により電線の内部側(図2では右側)に浸透する。   The water-repellent solution dripped onto the terminal on the side of the ground connection terminal 20 penetrates into the ground wire 10 from the gap between the conductors 12 and the gap between the covering material 14 and the conductor 12 due to a capillary phenomenon. Specifically, as shown in FIG. 2 which is an enlarged cross-sectional view of the terminal portion, the water-repellent solution dropped at the dropping position A is a gap B between the conductor wires 12a constituting the conductor 12, and Through the gap C between the conductor 12 and the covering material 14, it penetrates into the inner side (right side in FIG. 2) of the electric wire by capillary action.

3)溶媒蒸発工程
この工程は、前記のようにアース用電線10の導体12間の隙間(導体素線12aどうしの隙間)B及び被覆材14と導体12との隙間Cを通って電線内部に浸透した撥水性溶液の溶媒を蒸発させる工程である。ただし、当該溶媒は揮発性を有して自然に蒸発するので、実際には車載用電線10をしばらくの間放置するだけでよい。
3) Solvent evaporation step As described above, this step is performed inside the electric wire through the gap between the conductors 12 of the grounding wire 10 (the gap between the conductor strands 12a) B and the gap C between the covering material 14 and the conductor 12. This is a step of evaporating the solvent of the permeated water repellent solution. However, since the solvent has volatility and spontaneously evaporates, it is actually only necessary to leave the in-vehicle electric wire 10 for a while.

そして、このように揮発性の溶媒が蒸発することにより、当該溶媒に溶解していた撥水性材料が残留し、それによって図3(a)に示すように、前記導体12(各導体素線12a)の外周面及び被覆材14の内周面に撥水性の被膜30が形成される。   Then, when the volatile solvent evaporates in this manner, the water-repellent material dissolved in the solvent remains, and as shown in FIG. 3A, the conductor 12 (each conductor strand 12a ) And the inner peripheral surface of the covering material 14 are formed with a water-repellent coating 30.

図3(a)では、この撥水性の被膜30が形成される領域を領域Dとして示している。この被膜形成領域Dの長さは、前記撥水性溶液の浸透深さによって決まる。従って、この被膜形成領域Dの長さは、前記撥水性溶液供給工程において撥水性溶液の滴下量を増減することによって調整することが可能であり、滴下量が多いほど被膜形成領域Dの長さが長くなる。   In FIG. 3A, a region where the water-repellent coating 30 is formed is shown as a region D. The length of the film forming region D is determined by the penetration depth of the water repellent solution. Accordingly, the length of the film forming region D can be adjusted by increasing or decreasing the amount of the water repellent solution dropped in the water repellent solution supplying step. Becomes longer.

また、撥水性の被膜30の厚みは、撥水性溶液中における撥水性材料の濃度によって調整することが可能であり、撥水性材料の濃度を濃くするほど、撥水性の被膜30の厚みが大きくなる。この撥水性の被膜30の厚みを、導体12間の隙間B及び被覆材14と導体12との隙間Cが当該被膜30によって完全に閉塞されないような厚みに設定すれば、アース用電線10(の被膜形成領域D)の内部に隙間が確保されるため、電線の屈曲性を良好に維持することができる。従って、前記撥水性材料の濃度は、前記撥水性の被膜30の厚みが前記隙間B,Cの大きさよりも小さくなるように、濃くなり過ぎない適宜な値に設定するのがよい。   Further, the thickness of the water-repellent coating 30 can be adjusted by the concentration of the water-repellent material in the water-repellent solution, and the thickness of the water-repellent coating 30 increases as the concentration of the water-repellent material increases. . If the thickness of the water-repellent coating 30 is set such that the gap B between the conductors 12 and the gap C between the covering material 14 and the conductor 12 are not completely blocked by the coating 30, Since a gap is secured inside the film formation region D), the flexibility of the electric wire can be maintained well. Therefore, the concentration of the water-repellent material is preferably set to an appropriate value that does not become too thick so that the thickness of the water-repellent coating 30 is smaller than the size of the gaps B and C.

以上説明したように、本実施形態のアース用電線10によれば、アース接続端子20が接続される側の端末において導体12(各導体素線12a)の外周面と被覆材14の内周面とが撥水性の被膜30によって覆われていることにより、一般に車両の外部環境の影響を受けやすいアース部位(例えば、車両のボディ)に接続されるアース接続端子20側の端末に付着した水滴が、導体12間の隙間(導体素線12aどうしの隙間)B及び被覆材14と導体12との隙間Cを通って反対側の端末へ侵入しようとしても、この隙間B,Cを形成する面を覆う撥水性の被膜30の作用によってその侵入が阻害されるため、前記アース接続端子20側の端末からの水分の侵入を有効に抑止することができる。   As described above, according to the grounding electric wire 10 of the present embodiment, the outer peripheral surface of the conductor 12 (each conductor strand 12a) and the inner peripheral surface of the covering material 14 at the end on the side to which the ground connection terminal 20 is connected. Are covered with the water-repellent coating 30, so that water droplets attached to the terminal on the side of the ground connection terminal 20 connected to a ground part (for example, a vehicle body) that is generally susceptible to the external environment of the vehicle. Even if the gap between the conductors 12 (the gap between the conductor wires 12a) B and the gap C between the covering material 14 and the conductor 12 is to enter the opposite terminal, the surface forming these gaps B and C Since the intrusion is hindered by the action of the water-repellent coating film 30 to be covered, the intrusion of moisture from the terminal on the ground connection terminal 20 side can be effectively suppressed.

具体的には、導体12(各導体素線12a)の外周面と被覆材14の内周面とを覆う撥水性の被膜30が、水に対して90度以上の接触角を有する撥水性材料によって構成されていることにより、図3(b)に示す水滴32が電線端末に付着した場合に、図示の接触角θが鈍角となり、それによって水の表面張力Fが、水滴32を電線の外側(図3の左側)へ押し戻す方向に作用することとなるため、水滴32が電線内部へ侵入するのを確実に防止することができる。   Specifically, the water-repellent coating 30 that covers the outer peripheral surface of the conductor 12 (each conductor strand 12a) and the inner peripheral surface of the covering material 14 has a contact angle of 90 degrees or more with respect to water. 3B, when the water droplet 32 shown in FIG. 3B adheres to the end of the electric wire, the illustrated contact angle θ becomes an obtuse angle, so that the surface tension F of the water causes the water droplet 32 to move outside the electric wire. Since it acts in the direction of pushing back (left side in FIG. 3), it is possible to reliably prevent the water droplet 32 from entering the electric wire.

しかも、このような撥水性の被膜30による防水構造を備えたアース用電線10は、導体12間の隙間B及び被覆材14と導体12との隙間Cを閉塞しない状態で(電線内部に隙間を確保したまま)水分の侵入を防止できるため、被覆材14内の隙間に止水剤が充填された従来の電線に比べて電線の屈曲性が良好に維持され、より配線作業性に優れたものとなる。また、前記隙間B,Cの存在により、電線の屈曲が過度に繰り返されたり急激な温度変化が生じたりというような特殊な状況下でも、被覆材14の内部の圧力が高まることがないため、被覆材14の耐久性が向上するという利点もある。   Moreover, the grounding electric wire 10 having a waterproof structure with such a water-repellent coating 30 does not close the gap B between the conductors 12 and the gap C between the covering material 14 and the conductor 12 (no gaps are formed inside the electric wires). Because it can prevent the ingress of moisture (with assured), the flexibility of the wire is better maintained and the wiring workability is better than the conventional wire in which the gap in the covering material 14 is filled with a water-stopper. It becomes. In addition, because of the presence of the gaps B and C, the pressure inside the covering material 14 does not increase even under special circumstances such that the bending of the wire is excessively repeated or a rapid temperature change occurs. There is also an advantage that the durability of the covering material 14 is improved.

また、本実施形態におけるアース用電線10の防水処理方法によれば、揮発性の溶媒に撥水性材料が溶解してなる撥水性溶液をアース接続端子20側の端末に供給してその撥水性溶液を導体12間の隙間B及び被覆材14と導体12との隙間Cから電線内部に浸透させた後(撥水性溶液供給工程)、揮発性の溶媒を蒸発させる(溶媒蒸発工程)、というだけの簡単な方法で、導体12(導体素線12a)の外周面及び被覆材14の内周面に撥水性の被膜30を形成することができる。しかも、撥水性溶液供給工程において電線端末に供給された溶液は、毛細管現象により自ら前記隙間B,Cを通って電線内部に浸透するので、当該撥水性溶液を浸透させるために従来のように電線の他方の端末を吸引する必要がない。また、撥水性材料を溶解させるためのものとして揮発性の溶媒を使用したことにより、溶媒蒸発工程においては当該揮発性の溶媒が自然に蒸発するため、これを蒸発させるために電線を加熱する等の処理を行う必要がない。   Further, according to the waterproofing method for the grounding wire 10 in the present embodiment, a water repellent solution obtained by dissolving a water repellent material in a volatile solvent is supplied to the terminal on the ground connection terminal 20 side, and the water repellent solution is obtained. Is allowed to evaporate into the inside of the electric wire from the gap B between the conductors 12 and the gap C between the covering material 14 and the conductor 12 (water repellent solution supply step), and then the volatile solvent is evaporated (solvent evaporation step). The water repellent coating 30 can be formed on the outer peripheral surface of the conductor 12 (conductor strand 12a) and the inner peripheral surface of the covering material 14 by a simple method. In addition, since the solution supplied to the wire end in the water repellent solution supply step permeates the inside of the wire through the gaps B and C by capillary action, the wire repellent as in the prior art is used to permeate the water repellent solution. There is no need to suck the other terminal. In addition, since a volatile solvent is used as a solvent for dissolving the water repellent material, the volatile solvent naturally evaporates in the solvent evaporation step, and thus the electric wire is heated to evaporate the solvent. There is no need to perform the process.

なお、本実施形態では、アース接続端子20側の端末に対してのみ防水処理を行ったが、反対側の端末に対しても同様の防水処理を行うことにより、より電線の防水効果を高めるようにしてもよい。   In this embodiment, the waterproof treatment is performed only on the terminal on the ground connection terminal 20 side, but the waterproof effect on the electric wire is further enhanced by performing the same waterproof treatment on the terminal on the opposite side. It may be.

また、本実施形態では、前記撥水性溶液供給工程を前記端子圧着工程の後に行ったが、これを前記端子圧着工程の前に行うことも可能である。ただし、その場合には、本実施形態における滴下位置Aのような、撥水性溶液を安定した状態で保持できる場所がないため、撥水性溶液の供給が不安定になる恐れがある。ただしその場合でも、何らかの治具(溶液の受け)を別途電線端末に取り付けながら当該溶液の供給を行うようにすれば、安定して撥水性溶液を供給することができる。   In the present embodiment, the water-repellent solution supplying step is performed after the terminal crimping step, but this can be performed before the terminal crimping step. However, in that case, there is no place where the water repellent solution can be held in a stable state, such as the dropping position A in the present embodiment, and therefore, the supply of the water repellent solution may become unstable. However, even in such a case, the water-repellent solution can be stably supplied by supplying the solution while attaching a jig (solution receiver) separately to the wire terminal.

さらにまた、本実施形態の撥水性溶液供給工程は、アース用電線10の一方の端末に撥水性溶液を滴下することによって行ったが、このような方法に代えて、前記一方の端末を撥水性溶液中(例えば、撥水性溶液が溜められた槽内)に浸漬することによって行ってもよい。   Furthermore, the water-repellent solution supplying step of the present embodiment is performed by dropping the water-repellent solution onto one terminal of the grounding wire 10. Instead of such a method, the one terminal is water-repellent. You may carry out by immersing in the solution (For example, the tank in which the water repellent solution was stored).

なお、前記撥水性の被膜30の色については特に言及しなかったが、前記撥水性溶液に着色剤を混入させることにより、有色の撥水性の被膜30を形成するようにしてもよい。このようにすれば、防水処理が施された電線であるかどうかを目視で容易に判別することが可能となる。   Although the color of the water-repellent coating 30 was not particularly mentioned, a colored water-repellent coating 30 may be formed by mixing a colorant into the water-repellent solution. If it does in this way, it will become possible to discriminate | determine easily visually whether it is an electric wire with which the waterproof process was performed.

また、本実施形態の撥水性材料は、フッ素樹脂やシリコーン樹脂のような、水に対して90度以上の接触角を有する材料によって構成したが、90度より小さくても導体12や被覆材14よりも大きい接触角を有するものであれば、水分の侵入をある程度抑止することが可能である。従って、撥水性材料としてアクリル樹脂やエポキシ樹脂等を使用してもよい。   Moreover, although the water repellent material of this embodiment was comprised with the material which has a contact angle of 90 degree | times or more with respect to water like a fluororesin or a silicone resin, even if it is less than 90 degree | times, the conductor 12 and the coating | covering material 14 As long as it has a larger contact angle, it is possible to suppress the intrusion of moisture to some extent. Accordingly, an acrylic resin or an epoxy resin may be used as the water repellent material.

図1(a)(b)に示すアース用電線10に対し、その滴下位置A(アース接続端子20の導体バレル22とインシュレーションバレル24との間)に撥水性溶液を滴下する方法により、次の条件下で防水処理を行った。   1A and 1B, the water repellent solution is dropped at the dropping position A (between the conductor barrel 22 and the insulation barrel 24 of the ground connection terminal 20) by the following method. Waterproofing was performed under the conditions of

撥水性材料…フッ素樹脂「デュラサーフ DS−5320Z」((株)ハーベス社製)
撥水性材料の濃度…2%(推定膜厚0.5〜1.0μm)
撥水性溶液滴下量…5mg
電線の断面積/長さ…3mm2/1m
溶媒を蒸発させるための放置時間…30秒
Water repellent material… Fluororesin “Durasurf DS-5320Z” (manufactured by Harves Co., Ltd.)
Concentration of water repellent material ... 2% (estimated film thickness 0.5-1.0 μm)
Water repellent solution dripping amount ... 5mg
Cross-sectional area / length of wire ... 3mm 2 / 1m
Standing time to evaporate the solvent ... 30 seconds

以上のような条件下で防水処理を行った後、その電線端末を水槽に浸漬したところ、電線内に水の侵入がないことを確認することができた。また、当該端末を水槽に浸漬した状態で、反対側の端末からエアを吹き込んだところ、水槽内での気泡の発生が確認され、その結果、電線端末が閉塞されていないことを確認することができた。   After the waterproof treatment was performed under the above conditions, the wire end was immersed in a water tank, and it was confirmed that there was no water intrusion in the wire. In addition, when air is blown from the terminal on the opposite side while the terminal is immersed in the water tank, generation of bubbles in the water tank is confirmed, and as a result, it can be confirmed that the wire terminal is not blocked. did it.

(a)は本発明の実施の形態にかかるアース用電線の一方の端末にアース接続端子を圧着固定した構造を示す平面図、(b)はその正面図である。(A) is a top view which shows the structure which crimped-fixed the ground connection terminal to one terminal of the electric wire for earth | ground concerning embodiment of this invention, (b) is the front view. 前記アース用電線の端末部分の拡大断面図である。It is an expanded sectional view of the terminal part of the electric wire for earthing. (a)は図2に示す端末部分に撥水性の被膜が形成された状況を示す図、(b)は当該端末に水滴が付着した状況を示す図である。(A) is a figure which shows the condition where the water-repellent film was formed in the terminal part shown in FIG. 2, (b) is a figure which shows the condition where the water droplet adhered to the said terminal.

符号の説明Explanation of symbols

10 アース用電線(車載用電線)
12 導体
12a 導体素線
14 被覆材
20 アース接続端子(端子)
30 撥水性の被膜
B 導体間の隙間(導体素線どうしの隙間)
C 被覆材と導体との隙間
10 Grounding wire (wire for automotive use)
12 Conductor 12a Conductor Wire 14 Coating Material 20 Ground Connection Terminal (Terminal)
30 Water repellent coating B B Gap between conductors (gap between conductor wires)
C Clearance between the coating material and the conductor

Claims (9)

導体の外側に被覆材を有して車両に搭載される車載用電線であって、
前記導体の外周面と被覆材の内周面とが、少なくとも一方の端末から所定長さにわたって撥水性の被膜により覆われていることを特徴とする車載用電線。
An in-vehicle electric wire mounted on a vehicle having a covering material outside the conductor,
An in-vehicle electric wire, wherein an outer peripheral surface of the conductor and an inner peripheral surface of a covering material are covered with a water-repellent coating over a predetermined length from at least one end.
前記車載用電線は、前記端末に端子が接続された端子付き車載用電線であることを特徴とする請求項1記載の車載用電線。   The in-vehicle electric wire according to claim 1, wherein the in-vehicle electric wire is an in-vehicle electric wire with a terminal having a terminal connected to the terminal. 前記端子付き車載用電線は、車両の所定箇所に設けられたアース部位に前記端子が接続されるアース用電線であることを特徴とする請求項2記載の車載用電線。   The in-vehicle electric wire according to claim 2, wherein the in-vehicle electric wire with a terminal is an earth electric wire in which the terminal is connected to an earth portion provided at a predetermined location of a vehicle. 請求項1〜3のいずれか1項に記載の車載用電線において、
前記撥水性の被膜は、水に対して90度以上の接触角を有する撥水性材料によって構成されていることを特徴とする車載用電線。
The in-vehicle electric wire according to any one of claims 1 to 3,
The in-vehicle electric wire, wherein the water-repellent coating is made of a water-repellent material having a contact angle of 90 degrees or more with respect to water.
請求項4記載の車載用電線において、
前記撥水性材料は、フッ素樹脂又はシリコーン樹脂であることを特徴とする車載用電線。
The in-vehicle electric wire according to claim 4,
The in-vehicle electric wire, wherein the water repellent material is a fluororesin or a silicone resin.
導体の外側に被覆材を有して車両に搭載される車載用電線の少なくとも一方の端末を防水処理するための方法であって、
当該端末に、揮発性の溶媒に撥水性材料が溶解してなる撥水性溶液を供給し、この撥水性溶液を前記導体間の隙間及び被覆材と導体との隙間から前記車載用電線の内部に浸透させる撥水性溶液供給工程と、
前記撥水性溶液供給工程後、前記揮発性の溶媒を蒸発させて当該溶媒に溶解していた撥水性材料を残留させることにより、前記導体の外周面及び被覆材の内周面に撥水性の被膜を形成する溶媒蒸発工程とを含むことを特徴とする車載用電線の防水処理方法。
A method for waterproofing at least one end of an in-vehicle electric wire mounted on a vehicle having a coating on the outside of a conductor,
A water repellent solution in which a water repellent material is dissolved in a volatile solvent is supplied to the terminal, and the water repellent solution is introduced into the interior of the in-vehicle electric wire from the gap between the conductors and the gap between the covering material and the conductor. A water-repellent solution supplying step for permeation;
After the water-repellent solution supplying step, the water-repellent film is formed on the outer peripheral surface of the conductor and the inner peripheral surface of the covering material by evaporating the volatile solvent and leaving the water-repellent material dissolved in the solvent. And a solvent evaporation process for forming a vehicle.
請求項6記載の車載用電線の防水処理方法において、
前記撥水性溶液供給工程は、あらかじめ前記端末部の被覆材を所定長さだけ除去することで導体を露出させておき、その露出した導体の基端部付近に前記撥水性溶液を滴下する工程であることを特徴とする車載用電線の防水処理方法。
The waterproofing method for an in-vehicle electric wire according to claim 6,
The water-repellent solution supplying step is a step in which a conductor is exposed in advance by removing a predetermined length of the covering material of the terminal portion, and the water-repellent solution is dropped near the base end portion of the exposed conductor. A waterproofing method for an in-vehicle electric wire, characterized in that:
請求項7記載の車載用電線の防水処理方法において、
前記撥水性溶液供給工程は、あらかじめ前記端末部の露出した導体に端子を接続しておき、この端子上の導体接続箇所近傍に前記撥水性溶液を溜めるようにしてこれを滴下する工程であることを特徴とする車載用電線の防水処理方法。
The waterproofing method for an in-vehicle electric wire according to claim 7,
The water-repellent solution supplying step is a step in which a terminal is connected to the exposed conductor of the terminal portion in advance, and the water-repellent solution is dripped so as to collect the water-repellent solution in the vicinity of the conductor connecting portion on the terminal. A waterproofing method for an in-vehicle electric wire characterized by the above.
請求項6記載の車載用電線の防水処理方法であって、
前記撥水性溶液供給工程は、前記車載用電線の少なくとも一方の端末を前記撥水性溶液中に浸漬する工程であることを特徴とする車載用電線の防水処理方法。
A waterproof treatment method for an in-vehicle electric wire according to claim 6,
The water-repellent solution supplying step is a step of immersing at least one end of the vehicle-mounted electric wire in the water-repellent solution.
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KR101032782B1 (en) 2009-04-14 2011-05-09 주식회사 경신 Device of coating for preventing leak in cable
KR101046442B1 (en) * 2009-04-14 2011-07-04 주식회사 경신 Waterproofing method of electric wire
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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR101032782B1 (en) 2009-04-14 2011-05-09 주식회사 경신 Device of coating for preventing leak in cable
KR101046442B1 (en) * 2009-04-14 2011-07-04 주식회사 경신 Waterproofing method of electric wire
WO2014049740A1 (en) * 2012-09-26 2014-04-03 トヨタ自動車株式会社 Electric component

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