JPS6346543B2 - - Google Patents

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Publication number
JPS6346543B2
JPS6346543B2 JP19844383A JP19844383A JPS6346543B2 JP S6346543 B2 JPS6346543 B2 JP S6346543B2 JP 19844383 A JP19844383 A JP 19844383A JP 19844383 A JP19844383 A JP 19844383A JP S6346543 B2 JPS6346543 B2 JP S6346543B2
Authority
JP
Japan
Prior art keywords
core
arms
arm
cable
wires
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired
Application number
JP19844383A
Other languages
Japanese (ja)
Other versions
JPS6091580A (en
Inventor
Tatsuya Watanabe
Toshio Oonuma
Fumio Suzuki
Kazuyuki Koga
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Fujikura Cable Works Ltd
Original Assignee
Fujikura Cable Works Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Fujikura Cable Works Ltd filed Critical Fujikura Cable Works Ltd
Priority to JP19844383A priority Critical patent/JPS6091580A/en
Publication of JPS6091580A publication Critical patent/JPS6091580A/en
Publication of JPS6346543B2 publication Critical patent/JPS6346543B2/ja
Granted legal-status Critical Current

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  • Manufacturing Of Electrical Connectors (AREA)
  • Wire Processing (AREA)

Description

【発明の詳細な説明】 この発明は、丸形多心ケーブルの心線群を平面
状に整列させる心線整列方法に関するものであ
る。
DETAILED DESCRIPTION OF THE INVENTION The present invention relates to a method for aligning core wires of a round multi-core cable in a planar manner.

丸形多心ケーブルの心線群を平面状に整列させ
る作業は、前記ケーブルの端末を、接続端子が一
列に並ぶコネクタに接続する場合等に要求され
る。
The work of arranging the core wires of a round multi-core cable in a plane is required when the terminal of the cable is connected to a connector whose connection terminals are aligned in a row.

従来より、前述のような場合における心線整列
作業は、まずケーブル端末部の心線相互の撚りを
ほぐし、次いで撚りをほぐした心線群をコネクタ
の端子配列に対応するように平面状に整列させ、
次いで、整列状態がくずれないように、整列させ
た心線相互を粘着テープ等の適宜手段によつて一
体化させる等の手順で進められているが、いずれ
の作業も、作業者が手作業によつて行う方式であ
るため、丸形多心ケーブルの心線数が数十本もの
多数にのぼる場合には、心線相互の撚りをほぐす
作業等によつて作業者にかかる負担が増大し、作
業時間が著しく増大するという問題があり、作業
者にかかる負担の軽減、作業時間の短縮等の観点
から心線整列作業の自動化が要望されていた。
Conventionally, the wire alignment work in the above case involves first untwisting the core wires at the end of the cable, and then aligning the untwisted core wires in a plane to correspond to the terminal arrangement of the connector. let me,
Next, steps are taken to integrate the aligned core wires using appropriate means such as adhesive tape so that the aligned state is not disrupted. Because this method involves twisting the wires together, when the number of cores in a round multi-core cable reaches several dozen, the burden placed on the worker increases due to work such as untwisting the cores. There is a problem that the working time increases significantly, and there has been a demand for automation of the fiber alignment work from the viewpoint of reducing the burden on the worker and shortening the working time.

この発明は、前記要望を鑑みて提案されたもの
で、自動化に適し、自動化によつて作業者にかか
る負担を大幅に低減させることができ、しかも心
線数が多数の場合にも、心線相互の撚りを効率よ
くほぐして平面状に整列させることができる丸形
多心ケーブルの心線整列方法を提供することを目
的とする。
This invention was proposed in view of the above-mentioned needs, and is suitable for automation, can significantly reduce the burden on workers through automation, and can also be applied to a large number of fibers. It is an object of the present invention to provide a method for arranging the core wires of a round multi-core cable, which can efficiently untwist each other and arrange the cores in a plane.

以下、本発明に使用される装置と本発明とを図
面に基づいて順次説明する。
Hereinafter, the apparatus used in the present invention and the present invention will be sequentially explained based on the drawings.

第1図の符号1は心線挾持装置、第2図の符号
2は保持板、第3図の符号3は平坦部保持具であ
る。
Reference numeral 1 in FIG. 1 is a core wire clamping device, reference numeral 2 in FIG. 2 is a holding plate, and reference numeral 3 in FIG. 3 is a flat portion holder.

心線挾持装置1は、図示略の設置台等に固定さ
れたフレーム1aに、上下に平行に離間した一対
のアーム1b,1cが取り付けられた構成になつ
ており、これら両アーム1b,1cによつて、丸
形多心ケーブル4の先端部を挾持する。下側のア
ーム1bはフレーム1aから垂下した一対の柱1
d,1dの下端に固定され、一方、上側のアーム
1cは、前記柱1d,1dをガイドとして上下方
向(両アーム1b,1cの対向方向)に摺動自在
に支持されるとともに、フレーム1aに固定され
たエアシリンダ1eのロツド端に連結されて、両
アーム1b,1cの対向方向に微小振動しながら
両アーム1b,1cの対向方向に平行移動するよ
うに構成されている。
The core wire clamping device 1 has a structure in which a pair of arms 1b, 1c are attached to a frame 1a fixed to a stand (not shown) or the like, and are spaced apart from each other vertically in parallel. Thus, the tip of the round multi-core cable 4 is held. The lower arm 1b is a pair of pillars 1 hanging from the frame 1a.
The upper arm 1c is fixed to the lower ends of the frames 1a and 1d, while the upper arm 1c is supported to be slidable in the vertical direction (the direction in which the arms 1b and 1c face each other) using the pillars 1d and 1d as guides, and is attached to the frame 1a. It is connected to the rod end of a fixed air cylinder 1e, and is configured to move in parallel in the opposite direction of both arms 1b and 1c while vibrating minutely in the opposite direction of both arms 1b and 1c.

保持板2は、金属または合成樹脂製の板材2a
に、丸形多心ケーブル4の心線4aを一列状に挾
持するスリツト状の切れ込み部2bを形成したも
ので、この実施例では、切れ込み部2bの幅Wが
心線4aの外径Dより若干大(W=D+αで、D
=1.03mmの場合に、0.01mm≦α≦0.05mm程度)に
設定されており、また、切れ込み部2bの開口端
は心線4aが入り易いように幅が拡張されている。
The holding plate 2 is a plate material 2a made of metal or synthetic resin.
In this embodiment, a slit-like notch 2b is formed to sandwich the core wires 4a of the round multi-core cable 4 in a row.In this embodiment, the width W of the notch 2b is larger than the outer diameter D of the core wire 4a. Slightly large (W=D+α, D
= 1.03 mm, the width is set to about 0.01 mm≦α≦0.05 mm), and the width of the opening end of the notch 2b is expanded so that the core wire 4a can easily enter therein.

平坦部保持具3は、前記保持板2と同様の切れ
込み部3aが形成された厚板状の保持体3b,3
bを、切れ込み部3aの方向をそろえて平行に所
定距離離間させ、かつ、これらの両保持体3b,
3bを連結板3cを介して一体化させたもので、
離間した一対の切れ込み部3a,3aに順次心線
4aを挿通させることによつて、両保持体3b,
3b間に心線相互が平面状に整列した所定長さの
心線整列部を形成する。
The flat part holder 3 is a thick plate-shaped holder 3b, 3 in which a notch 3a similar to that of the holder plate 2 is formed.
b are spaced apart from each other by a predetermined distance in parallel with the directions of the cut portions 3a, and both of these holding bodies 3b,
3b are integrated through a connecting plate 3c,
By sequentially inserting the core wire 4a through the pair of spaced apart notches 3a, 3a, both holders 3b,
A wire alignment section of a predetermined length in which the core wires are aligned in a planar manner is formed between 3b.

なお、前記保持体3bは、略長方形状を成し、
上面側に前記切れ込み部3aとなる段差が形成さ
れた下部板材3dと、この下部板材3dの上部に
固着された角柱状の上部板材3eとによつて、開
口端側の幅が拡長された切れ込み部3aを形成し
ているが、保持体3bの構成はこれに限定するも
のではなく、前述の保持板2のように単一の厚板
に直接切れ込み部を形成してもよく、要は、切れ
込み部が連結板3cから離間し、保持する心線4
aの周囲に形成される空所によつて、再び心線4
aが簡単に取り出せるようであればよい。
Note that the holding body 3b has a substantially rectangular shape,
The width of the opening end side is increased by the lower plate material 3d having a step formed on the upper surface side to serve as the cut portion 3a, and the prismatic upper plate material 3e fixed to the upper part of the lower plate material 3d. Although the cut portion 3a is formed, the structure of the holding body 3b is not limited to this, and the cut portion may be formed directly on a single thick plate like the above-mentioned holding plate 2. , the notch part is spaced apart from the connecting plate 3c and holds the core wire 4.
Due to the void formed around a, the core wire 4
It is sufficient if a can be easily taken out.

以下、本発明の実施例を説明する。 Examples of the present invention will be described below.

まず、第1図に示すように、丸形多心ケーブル
4の先端側の外被4bを剥いで心線群を露出さ
せ、それらの心線群を所定長さ心線挾持装置1の
アーム1b,1c間に挿通させる。次いで、第2
図に示すように、図示略の振動装置等によつて、
丸形多心ケーブル4を両アーム1b,1c間の間
隙5に沿つて振動させる一方で、上方のアーム1
cを両アーム1b,1cの対向方向に微小振動さ
せながら両アーム1b,1cを接近させることに
よつて、心線群を徐々に偏平に広げて一列状に整
列させ、この整列状態を両アーム1b,1cによ
る挾持によつて維持させる。この時の挾持力は、
心線4aのシースや導体に変形が残らない程度と
する。
First, as shown in FIG. 1, the outer sheath 4b on the distal end side of the round multi-core cable 4 is peeled off to expose the core wire groups, and the core wire groups are held at a predetermined length on the arm 1b of the core wire clamping device 1. , 1c. Then the second
As shown in the figure, by using a vibration device (not shown), etc.
While the round multi-core cable 4 is vibrated along the gap 5 between both arms 1b and 1c, the upper arm 1
By bringing both arms 1b and 1c closer to each other while slightly vibrating c in the opposite direction of both arms 1b and 1c, the core wire group is gradually spread flat and aligned in a line, and this alignment state is maintained in both arms. It is maintained by being held by 1b and 1c. The clamping force at this time is
The deformation should be such that the sheath and conductor of the core wire 4a do not remain deformed.

次いで、保持板2の切れ込み部2b内に各心線
4aが挿通するように、保持板2を第2図に示す
如く一方の側から両アーム1b,1cの直前位置
に差し込んで、保持板2を心線群に装着する。
Next, as shown in FIG. 2, the holding plate 2 is inserted from one side into a position directly in front of both arms 1b and 1c so that each core wire 4a is inserted into the notch 2b of the holding plate 2. Attach it to the core group.

次いで、両アーム1b,1cによる挾持力を若
干緩め、丸形多心ケーブル4を、第3図に示すよ
うに、両アーム1b,1cからケーブルの基端側
(第3図で手前側)に所定長さ引き出す。ケーブ
ルを引くと、アーム1b,1cより先方の心線
は、アーム1b,1c間を抜け出す際に、両アー
ム1b,1cによつてしごかれ、このしごきによ
つて、心線相互の撚りがほぐされる。このような
撚りのほぐし方であると、ケーブル4を基端側に
引くという単一の操作で、多数の心線相互の撚り
を同時にほぐすことができるため、心線数が多数
の場合にも、心線相互の撚りを効率よくほぐして
平面状に整列させることができる。このようなケ
ーブルの基端側への引き出しによつて、第3図に
示したように保持板2と両アーム1b,1cとの
間に所定長さの心線整列部6が形成されたら、前
述の保持板2の場合と同様にして、平坦部保持具
3の両切れ込み部3a,3a内に各心線4aが挿
通するように、保持具3を第3図に示す如く一方
の側から保持板2とアーム1b,1cとの間に差
し込んで、保持具3を心線整列部6に装着する。
Next, the clamping force by both arms 1b and 1c is slightly loosened, and the round multi-core cable 4 is moved from both arms 1b and 1c to the proximal end side of the cable (toward the near side in Fig. 3), as shown in Fig. 3. Pull out the specified length. When the cable is pulled, the core wires ahead of the arms 1b, 1c are squeezed by both arms 1b, 1c as they pass between the arms 1b, 1c, and this straining causes the mutual twisting of the core wires. Relaxed. With this method of untwisting, it is possible to untwist a large number of core wires at the same time with a single operation of pulling the cable 4 toward the proximal end, so even when there are a large number of core wires, , it is possible to efficiently untwist the core wires and align them in a plane. By pulling out the cable toward the proximal end in this manner, a core wire alignment portion 6 of a predetermined length is formed between the holding plate 2 and both arms 1b and 1c as shown in FIG. In the same manner as in the case of the holding plate 2 described above, the holding tool 3 is inserted from one side as shown in FIG. The holder 3 is inserted between the holder plate 2 and the arms 1b and 1c, and attached to the core wire alignment section 6.

次いで、第4図に示すように、保持板2だけケ
ーブル4から外し、両アーム1b,1c間に挿入
した心線群が完全に両アーム1b,1c間から抜
き出せば、ケーブル4はその端末まで心線相互の
撚りほぐされた状態となり、かつ保持具3に平面
状の整列部6が残された状態となる。
Next, as shown in FIG. 4, when only the retaining plate 2 is removed from the cable 4 and the core group inserted between both arms 1b and 1c is completely pulled out from between both arms 1b and 1c, the cable 4 can be removed to its terminal. The core wires become untwisted with each other, and the planar alignment portion 6 remains on the holder 3.

このように、保持具3によつて整列部6を保持
させると、整列状態を保存しておくことができ、
整列作業に引き続いてコネクタと丸形多心ケーブ
ルとの接続作業を行わない場合等に便利である。
また、保持具3を使用した場合には、粘着テープ
等により心線相互を連結した場合と異なり、心線
整列部6の成す平面の両側にスペースが形成され
るため、例えば、第5図に示すような単純な動作
をする心線把持装置7を利用することによつて、
保持具3の切れ込み部3aの開口端側から1本ず
つ心線4aを取り出すことも可能になり、このこ
とによつて、次のような場合における自動化が助
成されることになつた。
In this way, by holding the alignment part 6 with the holder 3, the alignment state can be preserved,
This is convenient when the connection work between the connector and the round multi-core cable is not performed subsequent to the alignment work.
Furthermore, when the holder 3 is used, unlike the case where the fibers are connected to each other with adhesive tape or the like, spaces are formed on both sides of the plane formed by the fiber alignment section 6, so for example, as shown in FIG. By using the fiber gripping device 7 that operates simply as shown,
It has also become possible to take out the core wires 4a one by one from the open end side of the notch 3a of the holder 3, thereby facilitating automation in the following cases.

例えば、丸形多心ケーブルの両端に接続端子が
一列に並ぶコネクタを設ける場合で、特に丸形多
心ケーブルの基端側の心線配列に対応して、所定
の相対関係で先端側の心線を配列しなければなら
ない場合などには、基端側の心線群は前述のよう
な整列方法によつて簡単に整列状態とし、そのま
まコネクタに接続することができるが、先端側の
各心線については導通試験等によつて基端側での
配列順序を検出し、この検出結果等に基づいて製
列させる必要が生じる。このような場合に、あら
かじめ、先端側の心線群を本発明の方法によつて
単純に保持具3上に整列させておけば、それを前
記心線把持装置7によつて一本ずつ取り出し、こ
の把持装置7または把持装置7による移送先で導
通試験を行うようにすれば、単純な心線整列作業
から基端側での配列順序の検出までを自動化でき
ることとなり、これによりケーブルの両端の各心
線を所定の相対関係で整列させる時に必要な作業
の自動化が助成された。
For example, when a connector is provided with connecting terminals lined up in a row at both ends of a round multi-core cable, the cores on the distal end are arranged in a predetermined relative relationship, especially corresponding to the core wire arrangement on the proximal end of the round multi-core cable. When it is necessary to arrange the wires, the core wires on the proximal end can be easily aligned using the alignment method described above and connected to the connector as is, but each core on the distal end As for the wires, it is necessary to detect the arrangement order on the proximal end side by a continuity test or the like, and to arrange the wires based on the detection results. In such a case, by simply arranging the fiber groups on the tip side on the holder 3 in advance using the method of the present invention, the fibers can be taken out one by one by the fiber gripping device 7. By performing a continuity test on this gripping device 7 or at the destination where the gripping device 7 transfers it, it becomes possible to automate everything from simple core alignment work to detecting the arrangement order on the proximal end side. Automation of the work required to align each core wire in a predetermined relative relationship has been assisted.

第5図に示した心線把持装置7について簡単に
説明すると、この把持装置7は、保持具3上に整
列した心線群が挿通できるコ字状の移動フレーム
8と、心線群の成す平面と交差する方向に移動自
在な分離爪9と、心線4aの整列方向に移動自在
に設けられた押え板10と、前記移動フレーム8
が移動して該移動フレーム8内に切れ込み部3a
の開口端側の一本の心線4aが挿入されたことを
検出するセンサ11と、前記分離爪9および押え
板10をそれぞれ直線運動させるエアシリンダな
どの駆動装置12,13等から構成されている
が、移動フレーム8を含めて可動部がいずれも直
線運動となるため、動作が単純で制御しやすい。
Briefly explaining the fiber gripping device 7 shown in FIG. 5, this gripping device 7 consists of a U-shaped movable frame 8 through which the fiber groups arranged on the holder 3 can be inserted, and A separating claw 9 that is movable in a direction intersecting the plane, a presser plate 10 that is movable in the direction in which the core wires 4a are aligned, and the moving frame 8
moves and a notch 3a is formed in the moving frame 8.
It is composed of a sensor 11 that detects insertion of one core wire 4a on the open end side, and drive devices 12, 13 such as air cylinders that linearly move the separating claw 9 and the holding plate 10, respectively. However, since all movable parts including the moving frame 8 move in a straight line, the operation is simple and easy to control.

なお、前述の心線整列方法では、保持具3を使
用して、保持具3に保存された心線整列部6をコ
ネクタとの接続部として利用することにしたが、
場合によつては、第3図に示すように保持板2と
両アーム1b,1cとの間に心線整列部6を形成
した段階で、該心線整列部6をコネクタとの接続
部として作業することもできる。
In addition, in the above-mentioned fiber alignment method, it was decided to use the holder 3 and utilize the fiber alignment part 6 stored in the holder 3 as the connection part with the connector.
In some cases, as shown in FIG. 3, at the stage where the fiber alignment part 6 is formed between the holding plate 2 and both arms 1b and 1c, the fiber alignment part 6 may be used as a connection part with a connector. You can also work.

また、心線4aを挾持する一対のアーム1b,
1cの当接面には、ポリ四弗化エチレンのテープ
等を貼付し、これによつて心線4aを滑りやすく
することも考えられる。
Also, a pair of arms 1b that sandwich the core wire 4a,
It is also conceivable to attach a polytetrafluoroethylene tape or the like to the contact surface of 1c, thereby making it easier for the core wire 4a to slide.

以上説明したように、本発明の心線整列方法は
一対のアーム間に丸形多心ケーブルの先端側を挿
通させ、該丸形多心ケーブルを両アーム間の間隙
に沿つて振動させる一方で、少なくとも片方のア
ームを両アームの対向方向に振動させながら両ア
ームを接近させることによつて、両アーム間に位
置した丸形多心ケーブルの心線群を一列状に広げ
て整列させ、この整列状態を両アームによる挾持
によつて維持させ、次いでスリツト状の切れ込み
部に心線を挿通させることによつて心線群の整列
状態を保つ保持板をアームの直前位置で心線群に
装着し、次いで、丸形多心ケーブルをアームから
基端側に所定長さ引き出すことによつて、両アー
ムより先方の心線相互の撚りをほぐすとともにア
ームと保持板との間に心線相互が平面状に整列し
た所定長さの心線整列部を形成して成るもので、
先端部を両アームに挾持させた丸形多心ケーブル
を、アームに対して基端側に引くという単一の操
作で、多数の心線相互の撚りを同時にほぐすこと
ができるため、心線数が多数の場合にも、心線相
互の撚りを効率よくほぐして平面状に整列させる
ことができ、作業時間を短縮させることができ
る。しかも、アームや心線に与える動きはすべて
単純な直線運動であるから、図示例のように、エ
アシリンダ等を利用することによつて比較的容易
に装置化することができ、心線整列作業の自動化
に適しており、自動化によつて作業者にかかる負
担を大幅に低減させることができる。
As explained above, the core wire alignment method of the present invention involves inserting the distal end side of a round multi-core cable between a pair of arms, vibrating the round multi-core cable along the gap between both arms, and By vibrating at least one arm in the opposite direction of both arms and bringing the two arms closer together, the core groups of the round multi-core cable located between the two arms are spread out and aligned in a line. The alignment is maintained by being held by both arms, and then a holding plate is attached to the fiber group at a position just in front of the arm, which maintains the alignment of the fiber group by inserting the fibers through the slit-like notches. Then, by pulling out a predetermined length of the round multi-core cable from the arm toward the proximal end, the twists between the core wires ahead of both arms are loosened, and the core wires are separated between the arm and the holding plate. It is formed by forming core wire alignment parts of a predetermined length that are aligned in a plane,
With a single operation of pulling a round multi-core cable whose distal end is held between both arms toward the proximal end of the arm, a large number of core wires can be untwisted at the same time, reducing the number of fibers. Even in the case where there are a large number of core wires, it is possible to efficiently untwist the core wires and arrange them in a plane, thereby shortening the working time. Moreover, since all the movements given to the arms and core wires are simple linear motions, they can be constructed relatively easily by using an air cylinder, etc., as shown in the example shown, and the wire alignment work can be done easily. It is suitable for automation, and automation can significantly reduce the burden on workers.

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

第1図〜第4図はそれぞれ本発明を実施する手
順を示す説明図であり、第5図イ,ロ,ハ,ニは
本発明を利用して平坦部保持具に心線整列部を保
存させた場合に、心線を一本ずつ平坦部保持具か
ら取り出す心線把持装置の動作説明図である。 1……心線挾持装置、1b,1c……アーム、
1d……柱、1e……エアシリンダ、2……保持
板、2b……切れ込み部、3……平坦部保持具、
3a……切れ込み部、3b……保持体、3c……
連結板、4……丸形多心ケーブル、4a……心
線、4b……外被、5……間隙、6……心線整列
部。
FIGS. 1 to 4 are explanatory diagrams showing the procedure for carrying out the present invention, and FIGS. 5 A, B, C, and D are diagrams showing how the present invention is used to store the core wire alignment part in the flat part holder. FIG. 4 is an explanatory diagram of the operation of the wire gripping device that takes out the wires one by one from the flat portion holder when the wire is pulled out. 1... Core wire clamping device, 1b, 1c... Arm,
1d... Pillar, 1e... Air cylinder, 2... Holding plate, 2b... Notch, 3... Flat part holder,
3a...notch, 3b...holding body, 3c...
Connection plate, 4...Round multi-core cable, 4a...Core, 4b...Sheath, 5...Gap, 6...Core wire alignment section.

Claims (1)

【特許請求の範囲】[Claims] 1 丸形多心ケーブル4を構成している心線群を
平面状に整列させる心線整列方法であつて、外被
4bを剥いだ丸形多心ケーブルの先端側を平行に
離間した一対のアーム1b,1c間に挿通させ、
次いで、前記丸形多心ケーブルを両アーム間の間
隙5に沿つて振動させる一方で、少なくとも片方
のアームを両アームの対向方向に振動させながら
両アームを接近させることによつて、両アーム間
に位置した丸形多心ケーブルの心線群を一列状に
拡げて整列させ、この整列状態を両アームによる
挾持によつて維持させ、次いでスリツト状の切れ
込み部2bに心線を挿通させることによつて心線
群の整列状態を保つ保持板2をアームの直前位置
で心線群に装着し、次いで、丸形多心ケーブルを
アームから基端側に所定長さ引き出すことによつ
て、両アームより先方の心線相互の撚りをほぐす
とともにアームと保持板との間に心線相互が平面
状に整列した所定長さの心線整列部6を形成して
成ることを特徴とする丸形多心ケーブルの心線整
列方法。
1 A fiber alignment method for arranging fiber groups constituting a round multi-core cable 4 in a plane, in which a pair of parallel and spaced apart round multi-core cables are arranged on the tip side of a round multi-core cable with the jacket 4b stripped. Insert between arms 1b and 1c,
Next, the circular multi-core cable is vibrated along the gap 5 between both arms, while at least one arm is vibrated in the opposite direction of both arms, and the arms are brought close to each other. The group of core wires of the round multi-core cable located in the center are spread out and aligned in a line, this aligned state is maintained by being held by both arms, and then the core wires are inserted into the slit-shaped notch 2b. Therefore, by attaching the holding plate 2 that maintains the alignment of the fiber group to the fiber group at a position just in front of the arm, and then pulling out the round multi-core cable a predetermined length from the arm toward the proximal end, both A round shape characterized by untwisting the core wires ahead of the arm and forming a core wire alignment portion 6 of a predetermined length between the arm and the holding plate in which the core wires are aligned in a plane. How to align the cores of a multi-core cable.
JP19844383A 1983-10-24 1983-10-24 Method of aligning core wire of circular multicore cable Granted JPS6091580A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP19844383A JPS6091580A (en) 1983-10-24 1983-10-24 Method of aligning core wire of circular multicore cable

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP19844383A JPS6091580A (en) 1983-10-24 1983-10-24 Method of aligning core wire of circular multicore cable

Publications (2)

Publication Number Publication Date
JPS6091580A JPS6091580A (en) 1985-05-22
JPS6346543B2 true JPS6346543B2 (en) 1988-09-16

Family

ID=16391170

Family Applications (1)

Application Number Title Priority Date Filing Date
JP19844383A Granted JPS6091580A (en) 1983-10-24 1983-10-24 Method of aligning core wire of circular multicore cable

Country Status (1)

Country Link
JP (1) JPS6091580A (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102496889A (en) * 2011-11-24 2012-06-13 山东电力集团公司济南供电公司 Core aligning device for cables

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Publication number Priority date Publication date Assignee Title
JP2533360Y2 (en) * 1990-04-05 1997-04-23 日本電信電話株式会社 Cable subunit separation device
JP6381031B2 (en) * 2014-12-25 2018-08-29 矢崎総業株式会社 Electric wire alignment method and electric wire alignment apparatus
JP6936486B2 (en) * 2017-12-28 2021-09-15 株式会社Hci Cable terminal processing device and cable terminal processing method
JP7334661B2 (en) 2020-03-27 2023-08-29 株式会社プロテリアル Multi-core cable assembly method and multi-core cable assembly manufacturing method

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102496889A (en) * 2011-11-24 2012-06-13 山东电力集团公司济南供电公司 Core aligning device for cables

Also Published As

Publication number Publication date
JPS6091580A (en) 1985-05-22

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