JP2017022841A - Terminal connection jig for withstand voltage test of power cable - Google Patents

Terminal connection jig for withstand voltage test of power cable Download PDF

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JP2017022841A
JP2017022841A JP2015137472A JP2015137472A JP2017022841A JP 2017022841 A JP2017022841 A JP 2017022841A JP 2015137472 A JP2015137472 A JP 2015137472A JP 2015137472 A JP2015137472 A JP 2015137472A JP 2017022841 A JP2017022841 A JP 2017022841A
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power cable
electrode
terminal
shielding layer
withstand voltage
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JP6324927B2 (en
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悦章 石田
Yoshiaki Ishida
悦章 石田
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Tatsuta Electric Wire and Cable Co Ltd
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Abstract

PROBLEM TO BE SOLVED: To easily and smoothly connect a shielding layer and a conductor to a lead wire, in a withstand voltage test between a shielding layer of the power cable and the conductor.SOLUTION: A terminal connection jig (A) for withstand voltage test includes a scissors-like jig main body comprising: a fulcrum portion 12 located in a substantially center position of the pair of pinching members; a clamping section 13 located forward of the fulcrum portion; a grip portion 14 located at the rear; and an elastic member 15 which presses the clamping portion in the closing direction. One of conductive electrodes 16 connected to a shielding layer is provided in the grip portion, and the other electrode 20 formed by filling the conductive elastic body 22 in the cylindrical body 21 is provided in front of the fulcrum portion. A terminal p with the shielding layer exposed by removing a sheath 6 of the electric power cable is inserted between the grip portions and clamped between the grip portions, to connect one electrode to the shielding layer. A power cable terminal is inserted into the cylindrical body from the opening, to compress the conductive elastic body 22, to be brought into contact with the conductor and connected to the other electrode.SELECTED DRAWING: Figure 5

Description

この発明は、600V以下の電力を供給する低圧電力ケーブル、例えば、工場内における各種生産設備の自動制御や集中監視システム等の配線、またはオフィスにおけるコンピュータシステムの回線などに使用される計装用ケーブル等のケーブル導体と遮蔽層の間の耐電圧を試験する耐電圧試験を行う際、その電力ケーブルの端末に電圧を印加するための端末接続治具、その端末接続治具を用いた耐電圧試験用電線及びその電線を使用した耐電圧試験装置に関するものである。   The present invention relates to a low voltage power cable for supplying power of 600 V or less, for example, an automatic cable for various production facilities in a factory, wiring for a centralized monitoring system, or an instrument cable used for a computer system line in an office, etc. When conducting a withstand voltage test to test the withstand voltage between the cable conductor of the cable and the shielding layer, a terminal connection jig for applying a voltage to the terminal of the power cable, for the withstand voltage test using the terminal connection jig The present invention relates to an electric wire and a withstand voltage test apparatus using the electric wire.

例えば、計装用ケーブル等の電力ケーブルは、外部からのノイズや自身からの外部へのノイズを遮蔽(遮断)するため、例えば、図9に示すように、導体1aを塩化ビニール等の絶縁体1bで絶縁被覆し、その複数本の絶縁心線1を介在2を介して撚るとともに押さえテープ3で断面円形に整形した後、その外周に銅テープや金属編組による遮蔽層(シールド層)4を設け、さらに押さえテープ5を施した後、樹脂被覆(シース)6を設けた構成が一般的である。   For example, a power cable such as an instrument cable shields (blocks) external noise or external noise from itself. For example, as shown in FIG. 9, the conductor 1a is made of an insulator 1b such as vinyl chloride. The insulation cores 1 are twisted through the interpositions 2 and formed into a circular cross section with the pressing tape 3, and then a shielding layer (shield layer) 4 made of copper tape or metal braid is formed on the outer periphery thereof. Generally, a structure in which a resin coating (sheath) 6 is provided after the pressing tape 5 is provided.

通常、電力ケーブルは、工場からの出荷時、取り扱う電圧に対して十分な絶縁耐力があるかどうかの耐電圧試験が行われる。
電力ケーブルの耐電圧試験には、数万KV以上の電圧が印加されるものもあり、その電力ケーブルPは、導体1aを露出させた後、その露出導体1aを絶縁油を封入した碍管で被って行われている(特許文献1、第1図等参照)。
Normally, when a power cable is shipped from a factory, a withstand voltage test is performed to determine whether or not the power cable has sufficient dielectric strength.
In some of the withstand voltage tests of power cables, a voltage of several tens of thousands KV or more is applied. After the conductor 1a is exposed, the exposed conductor 1a is covered with a soot tube filled with insulating oil. (See Patent Document 1, FIG. 1, etc.).

特許第2633613号公報Japanese Patent No. 2633613

計装用ケーブル等の電力ケーブルPは、完成品の荷姿がドラムに巻かれた状態であり(本願図4、図11参照)、その荷姿の完成品検査時に耐電圧試験が行われる。その耐電圧試験は、低圧(600V以下)であることから、例えば、図10、図11に示すように、ケーブルPを巻いたドラムDの所要数を並べて行われる。
その並べられた状態で、図12に示すように、ドラムDから引き出されたケーブル端末pにおいて、所要長さのシース6を剥ぎ取るとともに、押さえテープ5、3及び介在2を剥ぎ取り、遮蔽層4を露出させる。その後、絶縁心線1の絶縁体1bを剥ぎ取って導体1aを露出させる(同図(a))。
The power cable P such as an instrument cable is in a state in which a finished product is wound around a drum (see FIGS. 4 and 11), and a withstand voltage test is performed when the finished product is inspected. Since the withstand voltage test is a low voltage (600 V or less), for example, as shown in FIGS. 10 and 11, the required number of drums D around which the cable P is wound are arranged side by side.
In the arranged state, as shown in FIG. 12, at the cable end p drawn from the drum D, the sheath 6 having a required length is peeled off, the pressing tapes 5 and 3 and the interposition 2 are peeled off, and the shielding layer is removed. 4 is exposed. Thereafter, the insulator 1b of the insulating core wire 1 is peeled off to expose the conductor 1a (FIG. 1A).

このようにして、各ドラムDのケーブルPにおいて、ケーブル端末pの絶縁心線1の導体1a及び遮蔽層4を露出させた後、図12(b)に示すように、リード線wを各ケーブル端末pの導体1a又は遮蔽層4に巻き付け、そのリード線wでもって、図11に示すように、その各ドラムDから引き出されたケーブル端末pの導体1a同士を直列接続するとともに、同遮蔽層(銅テープ)4同士を直列接続する。   In this manner, in the cable P of each drum D, after exposing the conductor 1a and the shielding layer 4 of the insulation core wire 1 of the cable terminal p, the lead wire w is connected to each cable as shown in FIG. The conductor 1a of the terminal p is wound around the conductor 1a or the shielding layer 4, and the conductor 1a of the cable terminal p drawn from each drum D is connected in series with the lead wire w as shown in FIG. (Copper tape) 4 are connected in series.

この接続状態において、図10に示すように、両リード線w、wを電圧計V又は電流計を介して電源装置Eに接続し、両リード線w、w間に所定の電圧を所定の時間印加する。このとき、絶縁心線1に絶縁破壊が生じていると、導体1aと遮蔽層4間に電流が流れ、電圧が降下する。   In this connection state, as shown in FIG. 10, both lead wires w and w are connected to the power supply device E via a voltmeter V or an ammeter, and a predetermined voltage is applied between the lead wires w and w for a predetermined time. Apply. At this time, if dielectric breakdown occurs in the insulation core wire 1, a current flows between the conductor 1a and the shielding layer 4, and the voltage drops.

上記電力ケーブルPの耐電圧試験において、上記のように、シース6、押さえテープ5、3、介在2及び絶縁体(絶縁被覆)1bのそれぞれの剥ぎ取り作業は非常に煩雑である。特に、絶縁心線1の絶縁体1bの剥ぎ取りは、その絶縁心線1が細いため、煩雑である。また、リード線wを導体1a及び遮蔽層4に巻き付ける作業も繁雑である。このため、それらの作業の改善が望まれている。   In the withstand voltage test of the power cable P, as described above, the stripping work of the sheath 6, the pressing tapes 5, 3, the interposition 2 and the insulator (insulating coating) 1b is very complicated. In particular, the stripping of the insulator 1b of the insulating core wire 1 is complicated because the insulating core wire 1 is thin. Moreover, the operation | work which winds the lead wire w around the conductor 1a and the shielding layer 4 is also complicated. For this reason, improvement of those operations is desired.

この発明は、以上の実状を鑑み、遮蔽層4及び導体1aとリード線wとの接続作業を簡単かつ円滑に行い得るようにすることを課題とする。   This invention makes it a subject to enable it to perform the connection operation | work with the shielding layer 4 and the conductor 1a, and the lead wire w easily and smoothly in view of the above actual condition.

上記課題を達成するため、この発明は、遮蔽層を露出させた電力ケーブルの端末を差し込むと、その遮蔽層を挟持して上記リード線に接続するとともに、前記端末端面の露出した導体端面に導電性弾性体を介してリード線が接続されるようにしたのである。
このような端末接続治具であると、ケーブル端末の差し込みだけで、リード線への接続が行われるため、その接続作業が簡単かつ円滑である。
In order to achieve the above object, according to the present invention, when the end of the power cable with the shielding layer exposed is inserted, the shielding layer is sandwiched and connected to the lead wire, and the exposed conductor end face of the end face is electrically conductive. The lead wire is connected via the elastic elastic body.
With such a terminal connection jig, connection to the lead wire is performed only by inserting the cable terminal, so that the connection work is simple and smooth.

この発明に係る電力ケーブルの耐電圧試験用端末接続治具の構成としては、一対の挟み部材の略中央位置を支点部とし、その支点部より前方側に挟持部、後方側に把持部を有し、前記挟持部が閉じる方向に付勢する弾性部材を取付けたハサミ状の治具本体からなり、前記一対の挟み部材の挟持部に上記遮蔽層4に接続される一方の電極を設け、前記支点部の前記挟持部側に上記導体1aに接続される他方の電極を設け、前記一方の電極は板片から成ってその板片から外部にリード線が導出され、他方の電極は、前記両挟持部間に位置する筒体と、その筒体内に装填された導電性弾性体とから成って、その導電性弾性体からリード線が外部に導出されている構成を採用することができる。
上記電力ケーブルとしては、低圧の物に限らず、高圧の物も採用し得るが、その場合には、他の部材、例えば、リード線等もその高圧に耐え得る物を使用する。
The terminal connection jig for a withstand voltage test for a power cable according to the present invention has a fulcrum portion at a substantially central position of a pair of sandwiching members, a clamping portion on the front side of the fulcrum portion, and a gripping portion on the rear side. A pair of scissors-like jig bodies to which an elastic member that biases the clamping part in a closing direction is attached, and one electrode connected to the shielding layer 4 is provided on the clamping part of the pair of clamping members, The other electrode connected to the conductor 1a is provided on the holding portion side of the fulcrum portion, the one electrode is formed of a plate piece, and a lead wire is led out from the plate piece, and the other electrode is connected to the both electrodes. It is possible to employ a configuration in which a cylindrical body positioned between the sandwiching portions and a conductive elastic body loaded in the cylindrical body, and a lead wire is led out from the conductive elastic body.
The power cable is not limited to a low voltage, but may be a high voltage. In that case, other members, such as lead wires, can withstand the high voltage.

この構成の電力ケーブルの耐電圧試験用端末接続治具は、電力ケーブルのシースを剥がして遮蔽層を露出させた端末を、上記一対の挟み部材の両挟持部の間に差し入れ、その両挟持部で前記遮蔽層を露出させた端末を上記一方の電極を介し挟持してその一方の電極を遮蔽層に接続するとともに、上記他方の電極の筒体にその開口から前記電力ケーブルの端末を挿し込み、その挿し込みによって、電力ケーブルの導体を導電性弾性体を圧縮し接しさせてその他方の電極に接続して、遮蔽層及び導体にリード線を接続する。この状態の電力ケーブルに、上記と同様に、リード線を介して電圧を印加して試験を行う。   The terminal connecting jig for withstanding voltage test of the power cable having this configuration is configured such that the terminal having the shield layer exposed by peeling off the sheath of the power cable is inserted between both the sandwiching portions of the pair of sandwiching members. The terminal with the shielding layer exposed is sandwiched between the one electrode and the one electrode is connected to the shielding layer, and the terminal of the power cable is inserted into the cylindrical body of the other electrode from the opening. By inserting the lead wire, the conductor of the power cable is connected to the other electrode by compressing and contacting the conductive elastic body, and the lead wire is connected to the shielding layer and the conductor. A test is performed by applying a voltage to the power cable in this state via a lead wire in the same manner as described above.

この構成において、上記一対の挟み部材の一方の挟持部に上記一方の電極を設け、他方の挟み部材の挟持部に弾性材を設ければ、その弾性材によって電極が遮蔽層に押し付けられるため、両者の接続が確実となる。このとき、弾性材によって両者間の摩擦抵抗が増して保持強度が向上するが、弾性体に表面(一方の電極に接する面)が粘着性のあるものを使用すると、電力ケーブル端末が動きにくく、その保持強度はさらに向上する。
上記導電性弾性体は、その作用を発揮し得る限りにおいて、その態様は任意であるが、例えば、スチールウールやコイルばね等を使用することができる。
In this configuration, if the one electrode is provided in one holding part of the pair of holding members and an elastic material is provided in the holding part of the other holding member, the electrode is pressed against the shielding layer by the elastic material. The connection between the two is ensured. At this time, the elastic material increases the frictional resistance between the two and improves the holding strength, but if the elastic body has a sticky surface (the surface in contact with one electrode), the power cable terminal is difficult to move, The holding strength is further improved.
The conductive elastic body may have any form as long as it can exert its action, and for example, steel wool, a coil spring, or the like can be used.

上記端末接続治具の複数を並べ、その各端末接続治具の各リード線を直列に接続した電力ケーブルの耐電圧試験用電線とすることができる。その各リード線の直列接続は、両リード線の導体を絡めて結ぶ等して行っても良いが、アリゲータクリップ端子と、そのアリゲータクリップ端子で挟持される端子とにより行うようにすれば、その接続が容易である。
また、各端末接続治具をそれぞれのリード線で相互に接続するのではなく、隣接する端末接続治具の間は同一のリード線とすることもできる(アリゲータクリップ端子等を省略した1本のリード線状とすることができる)。
A plurality of the terminal connection jigs are arranged, and a withstand voltage test electric wire for a power cable in which the lead wires of the terminal connection jigs are connected in series can be obtained. Each lead wire may be connected in series by tying and tying the conductors of both lead wires, but if it is made by an alligator clip terminal and a terminal sandwiched between the alligator clip terminals, Easy connection.
In addition, each terminal connection jig is not connected to each other by each lead wire, but can be made the same lead wire between adjacent terminal connection jigs (one alligator clip terminal is omitted). Lead wire).

この耐電圧試験用電線の使用例としては、例えば、電力ケーブルが巻き付けられた複数のドラムを並べ、その各ドラムから前記電力ケーブルを引き出し、その引き出した電力ケーブルのシースを剥がして遮蔽層を露出させた端末を、その耐電圧試験用電線の各端末接続治具の両挟持部の間に差し入れ、その両挟持部で前記遮蔽層を露出させた端末を一方の電極を介し挟持してその一方の電極を遮蔽層に接続するとともに、他方の電極の筒体にその開口から電力ケーブルの端末を挿し込み、その挿し込みによって、電力ケーブルの導体を上記導電性弾性体を圧縮し接しさせて他方の電極に接続する態様を採用することができる。
この態様においては、その耐電圧試験用電線の端末を電圧計又は電流計を介して電源装置に接続し、その電源装置によって、前記耐電圧試験用電線を介して各ドラムの電力ケーブルの遮蔽層と導体の間に所定電圧を印加することができる。
As an example of the use of this withstand voltage test electric wire, for example, a plurality of drums around which a power cable is wound are arranged, the power cable is pulled out from each drum, the sheath of the drawn power cable is peeled off, and the shielding layer is exposed. The terminal with the shielding layer exposed between the two clamping portions of each terminal connection jig of the electric wire for withstand voltage test. The electrode of the power cable is connected to the shielding layer, and the end of the power cable is inserted into the cylinder of the other electrode from the opening, and the insertion of the electrode causes the conductor of the power cable to compress and contact the conductive elastic body. It is possible to adopt a mode of connecting to the other electrode.
In this aspect, the terminal of the withstand voltage test electric wire is connected to a power supply device via a voltmeter or an ammeter, and the power supply device uses the power supply device to shield the power cable of each drum via the withstand voltage test electric wire. A predetermined voltage can be applied between the conductor and the conductor.

この発明は、以上のように構成したので、遮蔽層及び導体とリード線の接続作業を簡単かつ円滑に行い得るようになって、耐電圧試験の作業性が向上する。   Since the present invention is configured as described above, it is possible to easily and smoothly connect the shielding layer, the conductor, and the lead wire, thereby improving the workability of the withstand voltage test.

この発明に係る電力ケーブルの耐電圧試験用接続治具の一実施形態の斜視図The perspective view of one Embodiment of the withstand voltage test connection jig of the power cable which concerns on this invention 同実施形態の要部拡大斜視図Main part enlarged perspective view of the same embodiment 同実施形態の要部を示し、(a)は切断平面図、(b)は切断正面図The principal part of the embodiment is shown, (a) is a cut plan view, (b) is a cut front view. 同実施形態の電力ケーブルの耐電圧試験用端末接続治具による耐電圧試験の一例の概略図Schematic of an example of a withstand voltage test using a terminal connection jig for a withstand voltage test of the power cable of the embodiment 同耐電圧試験における端末接続治具の接続状態説明用一部切欠き正面図Front view of partly cutout for explaining the connection state of the terminal connection jig in the same withstand voltage test 同実施形態における電力ケーブル端末のシース等の剥ぎ取り説明図Explanatory drawing of stripping the sheath of the power cable end in the same embodiment この発明に係る端末接続治具の他の実施形態の要部断面図Sectional drawing of the principal part of other embodiment of the terminal connection jig which concerns on this invention この発明に係る端末接続治具のさらに他の実施形態の要部断面図Sectional drawing of the principal part of further another embodiment of the terminal connection jig which concerns on this invention 電力ケーブルの一例の断面図Cross section of an example of a power cable 電力ケーブルの耐電圧試験の一例の概略図Schematic of an example of a withstand voltage test for power cables 同耐電圧試験の従来例の一部拡大斜視図Partially enlarged perspective view of the conventional example of the withstand voltage test 同従来例における電力ケーブル端末と電源装置へのリード線との接続作業説明図Explanatory drawing of connection work between power cable terminal and lead wire to power supply device in the conventional example

この発明に係る耐電圧試験用端末接続治具の一実施形態を図1〜図3に示し、この端末接続治具Aは、図4に示すように、耐電圧試験する並列させたドラムDの数だけ接続されて電圧印加用電線Wを構成する。その端末接続治具Aは、ハサミ状の合成樹脂製治具本体10からなって、その本体10から2本の絶縁電線(リード線)w1、w2を並列したコードが2本導出され、それぞれの端末に、アリゲータクリップ(ワニクリップ)7又は穴あき端子8を設けている。そのアリゲータクリップ7及び穴あき端子8は、それぞれ、例えば、赤、緑の着色が施されて区別可能となっており、同一色のアリゲータクリップ7と穴あき端子8を接続する。   One embodiment of a terminal connection jig for a withstand voltage test according to the present invention is shown in FIG. 1 to FIG. 3, and this terminal connection jig A is used for paralleling drums D for withstand voltage test as shown in FIG. The voltage application wire W is configured by being connected in number. The terminal connecting jig A is composed of a scissor-shaped synthetic resin jig main body 10, and two cords in which two insulated wires (lead wires) w 1 and w 2 are arranged in parallel are led out from the main body 10. The terminal is provided with an alligator clip (crocodile clip) 7 or a holed terminal 8. The alligator clip 7 and the perforated terminal 8 can be distinguished from each other by, for example, being colored red and green, and connect the alligator clip 7 and the perforated terminal 8 of the same color.

端末接続治具Aの本体10は、図1〜図3に示すように、一対の挟み部材11、11の略中央位置を支点部12とし、支点部12より前方側に挟持部13、13、後方側に把持部14、14を有し、この一対の挟み部材11の挟持部13を支点部12を介して開閉自在とし、挟持部13、13が閉じる方向に付勢する一つ割りのリング状バネ15を並列に2本取付けた構成である。
一方の挟み部材11の挟持部13に銅片からなる一方の電極16をその挟持部13の先端縁を包むように設け、この電極16に上記両リード線w1、w2の同一着色(例えば、緑)のリード線(絶縁電線)w1が半田によって接続されている。半田接続に代えて、圧着等の適宜な接続手段を採用できる。電極(銅片)16は挟持部13の内側(挟持面)に至っている。
この実施形態においては、樹脂バンド17を電極16の回りに嵌めて挟持部13から電極(銅片)16が外れないようにしている。
As shown in FIGS. 1 to 3, the main body 10 of the terminal connection jig A has a fulcrum portion 12 at a substantially central position of the pair of sandwiching members 11, 11, and the sandwiching portions 13, 13, A split ring that has grips 14 and 14 on the rear side, and allows the clamping part 13 of the pair of clamping members 11 to be opened and closed via the fulcrum part 12 and biases the clamping parts 13 and 13 in the closing direction. In this configuration, two springs 15 are attached in parallel.
One electrode 16 made of a copper piece is provided in the sandwiching portion 13 of one sandwiching member 11 so as to wrap the tip edge of the sandwiching portion 13, and the same coloring (for example, green) of both the lead wires w 1 and w 2 is provided on this electrode 16. Lead wire (insulated wire) w1 is connected by solder. Instead of solder connection, an appropriate connection means such as crimping can be employed. The electrode (copper piece) 16 reaches the inner side (clamping surface) of the clamping part 13.
In this embodiment, the resin band 17 is fitted around the electrode 16 so that the electrode (copper piece) 16 does not come off from the clamping portion 13.

他方の挟持部13には樹脂テープ18を巻き付けて弾性層を形成しているとともに、その挟持面側が少なくとも粘性面とされている。このため、両挟持部13、13で物を挟むと、その弾性層18及びその粘着面でもってその物を滑ることなく確実に挟持する。すなわち、電力ケーブルPの遮蔽層4が圧接状態で確実に挟持される。   An elastic layer is formed by wrapping a resin tape 18 around the other sandwiching portion 13, and the sandwiching surface side is at least a viscous surface. For this reason, when an object is sandwiched between the sandwiching portions 13 and 13, the object is securely sandwiched by the elastic layer 18 and the adhesive surface without slipping. That is, the shielding layer 4 of the power cable P is securely clamped in the pressure contact state.

他方の電極20は、上記両挟持部13、13間に設けられており、軟質塩化ビニール樹脂からなって弾性を有する有蓋のキャップ状の絶縁性筒体21と、その筒体21内に装填されたスチールウールからなる導電性弾性体22とからなる。その筒体21内に、図3に示すように、上記両リード線w1、w2の同一着色(例えば、赤)のリード線(絶縁電線)w2が挿入され括り結ばれて、導電性弾性体22内に埋没している。因みに、キャップ状絶縁性筒体21は、従来、ケーブル端末pに嵌められてその端末を保護するキャップとして使用されているものである。   The other electrode 20 is provided between the sandwiching portions 13, 13, and is made of a soft vinyl chloride resin and has a covered cap-like insulating cylinder 21 having elasticity, and is loaded in the cylinder 21. And a conductive elastic body 22 made of steel wool. As shown in FIG. 3, the same colored (for example, red) lead wire (insulated wire) w <b> 2 of both the lead wires w <b> 1 and w <b> 2 is inserted and tied in the cylindrical body 21, and the conductive elastic body 22. It is buried inside. Incidentally, the cap-like insulating cylinder 21 is conventionally used as a cap that is fitted to the cable terminal p to protect the terminal.

この端末接続治具Aの筒体21に、図5に示すように、切り落とされたケーブル端末pを挿し込むと、その端末は導電性弾性体22を押しながら奥に入り込む。このとき、ケーブル端末pは切り落とされているため、その端面に導体1aの端面が露出しており、その導体1aの端面が導電性弾性体22に確実に接する。
このように、ケーブル端末pが電極20(筒体21)に挿し込まれると、被試験物であるケーブルPの導体1aと電圧印加用電線Wのリード線w2は導通状態となる。
As shown in FIG. 5, when the cut cable terminal p is inserted into the cylindrical body 21 of the terminal connection jig A, the terminal enters the back while pressing the conductive elastic body 22. At this time, since the cable terminal p is cut off, the end face of the conductor 1a is exposed at the end face, and the end face of the conductor 1a is in contact with the conductive elastic body 22 with certainty.
Thus, when the cable terminal p is inserted into the electrode 20 (cylindrical body 21), the conductor 1a of the cable P, which is the device under test, and the lead wire w2 of the voltage applying wire W become conductive.

この端末接続治具Aを有する電圧印加用電線Wによる耐電圧試験、例えば、計装用ケーブルPの耐電圧試験にあっては、図4に示すように、ケーブルPを巻き付けたドラムDが並べられた態様において、その各ドラムDからケーブルPを引き出す。その引き出されたケーブル端末pの端面は、フラットに切り落として絶縁心線1の中心に導体1aの端面が露出している状態となっている。   In the withstand voltage test using the voltage application wire W having the terminal connection jig A, for example, the withstand voltage test of the instrumentation cable P, the drum D around which the cable P is wound is arranged as shown in FIG. In this embodiment, the cable P is pulled out from each drum D. The drawn end face of the cable terminal p is cut flat and the end face of the conductor 1a is exposed at the center of the insulating core wire 1.

この状態のケーブル端末pにおいて、図6(a)に示すように、シース6、押さえテープ5及び遮蔽層(銅テープ)4を所要長さ剥ぎ取り、銅テープ4をその剥ぎ取り端部に巻き付ける(同図(b))。前記所要長さは、後述のこのケーブル端末pを端末接続治具Aの挟持部13、13の間に挿し込んだ際、その挟持部13の電極16に前記銅テープ4の巻き付け部が位置すると共に、ケーブル端末pの端面が電極20の導電性弾性体22を十分に押さえるように適宜に設定する(図5参照)。
このとき、シース6にその長さ方向の切り目を入れ、その切れ目から銅テープ4のみを引き出し、その銅テープ4を引き出し端のシース6上に巻回することもできる。この場合、電極20に挿し込まれるケーブル端末pが円柱状を維持してその挿し込みが円滑となる。
In the cable terminal p in this state, as shown in FIG. 6 (a), the sheath 6, the pressing tape 5 and the shielding layer (copper tape) 4 are stripped to the required length, and the copper tape 4 is wound around the stripped end. ((B) in the figure). The required length is such that when the cable terminal p, which will be described later, is inserted between the holding portions 13 and 13 of the terminal connection jig A, the winding portion of the copper tape 4 is positioned on the electrode 16 of the holding portion 13. At the same time, the end face of the cable terminal p is appropriately set so that the conductive elastic body 22 of the electrode 20 is sufficiently pressed (see FIG. 5).
At this time, it is also possible to make a cut in the length direction in the sheath 6, pull out only the copper tape 4 from the cut, and wind the copper tape 4 on the sheath 6 at the drawing end. In this case, the cable terminal p inserted into the electrode 20 maintains a cylindrical shape, and the insertion becomes smooth.

このようにして、各ドラムDのケーブル端末pの導体1a及び遮蔽層4を露出させた後、そのケーブル端末pに端末接続治具Aを設ける。すなわち、把持部14、14を把持してバネ15に抗し挟持部13、13を開放し、その開放した両挟持部13、13の間に前記ケーブル端末pを差し込み、その先端を電極20の導電性弾性体22に押し込んで把持部14の把持力を緩めてバネ15でもって挟持部13で遮蔽層4を介在してケーブル端末pを支持する。
この状態が図5であって、一方の電極16に遮蔽層4が接続しているとともに、他方の電極20(導電性弾性体22)に導体1aが接続している。
その後、又はその前に、隣り合う各端末接続治具Aのリード線w1、w2をアリゲータクリップ7で同一色の穴あき端子8を挟持して接続し、電圧印加用電線Wを構成する。
Thus, after exposing the conductor 1a and the shielding layer 4 of the cable terminal p of each drum D, the terminal connection jig A is provided on the cable terminal p. That is, the gripping portions 14 and 14 are gripped to open the clamping portions 13 and 13 against the spring 15, the cable terminal p is inserted between the opened clamping portions 13 and 13, and the tip of the electrode 20 The cable end p is pushed into the conductive elastic body 22 to loosen the gripping force of the gripping portion 14 and the cable terminal p is supported by the clamping portion 13 with the spring 15 via the shielding layer 4.
This state is shown in FIG. 5, in which the shielding layer 4 is connected to one electrode 16 and the conductor 1a is connected to the other electrode 20 (conductive elastic body 22).
Thereafter, or before that, the lead wires w1 and w2 of the adjacent terminal connection jigs A are connected by sandwiching the perforated terminals 8 of the same color by the alligator clip 7 to constitute the voltage applying electric wire W.

このように、電圧印加用電線Wでもって各ドラムDの電力ケーブルPの遮蔽層4又は導体1aを直列接続した後、その耐電圧試験用電線Wを電圧計Vを介して電源装置Eに接続する。その接続は、アリゲータクリップ7でもって、電源装置Eにその端子eを介して接続し、その両絶縁電線w1、w2の間に所定の電圧を所定の時間印加し(図4、図10参照)、絶縁心線1と遮蔽層4との間に十分な絶縁耐力があるかどうかを試験する。このとき、電源装置Eから最も離れたドラムDのケーブル端末pに設ける端末接続装置Aは、両電極16、20から導出されたリード線w1、w2の一方(図4において左端側)を省略したものとし得る。   Thus, after the shielding layer 4 or the conductor 1a of the power cable P of each drum D is connected in series with the voltage applying wire W, the withstand voltage test wire W is connected to the power supply device E via the voltmeter V. To do. The connection is made with the alligator clip 7 to the power supply device E via the terminal e, and a predetermined voltage is applied between the insulated wires w1 and w2 for a predetermined time (see FIGS. 4 and 10). Then, it is tested whether there is sufficient dielectric strength between the insulation core wire 1 and the shielding layer 4. At this time, the terminal connection device A provided in the cable terminal p of the drum D farthest from the power supply device E omits one of the lead wires w1 and w2 (left end side in FIG. 4) led out from both electrodes 16 and 20. Can be.

電圧が低下すれば、何れかのドラムDの電力ケーブルPにおいて、絶縁心線1と遮蔽層4との間に十分な絶縁耐力が無いこと、例えば、ピンホール等が存在して絶縁破壊が生じていることとなる。
その場合、例えば、並んだ各ドラムDの端(図4において左端側)から順々に端末接続装置Aを電力ケーブルPから外したり、その端末接続装置Aから隣の端末接続装置Aに伸びるリード線w1、w2のアリゲータクリップ7と穴あき端子8との接続を外したりすることによって、電圧印加用電線Wからその端のドラムDの電力ケーブルPを外し、再度、上記電圧を印加し、以後、電圧が低下しないドラムDまでその試験作業を行う。この作業により、その電圧が低下しなくなった直前のドラムDのケーブルPにおいて絶縁破壊が生じていることが分かる。
また、この端末接続装置Aを外すドラムDのケーブルPは任意であり、外したケーブルPを除いて上記電圧印加用電線Wを構成して耐電圧試験をした際、電圧の低下が無ければ、その外したドラムDのケーブルPが絶縁破壊をしていることとなる。
なお、絶縁破壊が生じているドラムDの電力ケーブルPはその全体が不良品となる。
If the voltage decreases, the power cable P of any drum D does not have sufficient dielectric strength between the insulation core wire 1 and the shielding layer 4, for example, there is a pinhole or the like, resulting in dielectric breakdown. Will be.
In that case, for example, the terminal connection device A is disconnected from the power cable P in order from the end (left end side in FIG. 4) of the drums D arranged side by side, or leads extending from the terminal connection device A to the adjacent terminal connection device A. The power cable P of the drum D at the end is disconnected from the voltage application wire W by disconnecting the alligator clip 7 and the perforated terminal 8 of the wires w1 and w2, and the above voltage is applied again. The test operation is performed up to the drum D where the voltage does not decrease. By this work, it can be seen that dielectric breakdown occurs in the cable P of the drum D immediately before the voltage no longer drops.
Moreover, the cable P of the drum D which removes this terminal connection apparatus A is arbitrary, and when the withstand voltage test is performed by configuring the voltage applying wire W except for the removed cable P, if there is no voltage drop, The removed cable D of the drum D is dielectrically broken.
Note that the entire power cable P of the drum D in which dielectric breakdown has occurred is a defective product.

上記端末接続治具Aは、図7に示すように、止めピン25を筒体21の蓋部から挿し込んでその導電性ピン部分25aをスチールウールからなる導電性弾性体22に接触させるとともに、露出するそのピン部分25aにリード線wを括り付けて電気的に接続したものとすることができる。この構成は、従来の絶縁電線端末保護用キャップと、市販の金属たわし(束子)としてのスチールウール22及び止めピン25によるため、容易に入手可能であり、簡単に作り得るものである。
また、端末接続治具Aの導電性弾性体22は、図8に示すように、導電性金属からなるコイルばね22aを採用することができる。
As shown in FIG. 7, the terminal connection jig A is inserted into the stopper pin 25 from the lid portion of the cylindrical body 21 to bring the conductive pin portion 25 a into contact with the conductive elastic body 22 made of steel wool, The lead wire w may be tied to and electrically connected to the exposed pin portion 25a. Since this structure is based on a conventional cap for protecting an insulated wire end, a steel wool 22 and a set pin 25 as commercially available metal scrubbers (bundles), it can be easily obtained and can be easily made.
Further, as shown in FIG. 8, the conductive elastic body 22 of the terminal connection jig A can employ a coil spring 22a made of a conductive metal.

上記各端末接続治具Aの筒体21は、有蓋キャップ状としたが、電力ケーブル端末pの嵌め込み時、導電性弾性体22が圧縮されて飛び出さない限りにおいて、蓋のないものとし得る。例えば、図3において、リード線w1、w2の導体の括り結び部分w’でその飛び出しを防げる場合等である。
また、筒体21の材質も塩化ビニール以外の種々の絶縁性樹脂を採用し得ることは勿論である。
さらに、上記実施形態において、各端末接続治具Aをそれぞれのリード線w1、w2で相互に接続するのではなく、隣接する端末接続治具Aの間は同一のリード線w1、w2とすることもできる。すなわち、図4において、アリゲータクリップ端子7、穴あき端子8を省略し、その省略部分もリード線w1、w2が連続するものとすることができる。このようにすれば、隣接する端末接続治具Aの間は切れ目のない2本のリード線w1、w2で接続されたものとなる。
また、電圧計Vに代えて電流計を採用できる。この場合は、絶縁心線1に絶縁破壊が生じていると、導体1aと遮蔽層4間に電流が流れ、その電流検知によって前記絶縁破壊を検知する。
The cylindrical body 21 of each terminal connection jig A has a lidded cap shape, but may have no lid unless the conductive elastic body 22 is compressed and popped out when the power cable terminal p is fitted. For example, in FIG. 3, it is possible to prevent the conductors of the lead wires w1 and w2 from protruding at the constricted portion w ′.
Of course, various insulating resins other than vinyl chloride can be adopted as the material of the cylinder 21.
Furthermore, in the above-described embodiment, the terminal connection jigs A are not connected to each other by the respective lead wires w1 and w2, but the same lead wires w1 and w2 are provided between the adjacent terminal connection jigs A. You can also. That is, in FIG. 4, the alligator clip terminal 7 and the holed terminal 8 can be omitted, and the lead wires w1 and w2 can be continuous in the omitted part. If it does in this way, between the adjacent terminal connection jig | tool A will be connected by the two lead wires w1 and w2 which are unbroken.
Further, an ammeter can be adopted in place of the voltmeter V. In this case, if a dielectric breakdown occurs in the insulation core wire 1, a current flows between the conductor 1a and the shielding layer 4, and the dielectric breakdown is detected by detecting the current.

なお、この発明は、計装ケーブルPのみならず、他の低圧又は高圧の電力ケーブルの耐電圧試験に採用し得ることは言うまでもない。
また、2相(絶縁心線1が2本)に限らず、1相、3相等の電力ケーブルにおいても、この発明は採用できる。このとき、この発明の耐電圧試験は、何れかの絶縁心線1の導体1aと遮蔽層4との絶縁破壊の有無の検査であるため、複数相の電力ケーブルであっても支障がない。すなわち、この耐電圧試験を行うことができる。
このように、今回開示された実施の形態はすべての点で例示であって制限的なものではないと考えられるべきである。この発明の範囲は、特許請求の範囲によって示され、特許請求の範囲と均等の意味および範囲内でのすべての変更が含まれることが意図される。
Needless to say, the present invention can be used not only for the instrumentation cable P but also for other low-voltage or high-voltage power cables.
Further, the present invention can be applied not only to the two-phase (two insulating core wires 1) but also to a one-phase, three-phase, etc. power cable. At this time, since the withstand voltage test of the present invention is an inspection for the presence or absence of dielectric breakdown between the conductor 1a of any one of the insulated core wires 1 and the shielding layer 4, there is no problem even with a multi-phase power cable. That is, this withstand voltage test can be performed.
Thus, it should be thought that embodiment disclosed this time is an illustration and restrictive at no points. The scope of the present invention is defined by the terms of the claims, and is intended to include any modifications within the scope and meaning equivalent to the terms of the claims.

A 端末接続治具
D ドラム
E 電源装置
P 被試験体である電力ケーブル
V 電圧計(電流計)
p 電力ケーブルの端末
W 電圧印加用電線
w、w1、w2 その電圧印加用電線用リード線(絶縁電線)
1 電力ケーブルの絶縁心線
1a 同絶縁心線の導体
1b 同絶縁被覆(絶縁体)
2 電力ケーブルの介在
3、5 同押さえテープ
4 同遮蔽層(銅テープ)
6 同シース
7 アリゲータクリップ(端末接続子)
8 穴あき端子
10 端末接続治具本体
11 同本体の挟み部材
12 同支点部
13 同挟持部
14 同把持部
15 弾性体(バネ)
16 一方の電極(銅片)
20 他方の電極
21 同電極の筒体
22 同導電性弾性体(スチールウール)
22a 同導電性弾性体(コイルばね)
A Terminal connection jig D Drum E Power supply device P Power cable V which is a test object V Voltmeter (Ammeter)
p Electric power cable terminal W Voltage application wires w, w1, w2 Lead wires for the voltage application wires (insulated wires)
1 Insulation core wire 1a of power cable Conductor 1b of insulation core wire Insulation coating (insulator)
2 Intervening power cable 3, 5 Pressing tape 4 Shading layer (copper tape)
6 Same sheath 7 Alligator clip (terminal connector)
8 Terminal with a hole 10 Terminal connecting jig body 11 Nipping member 12 of the body 12 Supporting point part 13 Holding part 14 Holding part 15 Elastic body (spring)
16 One electrode (copper piece)
20 The other electrode 21 The same electrode cylinder 22 The same conductive elastic body (steel wool)
22a Conductive elastic body (coil spring)

Claims (7)

導体(1a)、絶縁体(1b)、遮蔽層(4)及びシース(6)を有する電力ケーブル(P)の前記導体(1a)と遮蔽層(4)の間の耐電圧を試験する耐電圧試験用端末接続治具(A)であって、
一対の挟み部材(11、11)の略中央位置を支点部(12)とし、その支点部(12)より前方側に挟持部(13、13)、後方側に把持部(14、14)を有し、前記両挟持部(13)が閉じる方向に付勢する弾性部材(15)を取付けたハサミ状の治具本体(10)から成り、
上記一対の挟み部材(11)の挟持部(13)に上記遮蔽層(4)に接続される一方の電極(16)を設け、上記支点部(12)の前記挟持部(13)側に上記導体(1a)に接続される他方の電極(20)を設け、前記一方の電極(16)は板片から成ってその板片から外部にリード線(w1)が導出され、他方の電極(20)は、前記両挟持部(13)間に位置する筒体(21)と、その筒体(21)内に装填された導電性弾性体(22)とから成って、その導電性弾性体(22)からリード線(w2)が外部に導出されており、
上記電力ケーブル(P)のシース(6)を剥がして遮蔽層(4)を露出させた端末(p)を、上記一対の挟み部材(11)の両挟持部(13)の間に差し入れ、その両挟持部(13)で前記遮蔽層(4)を露出させた端末(p)を上記一方の電極(16)を介し挟持してその一方の電極(16)を前記遮蔽層(4)に接続するとともに、上記他方の電極(20)の筒体(21)にその開口から前記電力ケーブルの端末(p)を挿し込み、その挿し込みによって、前記電力ケーブルの導体(1a)を上記導電性弾性体(22)を圧縮し接しさせて上記他方の電極(20)に接続するようにしたことを特徴とする電力ケーブルの耐電圧試験用端末接続治具。
Withstand voltage for testing the withstand voltage between the conductor (1a) and the shielding layer (4) of the power cable (P) having the conductor (1a), the insulator (1b), the shielding layer (4) and the sheath (6). A test terminal connection jig (A),
The substantially central position of the pair of sandwiching members (11, 11) is a fulcrum portion (12), the sandwiching portions (13, 13) on the front side of the fulcrum portion (12), and the gripping portions (14, 14) on the rear side. Comprising a scissors-like jig body (10) to which an elastic member (15) for urging the both clamping parts (13) in the closing direction is attached,
One electrode (16) connected to the shielding layer (4) is provided on the sandwiching portion (13) of the pair of sandwiching members (11), and the fulcrum portion (12) is disposed on the sandwiching portion (13) side. The other electrode (20) connected to the conductor (1a) is provided. The one electrode (16) is composed of a plate piece, and a lead wire (w1) is led out from the plate piece, and the other electrode (20 ) Is composed of a cylindrical body (21) positioned between the sandwiching portions (13) and a conductive elastic body (22) loaded in the cylindrical body (21). 22) lead wires (w2) are led out to the outside,
The terminal (p) from which the sheath (6) of the power cable (P) is peeled off to expose the shielding layer (4) is inserted between both the sandwiching portions (13) of the pair of sandwiching members (11), The terminal (p) where the shielding layer (4) is exposed by both sandwiching portions (13) is sandwiched through the one electrode (16), and the one electrode (16) is connected to the shielding layer (4). In addition, the end (p) of the power cable is inserted into the cylinder (21) of the other electrode (20) from the opening, and the conductor (1a) of the power cable is inserted into the conductive elastic body by the insertion. A terminal connection jig for a withstand voltage test of a power cable, wherein the body (22) is compressed and brought into contact with the other electrode (20).
上記一対の挟み部材(11、11)の一方の挟持部(13)に上記一方の電極(16)を設け、他方の挟み部材(13)の挟持部(13)に弾性材(18)を設けたことを特徴とする請求項1に記載の電力ケーブルの耐電圧試験用端末接続治具。   The one electrode (16) is provided in one clamping part (13) of the pair of clamping members (11, 11), and the elastic material (18) is provided in the clamping part (13) of the other clamping member (13). The terminal connection jig for a withstand voltage test of a power cable according to claim 1. 上記導電性弾性体(22)をスチールウールによって構成したことを特徴とする請求項1又は2に記載の電力ケーブルの耐電圧試験用端末接続治具。   3. The terminal connection jig for a withstand voltage test for a power cable according to claim 1, wherein the conductive elastic body (22) is made of steel wool. 上記導電性弾性体(22)をコイルばね(22a)によって構成したことを特徴とする請求項1又は2に記載の電力ケーブルの耐電圧試験用端末接続治具。   The terminal connection jig for a withstand voltage test for a power cable according to claim 1 or 2, wherein the conductive elastic body (22) is constituted by a coil spring (22a). 請求項1乃至4の何れか1つに記載の複数の端末接続治具(A)を並べ、その各端末接続治具(A)の各リード線(w1、w2)を直列に接続したことを特徴とする電力ケーブルの耐電圧試験用電線。   A plurality of terminal connection jigs (A) according to any one of claims 1 to 4 are arranged, and the lead wires (w1, w2) of the terminal connection jigs (A) are connected in series. Electric wire for withstand voltage test of power cable. 上記各端末接続治具(A)の各リード線(w1、w2)の接続を、アリゲータクリップ端子7と、そのアリゲータクリップ端子7で挟持される端子8により行った請求項5に記載の電力ケーブルの耐電圧試験用電線。   The power cable according to claim 5, wherein each lead wire (w 1, w 2) of each terminal connection jig (A) is connected by an alligator clip terminal 7 and a terminal 8 sandwiched between the alligator clip terminal 7. Electric wire for withstand voltage test. 電力ケーブル(P)が巻き付けられた複数のドラム(D)を並べ、その各ドラム(D)から前記電力ケーブル(P)を引き出し、その引き出した電力ケーブル(P)のシース(6)を剥がして遮蔽層(4)を露出させた端末(p)を、請求項5又は6に記載の耐電圧試験用電線(W)の各端末接続治具(A)の両挟持部(13)の間に差し入れ、その両挟持部(13)で前記遮蔽層(4)を露出させた端末(p)を上記一方の電極(16)を介し挟持してその一方の電極(16)を前記遮蔽層(4)に接続するとともに、上記他方の電極(20)の筒体(21)にその開口から前記電力ケーブルの端末(p)を挿し込み、その挿し込みによって、前記電力ケーブルの導体(1a)を上記導電性弾性体(22)を圧縮し接しさせて上記他方の電極(20)に接続し、前記耐電圧試験用電線(W)を介して各ドラム(D)の前記電力ケーブル(P)に所定の電圧を印加し、ドラム(D)の電力ケーブル(P)の遮蔽層(4)と導体(1a)の間に絶縁破壊が生じている時、電圧計(V)や電流計によってその絶縁破壊を検知することを特徴とする電力ケーブルの耐電圧試験装置。   A plurality of drums (D) around which the power cable (P) is wound are arranged, the power cable (P) is pulled out from each drum (D), and the sheath (6) of the drawn power cable (P) is peeled off. The terminal (p) from which the shielding layer (4) is exposed is sandwiched between both sandwiched portions (13) of the terminal connection jigs (A) of the withstand voltage test electric wire (W) according to claim 5 or 6. The terminal (p) from which the shielding layer (4) is exposed by both of the sandwiching portions (13) is sandwiched through the one electrode (16), and the one electrode (16) is sandwiched between the shielding layer (4). ) And the terminal (p) of the power cable is inserted into the cylindrical body (21) of the other electrode (20) from the opening, and the conductor (1a) of the power cable is The conductive elastic body (22) is compressed and brought into contact with the other electrode. (20), a predetermined voltage is applied to the power cable (P) of each drum (D) via the withstand voltage test wire (W), and the power cable (P) of the drum (D) A withstand voltage test apparatus for a power cable, wherein when a dielectric breakdown occurs between the shielding layer (4) and the conductor (1a), the dielectric breakdown is detected by a voltmeter (V) or an ammeter.
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CN111965396A (en) * 2020-08-14 2020-11-20 广东电网有限责任公司广州供电局 Three-phase terminal quick connection structure and switch cabinet port withstand voltage test device
CN113064031A (en) * 2021-03-22 2021-07-02 江西赣电电气有限公司 Insulating paperboard electrical strength experiment electrode
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CN111965396A (en) * 2020-08-14 2020-11-20 广东电网有限责任公司广州供电局 Three-phase terminal quick connection structure and switch cabinet port withstand voltage test device
CN113064031A (en) * 2021-03-22 2021-07-02 江西赣电电气有限公司 Insulating paperboard electrical strength experiment electrode
CN113064031B (en) * 2021-03-22 2022-09-02 江西赣电电气有限公司 Insulating paperboard electrical strength experiment electrode
CN114289638A (en) * 2021-12-16 2022-04-08 徐州双虎金属工具制造有限公司 Cable shear with electricity testing function and using method

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