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JP3832678B2 - Method and apparatus for grooving wire rod - Google Patents

Method and apparatus for grooving wire rod Download PDF

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Publication number
JP3832678B2
JP3832678B2 JP21541796A JP21541796A JP3832678B2 JP 3832678 B2 JP3832678 B2 JP 3832678B2 JP 21541796 A JP21541796 A JP 21541796A JP 21541796 A JP21541796 A JP 21541796A JP 3832678 B2 JP3832678 B2 JP 3832678B2
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Japan
Prior art keywords
wire
rotating body
tool holder
cutting
radial direction
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 - Fee Related
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JP21541796A
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Japanese (ja)
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JPH1034266A (en
Inventor
義大 石塚
武美 堤野
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株式会社大平製作所
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Description

【0001】
【発明の属する技術分野】
本発明は、線材の溝加工方法および装置に関する。
【0002】
【従来の技術】
従来の例えば線材屈曲加工機の例として特公平1−56853号公報に示すものは、図1に示す次のようなものであった。即ち、中心部軸方向に長尺の加工素材を通すガイド孔を形成した円筒状の素材ガイド24と、この素材ガイドの外周部に回動自在に設けられ、かつ任意の回動位置に設定される曲げ方向決め体30と、この曲げ方向決め体の前部に上記ガイド孔に対し直交方向の支軸を中心に回動自在に設けられ、かつ、上記素材ガイドの先端に対向して素材挿通部を有する曲げ作動体43と、この曲げ作動体の前面に摺動自在に設けられた切断刃66とを持つ。
【0003】
また、上記曲げ方向決め体30の外周部に軸方向摺動自在に設けられ、かつ、上記曲げ作動体に連結されて摺動により曲げ作動体43を回動する曲げ用ドラム57と、上記曲げ方向決め体30の外周部に軸方向摺動自在に設けられ、かつ、上記切断刃66に連結されて摺動により切断刃を移動する切断用ドラム87と、を備えたものであった。
【0004】
【発明が解決しようとする課題】
しかしながら、前記切断された線材の切断部端面は鋭い角部や“バリ”が残って、それによる人手に対するケガの危険性があった。このため、別工程により、いちいち切断端面を人手により面取り加工を行っていた。
【0005】
本発明はこのように、線材加工において、線材を送る経路の途中で線材の外周面に溝を形成できるような方法および装置を提供することを目的とする。
【0006】
【課題を解決するための手段】
上記課題を解決するため、本発明の構成は次のとおりとする。即ち、取付フレームと、該取付フレームに回転自在に装着されて、回転軸線上に線材の導入を許す導入孔を持つ円柱状の回転本体と、該回転本体の外周面に回り止めされて軸方向に摺動自在に取り付けられた切込スリーブと、前記回転本体の一端面に設けられた半径方向に沿うスリットに対し、半径方向に摺動自在に装着された工具ホルダと、該工具ホルダに着脱自在に装着された溝形成工具と、前記切込スリーブと前記工具ホルダとの間に設けられ、前記切込スリーブの摺動に応じて前記工具ホルダを前記スリットに沿い半径方向に進退させる切込レバーと、前記切込スリーブを前記回転本体に沿って軸方向に進退させる動力往復手段と、前記回転本体の他端に連結された動力回転手段と、前記回転本体の出口側に設置された線材を把持固定するクランプとを含むことである。
【0008】
【発明の実施の形態】
以下に本発明の実施態様を図面に示す一実施例にもとづき説明する。図1において、本装置Bは線材屈曲加工機Cにおいて、線材Aを送る経路の途中で、線材の外周面に円周溝を形成するように設けられる。
【0009】
図2,3,4において、線材屈曲加工機Cの本体に取付フレーム1が固定され、それに円柱状の回転本体2が第1軸受3aを介して回転自在に装着される。該回転本体2は、前記第1軸受3aが嵌合される小径部2aと、その一端側に一体形成された大径部2bとよりなる。そして、この大径部2bの一端面には半径方向に沿うスリット2cが直径上に対向して設けられる。また、回転本体2の回転中心を貫通する中心孔には、第2軸受3bを介して、線材Aの導入を案内する案内筒4が回転自在に挿入される。この案内筒4はその中心軸線上に線材Aを導入案内する導入孔を持つ。
【0010】
該回転本体2の外周面にキー6を介して回り止めされて、切込スリーブ5が軸方向に摺動自在に取り付けられる。該スリーブは2個の円環5aが同心に隙間Gを存して対向して外周で短円筒体5bにより結合されてなる。
【0011】
前記回転本体2の一端面に設けられた半径方向に沿うスリット2cに対し、半径方向に摺動自在に1対の工具ホルダ7が装着される。該工具ホルダ7は、直方体状の本体7aの一端側に刃物台7bが取り付けられ、他端側には前記回転本体のスリットに嵌まるガイド部材7cが一体形成され、その他端面には凹部をもつ係合部材7dが突設される。
【0012】
前記工具ホルダ7に溝形成工具8a、8bが着脱自在に装着される。一方溝形成工具8aは図5のような、先端が小さい半径の丸みを持った切削工具、他方溝形成具8bは図6に示すように、自由回転する押し切り用円板カッター(圧延工具)である。
【0013】
前記切込スリーブ5と前記工具ホルダ7との間に切込レバー9が設けられ、前記切込スリーブ5の摺動に応じて、前記工具ホルダ7を前記スリットに沿い半径方向に進退させる。前記切込レバー9はL字部材9aとそれを中間部で回動自在に支持するピン9bとからなり、L字部材9aの両端は各々前記円環5aの隙間Gおよび係合部材7dに可動自在に嵌る。
【0014】
前記切込スリーブ5を前記回転本体に沿って軸方向に進退させる動力往復手段10は、フレーム1に取り付けられたエアピストンシリンダであり、切込スリーブ5の回転軸線を挟んで上下外周面に臨む。そして、スリーブ5との間に第3軸受3cが介在し、その内輪が前記スリーブ5の短円筒5bを兼ね、外輪がピストンシリンダ10側に固定され、スリーブ5の回転に従い球が転動する。
【0015】
前記回転本体2の他端に連結された動力回転手段11は、回転本体2の他端に固定された従動プーリ11aとそれに係合するベルト11bよりなる。
【0016】
前記回転本体2の線材出口側で、工具ホルダ7よりも線材送り方向前方側には、線材を上下から把持固定するクランプ12が設置される。該クランプは線材屈曲加工機Cの本体から直立したフレーム12aと、それに固定された上挟持片12bおよびピストンシリンダ12dで昇降される下挟持片12cからなる。
【0017】
以上において、装置の作動状態と共に、本発明の方法の実施例を説明する。線材Aをその長さ方向に送り、本発明の装置Bの案内筒4の導入孔を経て、クランプ12の上下挟持片12b、12c間を通過させ、更に、線材屈曲加工機Cの屈曲加工部および切断部に導入する。そしてその位置でクランプ12で固定する。
【0018】
次に動力回転手段11を起動して、回転本体2をその軸心回りに回転させる。また、動力往復手段10を起動し、切込スリーブ5を線材送り方向前方へ摺動させ、前記工具台7bを半径方向内側に送って、工具8を線材まで送り、溝を形成する。このとき、一方の切削工具8aはV溝を円周に切削し、他方の円板カッター8bは線材Aに押し付けられた状態で、自転しながら線材Aの回りを公転するので、前記形成されたV溝の底に対し、塑性変形により、更に鋭く食い込んだ断面V字状の円周溝が形成される。つまり、2段V形円周溝が形成される。
【0019】
次に、回転本体2の回転を止めると共に、切込スリーブ5を線材送り方向後方戻す。溝形成の終わった線材Aをその長さ方向に切断部まで送る。そして、線材Aの前記形成された溝の底で切断する。これにより、線材Aの切断面は面取りされた状態となっている。
【0020】
前記工具8は、回転本体2の半径方向に1対(合計2組)が設けられているが、半径方向で1組でよい場合がある。例えば、先端が丸みの殆んどない極めて鋭い尖った工具を使用する時である。また、切削工具だけか、または圧延工具だけが使用されてもよい。
【0021】
前記工具8を回転本体2の半径方向に送る他の実施例として、公知の楔形パワーチャック、コレットチャックまたはスクロール式チャックなどが利用される。
【0022】
本発明は前記した実施例や実施態様に限定されず、特許請求の精神および範囲を逸脱せずに種々の変形を含む。
【0023】
【発明の効果】
本発明の構成により、線材をその長さ方向に送る経路の途中で、線材の外周面に溝を形成できることとなった。
【図面の簡単な説明】
【図1】 本発明の一実施例を含む線材加工ラインを示す概略正面図である。
【図2】 本発明の一実施例の縦断面図である。
【図3】 図2の右側面図である。
【図4】 図2の分解斜視図である。
【図5】 図2の要部拡大図で、切削工具の正面図である。
【図6】 図2の要部拡大図で、圧延工具の正面図である。
【符号の説明】
A 線材
B 本発明装置
C 線材屈曲加工機
1 取付フレーム
2 回転本体
2a 小径部
2b 大径部
2c 半径溝
3a 第1軸受
3b 第2軸受
3c 第3軸受
4 案内筒
5 切込スリーブ
5a 円環
5b 短円筒体
6 キー
7 工具ホルダ
7a 本体
7b 刃物台
7c ガイド部材
7d 係合部材
8 溝形成工具
9 切込レバー
9a L字部材
9b ピン
10 動力往復手段
11 動力回転手段
11a 従動プーリ
11b ベルト
12 クランプ
12a フレーム
12b 上挟持片
12c 下挟持片
12d ピストンシリンダ
[0001]
BACKGROUND OF THE INVENTION
The present invention relates to a wire groove processing method and apparatus.
[0002]
[Prior art]
What is shown in Japanese Patent Publication No. 1-56853 as an example of a conventional wire bending machine is as shown in FIG. In other words, a cylindrical material guide 24 having a guide hole through which a long work material passes in the axial direction of the central portion, and an outer peripheral portion of the material guide are rotatably provided and set at an arbitrary rotation position. A bending direction determining body 30 and a front portion of the bending direction determining body provided so as to be rotatable about a support shaft orthogonal to the guide hole, and through the material guide facing the tip of the material guide. And a cutting blade 66 slidably provided on the front surface of the bending operation body.
[0003]
Further, a bending drum 57 is provided on the outer periphery of the bending direction determining body 30 so as to be slidable in the axial direction, and is connected to the bending operation body and rotates the bending operation body 43 by sliding, and the bending A cutting drum 87 is provided on the outer periphery of the directional body 30 so as to be slidable in the axial direction, and is connected to the cutting blade 66 and moves the cutting blade by sliding.
[0004]
[Problems to be solved by the invention]
However, sharp edges and “burrs” remain on the end face of the cut wire, and there is a risk of injury to human hands. For this reason, the cut end face was manually chamfered by a separate process.
[0005]
Thus, the present invention has an object to provide a method and an apparatus capable of forming a groove on the outer peripheral surface of a wire in the course of a wire feeding path in wire processing.
[0006]
[Means for Solving the Problems]
In order to solve the above problems, the configuration of the present invention is as follows. That is, a mounting frame, a columnar rotating body that is rotatably mounted on the mounting frame and has an introduction hole that allows the introduction of a wire on the rotation axis, and an axial direction that is prevented from rotating on the outer peripheral surface of the rotating body A tool sleeve that is slidably mounted in a radial direction with respect to a slit along the radial direction provided on one end surface of the rotary body, and a detachable attachment to the tool holder. A groove forming tool that is freely mounted, and a notch that is provided between the notch sleeve and the tool holder, and advances and retracts the tool holder in the radial direction along the slit according to the sliding of the notch sleeve. A lever, a power reciprocating means for moving the cutting sleeve back and forth in the axial direction along the rotating body, a power rotating means connected to the other end of the rotating body, and a wire installed on the outlet side of the rotating body Gripping solid It is to include a clamp that.
[0008]
DETAILED DESCRIPTION OF THE INVENTION
Embodiments of the present invention will be described below based on an embodiment shown in the drawings. In FIG. 1, the apparatus B is provided in a wire bending machine C so as to form a circumferential groove on the outer peripheral surface of the wire in the middle of the path for feeding the wire A.
[0009]
2, 3, and 4, the mounting frame 1 is fixed to the main body of the wire bending machine C, and the columnar rotary body 2 is rotatably mounted via the first bearing 3 a. The rotary body 2 includes a small-diameter portion 2a to which the first bearing 3a is fitted, and a large-diameter portion 2b integrally formed on one end side thereof. And the slit 2c along a radial direction is provided in the one end surface of this large diameter part 2b facing on a diameter. A guide tube 4 that guides the introduction of the wire A is rotatably inserted into the center hole that passes through the rotation center of the rotary body 2 via the second bearing 3b. The guide tube 4 has an introduction hole for introducing and guiding the wire A on the central axis.
[0010]
The cutting sleeve 5 is attached to the outer peripheral surface of the rotary body 2 via a key 6 so as to be slidable in the axial direction. The sleeve is formed by two annular rings 5a concentrically facing each other with a gap G therebetween and coupled by a short cylindrical body 5b on the outer periphery.
[0011]
A pair of tool holders 7 is attached to a slit 2c along the radial direction provided on one end surface of the rotary body 2 so as to be slidable in the radial direction. The tool holder 7 has a tool post 7b attached to one end of a rectangular parallelepiped main body 7a, a guide member 7c that fits into a slit of the rotating main body formed integrally with the other end, and a recess formed on the other end face. The engaging member 7d is protruded.
[0012]
Groove forming tools 8 a and 8 b are detachably mounted on the tool holder 7. On the other hand, the groove forming tool 8a is a cutting tool having a rounded tip with a small radius as shown in FIG. 5, and the groove forming tool 8b is a free-cutting rotary disk cutter (rolling tool) as shown in FIG. is there.
[0013]
A cutting lever 9 is provided between the cutting sleeve 5 and the tool holder 7, and the tool holder 7 is advanced and retracted in the radial direction along the slit in accordance with the sliding of the cutting sleeve 5. The incision lever 9 is composed of an L-shaped member 9a and a pin 9b that rotatably supports the L-shaped member 9a at its intermediate portion. Fits freely.
[0014]
The power reciprocating means 10 for moving the cutting sleeve 5 back and forth in the axial direction along the rotary body is an air piston cylinder attached to the frame 1 and faces the upper and lower outer peripheral surfaces with the rotation axis of the cutting sleeve 5 interposed therebetween. . The third bearing 3 c is interposed between the sleeve 5 and the inner ring also serving as the short cylinder 5 b of the sleeve 5, the outer ring is fixed to the piston cylinder 10, and the ball rolls as the sleeve 5 rotates.
[0015]
The power rotating means 11 connected to the other end of the rotating body 2 includes a driven pulley 11a fixed to the other end of the rotating body 2 and a belt 11b engaged therewith.
[0016]
A clamp 12 that holds and fixes the wire from above and below is provided on the wire exit side of the rotating body 2 and on the front side in the wire feed direction from the tool holder 7. The clamp is composed of a frame 12a upright from the main body of the wire bending machine C, an upper clamping piece 12b fixed to the frame 12a, and a lower clamping piece 12c which is moved up and down by a piston cylinder 12d.
[0017]
In the above, embodiments of the method of the present invention are described along with the operating state of the apparatus. The wire A is fed in its length direction, passed between the upper and lower clamping pieces 12b and 12c of the clamp 12 through the introduction hole of the guide tube 4 of the apparatus B of the present invention, and further the bending portion of the wire bending machine C And introduced into the cutting part. And it fixes with the clamp 12 in the position.
[0018]
Next, the power rotating means 11 is activated to rotate the rotating body 2 around its axis. Further, the power reciprocating means 10 is activated, the cutting sleeve 5 is slid forward in the wire feed direction, the tool base 7b is sent inward in the radial direction, and the tool 8 is sent to the wire to form a groove. At this time, one of the cutting tools 8a cuts the V-groove around the circumference, and the other disk cutter 8b revolves around the wire A while rotating while being pressed against the wire A, so that the formed A circumferential groove having a V-shaped cross-section that is further sharply cut into the bottom of the V-groove is formed by plastic deformation. That is, a two-stage V-shaped circumferential groove is formed.
[0019]
Next, the rotation of the rotary body 2 is stopped and the cutting sleeve 5 is returned backward in the wire feed direction. The wire A after the groove formation is sent to the cutting part in the length direction. Then, the wire A is cut at the bottom of the formed groove. Thereby, the cut surface of the wire A is in a chamfered state.
[0020]
One pair (two sets in total) of the tool 8 is provided in the radial direction of the rotary body 2, but one set may be sufficient in the radial direction. For example, when using a very sharp pointed tool with little rounded tip. Also, only cutting tools or only rolling tools may be used.
[0021]
As another embodiment for feeding the tool 8 in the radial direction of the rotary body 2, a known wedge-shaped power chuck, collet chuck or scroll chuck is used.
[0022]
The present invention is not limited to the above-described embodiments and embodiments, but includes various modifications without departing from the spirit and scope of the claims.
[0023]
【The invention's effect】
According to the configuration of the present invention, a groove can be formed on the outer peripheral surface of the wire in the middle of the path for feeding the wire in the length direction.
[Brief description of the drawings]
FIG. 1 is a schematic front view showing a wire processing line including an embodiment of the present invention.
FIG. 2 is a longitudinal sectional view of an embodiment of the present invention.
FIG. 3 is a right side view of FIG. 2;
4 is an exploded perspective view of FIG. 2. FIG.
FIG. 5 is an enlarged view of a main part of FIG. 2 and a front view of the cutting tool.
6 is an enlarged view of a main part of FIG. 2 and a front view of the rolling tool.
[Explanation of symbols]
A Wire rod B Invention device C Wire bending machine 1 Mounting frame 2 Rotating body 2a Small diameter portion 2b Large diameter portion 2c Radial groove 3a First bearing 3b Second bearing 3c Third bearing 4 Guide cylinder 5 Cutting sleeve 5a Annulus 5b Short cylinder 6 Key 7 Tool holder 7a Main body 7b Tool post 7c Guide member 7d Engaging member 8 Groove forming tool 9 Cutting lever 9a L-shaped member 9b Pin 10 Power reciprocating means 11 Power rotating means 11a Drive pulley 11b Belt 12 Clamp 12a Frame 12b Upper clamping piece 12c Lower clamping piece 12d Piston cylinder

Claims (1)

取付フレームと、
該取付フレームに回転自在に装着されて、回転軸線上に線材の導入を許す導入孔を持つ円柱状の回転本体と、
該回転本体の外周面に回り止めされて軸方向に摺動自在に取り付けられた切込スリーブと、
前記回転本体の一端面に設けられた半径方向に沿うスリットに対し、半径方向に摺動自在に装着された工具ホルダと、
該工具ホルダに着脱自在に装着された溝形成工具と、
前記切込スリーブと前記工具ホルダとの間に設けられ、前記切込スリーブの摺動に応じて前記工具ホルダを前記スリットに沿い半径方向に進退させる切込レバーと、
前記切込スリーブを前記回転本体に沿って軸方向に進退させる動力往復手段と、
前記回転本体の他端に連結された動力回転手段と、
前記回転本体の出口側に設置された線材を把持固定するクランプとを含むことを特徴とする線材の溝加工装置。
A mounting frame;
A cylindrical rotating body that is rotatably mounted on the mounting frame and has an introduction hole that allows introduction of a wire rod on the rotation axis;
A cutting sleeve that is prevented from rotating on the outer peripheral surface of the rotating body and is slidably attached in the axial direction;
A tool holder that is slidably mounted in a radial direction with respect to a slit along the radial direction provided on one end surface of the rotating body;
A groove forming tool detachably attached to the tool holder;
A cutting lever that is provided between the cutting sleeve and the tool holder and moves the tool holder in a radial direction along the slit in accordance with the sliding of the cutting sleeve;
Power reciprocating means for advancing and retracting the cutting sleeve in the axial direction along the rotary body;
Power rotating means connected to the other end of the rotating body;
A wire grooving apparatus comprising: a clamp for gripping and fixing a wire installed on the outlet side of the rotating body.
JP21541796A 1996-07-26 1996-07-26 Method and apparatus for grooving wire rod Expired - Fee Related JP3832678B2 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP21541796A JP3832678B2 (en) 1996-07-26 1996-07-26 Method and apparatus for grooving wire rod

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP21541796A JP3832678B2 (en) 1996-07-26 1996-07-26 Method and apparatus for grooving wire rod

Publications (2)

Publication Number Publication Date
JPH1034266A JPH1034266A (en) 1998-02-10
JP3832678B2 true JP3832678B2 (en) 2006-10-11

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Family Applications (1)

Application Number Title Priority Date Filing Date
JP21541796A Expired - Fee Related JP3832678B2 (en) 1996-07-26 1996-07-26 Method and apparatus for grooving wire rod

Country Status (1)

Country Link
JP (1) JP3832678B2 (en)

Also Published As

Publication number Publication date
JPH1034266A (en) 1998-02-10

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