JPH01268107A - Winding device - Google Patents

Winding device

Info

Publication number
JPH01268107A
JPH01268107A JP63097074A JP9707488A JPH01268107A JP H01268107 A JPH01268107 A JP H01268107A JP 63097074 A JP63097074 A JP 63097074A JP 9707488 A JP9707488 A JP 9707488A JP H01268107 A JPH01268107 A JP H01268107A
Authority
JP
Japan
Prior art keywords
winding
core
coil
wire
wound
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.)
Granted
Application number
JP63097074A
Other languages
Japanese (ja)
Other versions
JPH071748B2 (en
Inventor
Hiroyuki Takeshita
竹下 弘行
Toshiaki Yamashita
敏明 山下
Takashi Yano
谷野 隆
Toshio Kuwabara
桑原 俊雄
Shinji Okuda
奥田 伸治
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.)
Panasonic Holdings Corp
Original Assignee
Matsushita Electric Industrial Co 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 Matsushita Electric Industrial Co Ltd filed Critical Matsushita Electric Industrial Co Ltd
Priority to JP63097074A priority Critical patent/JPH071748B2/en
Publication of JPH01268107A publication Critical patent/JPH01268107A/en
Publication of JPH071748B2 publication Critical patent/JPH071748B2/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

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  • Coil Winding Methods And Apparatuses (AREA)

Abstract

PURPOSE:To manufacture an air-core coil of free length without cutting the coil by winding a wire on a winding core without twisting the wire by rotating a filter and a spool at one time while keeping the winding core not slided toward axis direction so as to slide only the flier toward axis direction. CONSTITUTION:When a motor 21 shifts a main body 4b a predetermined distance toward a spool side through a ball screw 20, a wire 8b is wound on a wound core 2b into a coil form while a holder 13 and said wound core 2b remain static because of magnets 12a and 12b. After the winding of a predetermined distance, the motor 22 slides the wound core 2b in the same direction as described above through a ball screw 18 and a disc 17. As a result, a coil 3b wound around the wound core 2b becomes being drawn out its core and thus an air-core coil is formed. Lastly, the main body 4b and the wound core 2b are slided in the direction opposite to a spool 7b at one time so that they return to their predetermined positions. By repeating the above operations, an air-core coil of free length can be formed without cutting the wire 8b halfway.

Description

【発明の詳細な説明】 産業上の利用分野 本発明は円筒型空芯コイルなどの巻線装置に関するもの
である。
DETAILED DESCRIPTION OF THE INVENTION Field of the Invention The present invention relates to a winding device such as a cylindrical air core coil.

従来の技術 従来この種の巻線装置では第2図のような構造となって
いた。すなわち巻芯2aを水平方向に動かないように固
定し、その軸の円周方向に回転可能、かつ巻芯2aのク
ラスl一方向(長手方向)に3 へ−7 相対的スライド運動できるように本体4にベアリング5
を介して取付けたフライヤ1aよ多構成され、フライヤ
1aを回転しつつ軸のスラスト方向へスライドベアリン
グ6によシスライド(摺動)させることで巻芯2aにス
プール7から供給される線材8aをコイル状に巻線して
コイル3を得る構成となっていた。
2. Description of the Related Art Conventionally, this type of winding device has a structure as shown in FIG. That is, the winding core 2a is fixed so as not to move in the horizontal direction, is rotatable in the circumferential direction of its shaft, and is capable of relative sliding movement in one direction (longitudinal direction) of the winding core 2a. Bearing 5 on main body 4
The wire rod 8a supplied from the spool 7 is fed to the winding core 2a by rotating the flyer 1a and sliding it on the slide bearing 6 in the thrust direction of the shaft. The structure was such that the coil 3 was obtained by winding the wire into a coil shape.

発明が解決しようとする課題 しかし、このような構造ではスラスト景に比例した量の
コイル3しか巻線できず、長いコイル3を作る場合は必
然的に装置が大型化する傾向にあシ、従ってコイル長さ
にも限界が生じていた。
Problems to be Solved by the Invention However, with such a structure, only the amount of coil 3 that can be wound is proportional to the thrust profile, and when making a long coil 3, there is a tendency for the device to inevitably become larger. There was also a limit to the length of the coil.

本発明はこのような従来の欠点′を除去した、エンドレ
スに巻線可能な巻線装置を提供することを目的とするも
のである。
It is an object of the present invention to provide a winding device capable of endless winding, which eliminates these conventional drawbacks.

課題を解決するだめの手段 上記の課題を解決するために、本発明では、本体に対し
巻軸方向へスライド可能な巻芯と、巻芯に対して円周方
向に回転可能かつ巻芯に対して軸方向へ相対運動が可能
なフライヤ、さらにフライヤの回転方向と同一方向へ回
転可能な線4シを供給するスプールによ多構成されてい
る。
Means for Solving the Problems In order to solve the above problems, the present invention provides a core that is slidable in the direction of the winding axis with respect to the main body, and a core that is rotatable in the circumferential direction with respect to the core and that is rotatable in the circumferential direction with respect to the core. The flyer is movable relative to the flyer in the axial direction, and the spool supplies a wire 4 that is rotatable in the same direction as the flyer.

作用 以」二のように巻芯を軸方向へスライドさせない状態で
フライヤとスプールを同時に回転させてフライヤのみ軸
方向へスライドさせれば、線4.Jをねじることなく巻
芯に巻線することができる。さらに任意の長さに巻線を
行った後、フライヤとボビンを固定し、巻芯のみを巻線
方向へスライドさせれば、巻芯よシ巻線されだ線4fl
がコイル状に分離し、コイルが一定量できる。
If the flyer and spool are rotated at the same time and only the flyer slides in the axial direction without the winding core sliding in the axial direction as shown in ``2'', line 4. J can be wound around the core without twisting. Furthermore, after winding the wire to the desired length, if the flyer and bobbin are fixed and only the winding core is slid in the winding direction, the winding edge wire will be 4fl along the winding core.
separates into coils, producing a certain amount of coils.

以上の動作を繰シ返し打うことによシ、コイルを切断す
ることなく自由な長さの空芯コイルを生産することが可
能である。
By repeating the above operation, it is possible to produce an air-core coil of any length without cutting the coil.

実施例 以下本発明の一実施例を図面を参照して説明する。Example An embodiment of the present invention will be described below with reference to the drawings.

第1図に示すように巻芯2bはベアリング16を介して
ホルダー13に固定され回り止め11により、ホルダー
13と巻芯2bは相対的に回転し5t・−/ ないよう設置され、さらにスラスト方向(軸方向)には
円板17及びボールネジ18によシ直線スライド運動可
能となっている。
As shown in FIG. 1, the winding core 2b is fixed to the holder 13 via a bearing 16, and is installed so that the holder 13 and the winding core 2b do not rotate relative to each other by a rotation stopper 11, and further in the thrust direction. (In the axial direction), a disk 17 and a ball screw 18 allow linear sliding movement.

ホルダー13はベアリング15を介してフライヤ1bに
固定されホルダー13の円周方向には回シ止め用に磁石
12&が取付けられている。寸だフライヤ1bはベアリ
ング14を介して本体4bに固定されている。本体4b
には磁石121Lと対向するように磁石12bが取付け
られてあシ、この磁石12bによシホルダー13が回転
しないようになっている。さらに本体4bはスライドベ
アリング19とボールネジ2oによ9巻軸方向へスライ
ド可能である。
The holder 13 is fixed to the flyer 1b via a bearing 15, and a magnet 12& is attached to the circumferential direction of the holder 13 to prevent rotation. The size fryer 1b is fixed to the main body 4b via a bearing 14. Main body 4b
A magnet 12b is attached to the reel so as to face the magnet 121L, and the reel holder 13 is prevented from rotating due to the magnet 12b. Furthermore, the main body 4b can be slid in the direction of the nine winding shafts by means of a slide bearing 19 and a ball screw 2o.

線材8bはスプール7bより供給され、このスプール7
bはモータ23によシフライヤ1bと同期して同一方向
に回転し、このスプール7bからの線材8bは円板17
の孔を通り磁石121L及び12bの間を抜はフライヤ
1bの内部を通過し巻芯2bへ導かれる。捷ずモータ2
4によシギャ25を介してフライヤ1bを回転しつつモ
ータ6 /・−/ 21によシボールネジ20を介して本体4bをスプール
側へ所定の距離移動させると、ホルダー13と巻芯2b
は磁石12a 、 12bによシ静止したまま巻芯2b
に線材8bがコイル状に巻き付けられる。所定の距離だ
け巻線を行った後、モータ22によシボールネジ181
円板17によシ巻芯2bを上記と同一方向へスライドさ
せれば巻芯2bに巻かれたコイル3bは、そのままの状
態で芯を抜かれる形となシ空芯コイルができる。そして
最後に本体4bと巻芯2bをスプール7bとは逆方向へ
同時にスライドさせ所定の位置まで戻る。
The wire rod 8b is supplied from the spool 7b, and this spool 7
b is rotated by the motor 23 in synchronization with the sifter 1b in the same direction, and the wire rod 8b from this spool 7b is rotated by the disc 17.
The material passes through the hole between the magnets 121L and 12b, passes through the inside of the flyer 1b, and is guided to the winding core 2b. Switchless motor 2
When the main body 4b is moved a predetermined distance to the spool side via the ball screw 20 by the motor 6 /...-/ 21 while rotating the flyer 1b via the gear 25, the holder 13 and the winding core 2b are moved.
The winding core 2b remains stationary due to the magnets 12a and 12b.
The wire rod 8b is wound into a coil shape. After winding a predetermined distance, the ball screw 181 is attached to the motor 22.
If the winding core 2b is slid on the disc 17 in the same direction as described above, the coil 3b wound around the winding core 2b can be removed without changing its core, thereby forming an air-core coil. Finally, the main body 4b and the winding core 2b are simultaneously slid in the direction opposite to the spool 7b and returned to a predetermined position.

以上の動作を繰シ返せば途中で線材8bを切断すること
もなく、自由な長さの空芯コイルを作ることができる。
By repeating the above operations, an air-core coil of any length can be made without cutting the wire 8b midway.

さらに、巻線を行った後、フライヤ1bを巻線時の回転
方向とは逆方向へ回転させることでコイル3bのねじれ
防止、かつ巻芯2bからのコイル3bの着脱を容易にす
ることも可能であシ、また巻芯2bに巻線を行いつつ巻
芯2bを軸方向へ前後スライドさせることを連続的に行
うことで、連続したコイルを巻線可能であシ、こ7 ヘ
−ノ れをリール26に巻取ることもできる。
Furthermore, after winding, it is possible to prevent the coil 3b from twisting and to facilitate attachment and detachment of the coil 3b from the winding core 2b by rotating the flyer 1b in the opposite direction to the direction of rotation during winding. Also, by continuously sliding the winding core 2b back and forth in the axial direction while winding the winding core 2b, it is possible to wind a continuous coil. can also be wound onto the reel 26.

発明の効果 本発明によれば、従来のような短かいコイルしかできな
かったものが任意の長さのコイルを作ることができるば
かりでなく、エンドレスなコイルを装置サイズを大きく
することなく巻線可能となる。さらにエンドレスなコイ
ルを渦巻状に巻取れば一層の省スペース化が可能であり
設備をよシ小さくすることができることになる。
Effects of the Invention According to the present invention, not only can a coil of any length be made instead of the conventional method where only short coils can be made, but also endless coils can be wound without increasing the size of the equipment. It becomes possible. Furthermore, by spirally winding an endless coil, it is possible to further save space and make the equipment even smaller.

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

第1図は本発明の縦断面図、第2図は従来の巻線方式の
概略断面図である。 1b・−・・・フライヤ、2b・・・・巻芯、3b・・
・・・コイノペ4b・・ 本体、7b・・・・スプール
、11・・・・・回り止め、12a、12b  ・磁石
、13・・・・ホルダー、14・・・・・ベアリング、
15・・・・・ベアリング、16・・・・・ベアリング
、17・・ 円板、18・・・・・ボールネジ、19 
・−スライドベアリング、20・・・−ボールネジ、2
1〜24・・・モータ、26・・・・・・ギヤ、26 
・・−・リール。
FIG. 1 is a longitudinal sectional view of the present invention, and FIG. 2 is a schematic sectional view of a conventional winding system. 1b... flyer, 2b... winding core, 3b...
... Koinope 4b... Main body, 7b... Spool, 11... Rotation stopper, 12a, 12b - Magnet, 13... Holder, 14... Bearing,
15... Bearing, 16... Bearing, 17... Disc, 18... Ball screw, 19
・-Slide bearing, 20...-Ball screw, 2
1 to 24...Motor, 26...Gear, 26
...-Reel.

Claims (6)

【特許請求の範囲】[Claims] (1)線材が巻かれ、軸方向に回転可能なスプールと、
スプールからの線材をガイドし、巻芯の回りを回転可能
かつ軸方向にスライド可能なフライヤと、さらに軸方向
にスライド可能な巻芯より成り、スプールから供給され
る線材をねじることなく巻芯にコイル状に巻くように構
成した巻線装置。
(1) A spool wound with wire and rotatable in the axial direction;
It consists of a flyer that guides the wire from the spool and can rotate around the winding core and slide in the axial direction, and a winding core that can further slide in the axial direction, allowing the wire supplied from the spool to be attached to the winding core without twisting. A winding device configured to wind into a coil.
(2)一定長さの巻芯に巻線を行い、巻芯とコイルを軸
方向にスライドし、巻芯とコイルとを分離し空芯状コイ
ルを作り、さらに巻芯に巻線を行うことを繰り返すこと
で、エンドレスな空芯コイルを製作することを可能とし
た請求項1記載の巻線装置。
(2) Winding a wire around a core of a certain length, sliding the core and coil in the axial direction, separating the core and coil to create an air-core coil, and then winding the core again. The winding device according to claim 1, wherein an endless air-core coil can be manufactured by repeating the steps.
(3)巻芯を磁力により非接触的に回転しないように固
定しフライヤを巻芯の回りに回転させることで巻線を行
うようにした請求項1記載の巻線装置。
(3) The winding device according to claim 1, wherein the winding core is fixed non-contactly so as not to rotate by magnetic force, and the flyer is rotated around the winding core to perform winding.
(4)巻芯に巻線を行った後、フライヤを巻線時回転方
向とは逆方向へ回転させるようにした請求項1記載の巻
線装置。
(4) The winding device according to claim 1, wherein after winding the winding core, the flyer is rotated in a direction opposite to the direction of rotation during winding.
(5)巻芯に巻線を行いつつ巻芯を軸方向へ前後スライ
ドさせることを連続的に行うことで、連続的にコイルを
巻線するようにした請求項1記載の巻線装置。
(5) The winding device according to claim 1, wherein the coil is continuously wound by continuously sliding the winding core back and forth in the axial direction while winding the winding core.
(6)エンドレスに巻線されたコイルを切断することな
くリール状に巻取り収納する機能を有した請求項2記載
の巻線装置。
(6) The winding device according to claim 2, which has a function of winding and storing the endlessly wound coil into a reel without cutting it.
JP63097074A 1988-04-20 1988-04-20 Winding device Expired - Fee Related JPH071748B2 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP63097074A JPH071748B2 (en) 1988-04-20 1988-04-20 Winding device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP63097074A JPH071748B2 (en) 1988-04-20 1988-04-20 Winding device

Publications (2)

Publication Number Publication Date
JPH01268107A true JPH01268107A (en) 1989-10-25
JPH071748B2 JPH071748B2 (en) 1995-01-11

Family

ID=14182493

Family Applications (1)

Application Number Title Priority Date Filing Date
JP63097074A Expired - Fee Related JPH071748B2 (en) 1988-04-20 1988-04-20 Winding device

Country Status (1)

Country Link
JP (1) JPH071748B2 (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2014222720A (en) * 2013-05-14 2014-11-27 Tanac株式会社 Flyer type winding apparatus

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2014222720A (en) * 2013-05-14 2014-11-27 Tanac株式会社 Flyer type winding apparatus

Also Published As

Publication number Publication date
JPH071748B2 (en) 1995-01-11

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