JP2007268573A - Method for manufacturing arcuate coil spring - Google Patents

Method for manufacturing arcuate coil spring Download PDF

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JP2007268573A
JP2007268573A JP2006098420A JP2006098420A JP2007268573A JP 2007268573 A JP2007268573 A JP 2007268573A JP 2006098420 A JP2006098420 A JP 2006098420A JP 2006098420 A JP2006098420 A JP 2006098420A JP 2007268573 A JP2007268573 A JP 2007268573A
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arc
spring
coil spring
manufacturing
forming
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JP5014660B2 (en
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Kuniki Morita
国樹 森田
Masami Abe
正美 阿部
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Murata Spring Co Ltd
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Murata Spring Co Ltd
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  • Springs (AREA)
  • Wire Processing (AREA)
  • Heat Treatment Of Articles (AREA)
  • Mechanical Operated Clutches (AREA)

Abstract

<P>PROBLEM TO BE SOLVED: To easily form an arcuate coil spring from a straight coil spring. <P>SOLUTION: In a method for forming the straight coil spring into an arcuate shape, the spring is held in a curved state by inserting an arcuate core bar into the side of the inside diameter of a coil and heat treatment is performed. <P>COPYRIGHT: (C)2008,JPO&INPIT

Description

本発明は、例えばクラッチディスク等に使用するアーク状コイルスプリングの製造方法に関する。   The present invention relates to a method of manufacturing an arc coil spring used for, for example, a clutch disk.

従来のアークスプリングの製造は、冷間にて直線状のコイルスプリング3の外周側の各ピッチ間にくさび状治具を打ち込んで強制的に広げアーク状に成形する方法、又はアーク状の溝に直線状のコイルスプリングを勘合させ熱処理を行いアーク状に成形する方法がある。   A conventional arc spring is manufactured by a method in which a wedge-shaped jig is driven between the pitches on the outer peripheral side of the linear coil spring 3 in a cold state to forcibly spread it into an arc shape, or in an arc-shaped groove. There is a method of forming an arc shape by fitting a linear coil spring and performing a heat treatment.

従来の製造方法を開示していう文献としては、特許文献1−17がある。
特開平01−027290 実開平05−044339 特開平07−001065 特開平08−004835 特開平08−093852 特開平08−105508 特開平08−121535 特開平08−135704 特開平08−224632 特開平10−237546 特開平11−019743 特表平11−500668 特開2000−129359 特開2003−181581 WO 91/06785 USP 5052664 EP 0584474A1
Patent Documents 1-17 are documents that disclose conventional manufacturing methods.
JP-A-01-027290 Japanese Utility Model 05-05339 JP 07-001065 A JP 08-004835 A JP 08-0935852 JP 08-105508 A JP 08-121535 A JP 08-135704 A JP 08-224632 A JP-A-10-237546 JP-A-11-019743 11-500668 JP 2000-129359 A JP2003-181581 WO 91/06785 USP 5052664 EP 058474474A1

しかし、くさび状治具による成形は作業性が悪い上、くさび状治具でコイルスプリング表面を傷つけるおそれがあり耐久性の低下に繋がる。また、直線状のコイルスプリングをアーク状の溝に勘合する方法は装置が大掛かりとなる欠点がある。更に両者ともスプリング溝2に勘合するように一定の曲率半径に成形することが難しい。もし、アーク状コイルスプリング4が一定の曲率半径で成形されていないとコイルスプリング溝2との摩擦抵抗が大きくなりクラッチとしての機能が発揮されない恐れがある。   However, forming with a wedge-shaped jig has poor workability, and the wedge-shaped jig may damage the surface of the coil spring, leading to a decrease in durability. Further, the method of fitting the linear coil spring into the arc-shaped groove has a drawback that the apparatus becomes large. Furthermore, it is difficult to form both with a constant radius of curvature so as to fit into the spring groove 2. If the arc-shaped coil spring 4 is not formed with a constant radius of curvature, the frictional resistance with the coil spring groove 2 is increased and the function as a clutch may not be exhibited.

本発明によると、上記課題が、直線状のコイルスプリングをアーク状に成形する方法において、コイル内径側にアーク状の芯金を挿入することによってばねを湾曲した状態に保ち熱処理することを特徴とする製造方法を提供することによって、解決される。   According to the present invention, the above-mentioned problem is characterized in that, in the method of forming a linear coil spring into an arc shape, the spring is kept in a curved state by inserting an arc-shaped cored bar on the inner diameter side of the coil and heat-treated. This is solved by providing a manufacturing method.

例えば、アーク成形に先立って、直線状のコイルスプリングを所定の温度と時間で加熱する第1の熱処理工程、アーク成形に先立って、ばね端部の研削をする工程、直線状のコイルスプリングをアーク状に成形するためコイル内径側にアーク状の芯金を挿入することによってばねを湾曲した状態に保ち所定の温度と時間で低温焼なまし処理する工程、及びアーク成形工程の後に、ショットピーニング等の強化処理工程と、この工程が完了した前記コイルスプリングを所定の温度と時間で低温焼なまし処理する工程を有する。   For example, a first heat treatment step of heating a linear coil spring at a predetermined temperature and time prior to arc forming, a step of grinding a spring end prior to arc forming, and arcing a linear coil spring Shot peening etc. after the arc forming process after the arc forming process to keep the spring in a curved state by inserting an arc cored bar on the inner diameter side of the coil And a step of low-temperature annealing the coil spring after completion of this step at a predetermined temperature and time.

本発明の製造方法によれば、過大な力を加えることなくアーク状芯金の曲率半径を最適形状とすることにより最終製品として一定な曲率半径を有するアーク状コイルスプリングが容易に得られる。   According to the manufacturing method of the present invention, an arc-shaped coil spring having a constant radius of curvature can be easily obtained as a final product by setting the radius of curvature of the arc-shaped cored bar to an optimum shape without applying excessive force.

発明の実施形態Embodiment of the Invention

以下に本発明の一実施形態を図に基づいて説明する。   Hereinafter, an embodiment of the present invention will be described with reference to the drawings.

図1は、本発明により製造したアーク状コイルスプリングを示す。   FIG. 1 shows an arc coil spring made according to the present invention.

図2は本発明の製造方法による、直線状のコイルスプリング3にアーク状芯金5を挿入した状態である。   FIG. 2 shows a state in which the arc-shaped metal core 5 is inserted into the linear coil spring 3 according to the manufacturing method of the present invention.

例えば、図4に示したとおり、トルク伝達用のクラッチディスクには複数のコイルスプリング3を取付けるための円弧状のスプリング溝2が設けられている。この溝に挿入するコイルスプリング3を、図2に示したとおりに、前記スプリング溝2に適合するように直線状のコイルスプリング3のコイル内径側にアーク状の芯金5を挿入した状態で所定の温度と時間で低温焼なまし処理を施す工程、アーク成形後ショットピーニング等の強化処理を施す工程、及び前述の工程が完了した前記コイルスプリング4を所定の温度と時間で低温焼なまし処理を施す工程によりアーク状コイルスプリング4を成形する。アーク状芯金5の断面は、丸線または矩形断面等任意の断面が使用できる。   For example, as shown in FIG. 4, a torque transmitting clutch disk is provided with arc-shaped spring grooves 2 for attaching a plurality of coil springs 3. As shown in FIG. 2, the coil spring 3 to be inserted into the groove is predetermined in a state in which an arc-shaped cored bar 5 is inserted on the inner diameter side of the linear coil spring 3 so as to fit the spring groove 2. A step of performing a low temperature annealing treatment at a temperature and a time of time, a step of performing a strengthening treatment such as shot peening after arc forming, and a low temperature annealing treatment of the coil spring 4 that has completed the above steps at a predetermined temperature and time. The arc-shaped coil spring 4 is formed by the process of applying. As the cross section of the arc-shaped metal core 5, any cross section such as a round line or a rectangular cross section can be used.

また、このアーク状芯金を一定の曲率半径にしてアーク状コイルスプリング4を成形すると両端部の曲率半径は、中央部のそれより大きくなり一定の曲率を有するアーク状コイルスプリングが成形できない。図3に示したとおり、そのためあらかじめアーク状芯金5の両側の端部5b,5cの曲率半径Rを中央部5aの曲率半径Rより暫時小さく成形しておくことにより、一定の曲率半径を有するアーク状コイルスプリング4が成形できる。   Further, when the arc-shaped coil spring 4 is formed with the arc-shaped cored bar having a constant radius of curvature, the radius of curvature at both ends becomes larger than that of the central portion, and an arc-shaped coil spring having a constant curvature cannot be formed. As shown in FIG. 3, the curvature radius R of the end portions 5b and 5c on both sides of the arc-shaped metal core 5 is previously formed to be smaller than the curvature radius R of the central portion 5a in advance, thereby having a constant curvature radius. An arc coil spring 4 can be formed.

また、直線状のコイルスプリング3には、アーク状芯金5の平面上の拘束のみでありコイルスプリングの周方向の拘束はないため平面度が良い安定したアーク状コイルスプリング4が成形できる。   Further, since the linear coil spring 3 is only constrained on the plane of the arc-shaped metal core 5 and is not constrained in the circumferential direction of the coil spring, a stable arc-shaped coil spring 4 with good flatness can be formed.

本発明により製造したアーク状コイルスプリングを示す図。The figure which shows the arc-shaped coil spring manufactured by this invention. 本発明のアーク成形(芯金挿入)状態を示す図。The figure which shows the arc shaping | molding (core metal insertion) state of this invention. 芯金の曲率半径を示す図。The figure which shows the curvature radius of a metal core. クラッチディスクの正面図。The front view of a clutch disk.

符号の説明Explanation of symbols

1 クラッチディスク
2 スプリング溝
3 コイルスプリング
4 アーク状コイルスプリング
5 アーク状芯金
5a 芯金の中央部
5b 芯金の端部
5c 芯金の端部
DESCRIPTION OF SYMBOLS 1 Clutch disc 2 Spring groove 3 Coil spring 4 Arc-shaped coil spring 5 Arc-shaped metal core 5a Center part 5b of metal core End 5c of metal core End of metal core

Claims (7)

直線状のコイルスプリングをアーク状に成形する方法において、コイル内径側にアーク状の芯金を挿入することによってばねを湾曲した状態に保ち熱処理することを特徴とする製造方法。   A method of forming a linear coil spring into an arc shape, wherein an arc-shaped cored bar is inserted on the inner diameter side of the coil to heat the spring while keeping it in a curved state. 上記アーク成形時に用いる芯金の曲率半径がコイルスプリング中央部に比べ量端末側へ暫時小さくしたことを特徴とする請求項1に記載の製造方法。   The manufacturing method according to claim 1, wherein a radius of curvature of the cored bar used at the time of arc forming is temporarily reduced toward the end of the quantity compared to the central part of the coil spring. 上記アーク成形の間に行われる熱処理は低温焼なまし工程に対応し、温度は、約350℃〜450℃で時間は、30分〜60分であることを特徴とする請求項1乃至2のいずれか1項に記載の製造方法。   The heat treatment performed during the arc forming corresponds to a low temperature annealing process, wherein the temperature is about 350 ° C to 450 ° C and the time is 30 minutes to 60 minutes. The manufacturing method of any one of Claims. 上記アーク成形に先立って、直線状のコイルスプリングに第1の加熱工程を施すことを特徴とする。この第1の加熱工程は、約200℃〜250℃で時間は20分〜30分であることを特徴とする請求項1乃至3のいずれか1項に記載の製造方法。   Prior to the arc forming, the linear coil spring is subjected to a first heating step. The manufacturing method according to any one of claims 1 to 3, wherein the first heating step is about 200 ° C to 250 ° C and the time is 20 minutes to 30 minutes. 上記アーク成形に先立って、ばね端部の研削工程を行うことを特徴とする請求項1乃至4のいずれか1項に記載の製造方法。   The manufacturing method according to any one of claims 1 to 4, wherein a grinding step of a spring end is performed prior to the arc forming. 上記アーク成形工程の後に、ショットピーニング等の強化処理工程、低温焼なましする工程を有することを特徴とする請求項1乃至5のいずれか1項に記載の製造方法。   The manufacturing method according to any one of claims 1 to 5, further comprising a strengthening process step such as shot peening and a low-temperature annealing step after the arc forming step. 上記アーク成形において、スプリングのコイル内径側に挿入されるアーク状芯金とスプリングは、固定することなく、熱処理により生じるスプリングの巻数,コイル径の変化に対して回転可能にすることを特徴とする請求項1に記載の製造方法。   In the arc forming described above, the arc cored bar and the spring inserted into the coil inner diameter side of the spring are not fixed, but are rotatable with respect to changes in the number of turns of the spring and the coil diameter caused by the heat treatment. The manufacturing method according to claim 1.
JP2006098420A 2006-03-31 2006-03-31 Manufacturing method of arc coil spring Active JP5014660B2 (en)

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Cited By (12)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2010084808A (en) * 2008-09-30 2010-04-15 Aisin Seiki Co Ltd Damper device
CN101956777A (en) * 2009-07-14 2011-01-26 上海中洲特种合金材料有限公司 Heat treating method of nickel-base alloy cylinder spiral torsion spring
CN102699242A (en) * 2012-04-13 2012-10-03 杭州富春弹簧有限公司 Process for processing arc-shaped spring
CN103121069A (en) * 2011-11-18 2013-05-29 邵承玉 Arc-shaped spring forming machine
CN103567716A (en) * 2013-08-15 2014-02-12 杭州富春弹簧有限公司 Process for manufacturing ultrahigh-stress dual-clutch spring
JP2014223656A (en) * 2013-05-17 2014-12-04 京浜金属工業株式会社 Manufacturing device of arc-shaped coil spring
EP2869950A4 (en) * 2012-07-06 2016-09-07 Barnes Group Inc High fatigue arcuate spring
CN106475493A (en) * 2015-08-28 2017-03-08 中央发条株式会社 The manufacture method of helical spring and the manufacture device of helical spring
CN106917846A (en) * 2015-12-25 2017-07-04 舍弗勒技术股份两合公司 Dual mass flywheel
JP2017223342A (en) * 2016-06-17 2017-12-21 株式会社ジェイテクト Ball screw device
CN112024790A (en) * 2019-11-26 2020-12-04 苏州市新艺弹簧厂 Bending device of bent pipe spring
US11248674B2 (en) 2017-08-24 2022-02-15 Ressorts Liberte Inc. Coil spring and method of fabrication thereof

Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH105916A (en) * 1996-06-25 1998-01-13 Piolax Inc Coil spring and its production
JP2000129359A (en) * 1998-10-19 2000-05-09 Suncall Corp Manufacture of arc-like spring for clutch disk

Patent Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH105916A (en) * 1996-06-25 1998-01-13 Piolax Inc Coil spring and its production
JP2000129359A (en) * 1998-10-19 2000-05-09 Suncall Corp Manufacture of arc-like spring for clutch disk

Cited By (17)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2010084808A (en) * 2008-09-30 2010-04-15 Aisin Seiki Co Ltd Damper device
CN101956777A (en) * 2009-07-14 2011-01-26 上海中洲特种合金材料有限公司 Heat treating method of nickel-base alloy cylinder spiral torsion spring
CN103121069A (en) * 2011-11-18 2013-05-29 邵承玉 Arc-shaped spring forming machine
CN103121069B (en) * 2011-11-18 2015-08-05 邵承玉 Arc spring forming machine
CN102699242A (en) * 2012-04-13 2012-10-03 杭州富春弹簧有限公司 Process for processing arc-shaped spring
US10508700B2 (en) 2012-07-06 2019-12-17 Barnes Group Inc. High fatigue arcuate spring
EP2869950A4 (en) * 2012-07-06 2016-09-07 Barnes Group Inc High fatigue arcuate spring
EP3680039A1 (en) * 2012-07-06 2020-07-15 Barnes Group Inc. High fatigue arcuate spring
JP2014223656A (en) * 2013-05-17 2014-12-04 京浜金属工業株式会社 Manufacturing device of arc-shaped coil spring
CN103567716A (en) * 2013-08-15 2014-02-12 杭州富春弹簧有限公司 Process for manufacturing ultrahigh-stress dual-clutch spring
CN106475493B (en) * 2015-08-28 2019-09-06 中央发条株式会社 The manufacturing method of helical spring and the manufacturing device of helical spring
CN106475493A (en) * 2015-08-28 2017-03-08 中央发条株式会社 The manufacture method of helical spring and the manufacture device of helical spring
CN106917846A (en) * 2015-12-25 2017-07-04 舍弗勒技术股份两合公司 Dual mass flywheel
JP2017223342A (en) * 2016-06-17 2017-12-21 株式会社ジェイテクト Ball screw device
US11248674B2 (en) 2017-08-24 2022-02-15 Ressorts Liberte Inc. Coil spring and method of fabrication thereof
CN112024790A (en) * 2019-11-26 2020-12-04 苏州市新艺弹簧厂 Bending device of bent pipe spring
CN112024790B (en) * 2019-11-26 2022-05-10 苏州市新艺弹簧厂 Bending device of bent pipe spring

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