JP2008259349A - Laminated core and rotary electric machine - Google Patents

Laminated core and rotary electric machine Download PDF

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JP2008259349A
JP2008259349A JP2007100295A JP2007100295A JP2008259349A JP 2008259349 A JP2008259349 A JP 2008259349A JP 2007100295 A JP2007100295 A JP 2007100295A JP 2007100295 A JP2007100295 A JP 2007100295A JP 2008259349 A JP2008259349 A JP 2008259349A
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caulking
electromagnetic steel
yoke
laminated core
tooth
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JP5012155B2 (en
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Yasuhiro Endo
康浩 遠藤
Yutaka Komatsu
裕 小松
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Toyota Motor Corp
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Toyota Motor Corp
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Abstract

<P>PROBLEM TO BE SOLVED: To provide a laminated core for improving the occupied rate of a coil and fixing strength of electromagnetic steel plates, and to provide an electric rotary machine provided with the laminated core. <P>SOLUTION: The laminated core is provided with a circular yoke portion formed by fixing a plurality of electromagnetic steel plates via caulking portions provided on the electromagnetic steel plates, and teeth portion protruding in the radius direction of the yoke portion. The caulking portion having a fixing strength higher than that of the teeth portion is provided on the yoke portion, and the caulking portion for allowing the occupied rate of the electromagnetic steel plates to be higher than the yoke portion is provided on the teeth portion. <P>COPYRIGHT: (C)2009,JPO&INPIT

Description

本発明は、積層コア及び回転電機の技術に関する。   The present invention relates to a technique of a laminated core and a rotating electrical machine.

一般に、回転電機は、固定子(積層コア)と回転子とを備え、積層コアと回転子が電磁気的に相互作用することにより、回転子を回転させ、駆動力を発生させる。積層コアは、複数の電磁鋼板を電磁鋼板に設けたカシメ部を介して固着されることによって形成される環状のヨーク部及びヨーク部の半径方向に突出するティース部を備えるものである。   Generally, a rotating electrical machine includes a stator (laminated core) and a rotor, and the laminated core and the rotor interact electromagnetically to rotate the rotor and generate a driving force. The laminated core includes an annular yoke portion formed by fixing a plurality of electromagnetic steel plates via caulking portions provided on the electromagnetic steel plate, and a tooth portion protruding in the radial direction of the yoke portion.

カシメ部は、電磁鋼板を半抜き加工して形成される平カシメ、くさび状のパンチを使用して形成されるVカシメ等がある。積層コアに用いられるカシメ部の種類によって、積層コアの性能が異なるため、回転電機の用途において、様々なカシメを用いた積層コアが提案されている。   The caulking portion includes a flat caulking formed by half-cutting an electromagnetic steel sheet, a V caulking formed using a wedge-shaped punch, and the like. Since the performance of the laminated core differs depending on the type of crimped portion used for the laminated core, laminated cores using various caulks have been proposed for use in rotating electrical machines.

例えば、特許文献1には、ヨーク部及びティース部に設けられるカシメ部を平カシメとして、ヨーク部に設けられるカシメ部の大きさをティース部に設けられるカシメ部の大きさより大きくした積層コアが提案されている。   For example, Patent Document 1 proposes a laminated core in which the caulking portions provided in the yoke portion and the teeth portion are flat caulking, and the size of the caulking portion provided in the yoke portion is larger than the size of the caulking portion provided in the teeth portion. Has been.

例えば、特許文献2には、積層コアのヨーク部に設けられるカシメ部を平カシメ、ティース部に設けられるカシメ部をVカシメとした積層コアが提案されている。   For example, Patent Document 2 proposes a laminated core in which a caulking portion provided in a yoke portion of the laminated core is a flat caulking and a caulking portion provided in a teeth portion is a V caulking.

例えば、特許文献3には、積層コアのティース部及びヨーク部に設けられるカシメ部を平カシメ又はVカシメとした積層コアが提案されている。   For example, Patent Document 3 proposes a laminated core in which a caulking portion provided in a tooth portion and a yoke portion of the laminated core is flat caulking or V caulking.

一般的に、積層コアは、複数個に分割された分割積層コアが環状になるように配置され、その外周に設けられるリングを焼きばめすることにより製造される。この場合、ヨーク部には、焼きばめしたリングが収縮し、ヨーク部に応力が加えられる。   In general, a laminated core is manufactured by arranging a plurality of divided laminated cores in an annular shape and shrink-fitting a ring provided on the outer periphery thereof. In this case, the shrink-fitted ring contracts in the yoke portion, and stress is applied to the yoke portion.

ヨーク部に応力が加わる場合に、特許文献1〜3の積層コアでは、ヨーク部に、Vカシメよりカシメ深さを深くとることが困難な平カシメが用いられているため、ヨーク部を構成する電磁鋼板の固着強度を高くすることは難しい。   When stress is applied to the yoke part, in the laminated cores of Patent Documents 1 to 3, a flat caulking that is difficult to achieve a caulking depth deeper than V caulking is used for the yoke part. It is difficult to increase the adhesion strength of the electrical steel sheet.

また、特許文献2,3の積層コアでは、ティース部に、平カシメより電磁鋼板同士の隙間が生じ易いVカシメが用いられているため、ティース部の積層厚が厚くなり、電磁鋼板の占積率(電磁鋼板の厚さ/積み厚)が低下する場合がある。また、電磁鋼板の占積率が低下すれば、ティース部の外周に設けられるコイルの占積率も低下し、回転電機のトルク、出力等を低下させる場合がある。   In addition, in the laminated cores of Patent Documents 2 and 3, V-caulking, in which a gap between the electromagnetic steel sheets is more likely to be generated than the flat caulking, is used in the teeth portion. The rate (thickness / stacking thickness of electrical steel sheets) may decrease. Moreover, if the space factor of an electromagnetic steel plate falls, the space factor of the coil provided in the outer periphery of a teeth part will also fall, and the torque of a rotary electric machine, an output, etc. may be reduced.

特開平9−191588号公報JP-A-9-191588 特開2001−95181号公報JP 2001-95181 A 特開平11−113195号公報Japanese Patent Laid-Open No. 11-113195

本発明は、コイルの占積率及び電磁鋼板の固着強度を向上させる積層コア及び当該積層コアを備える回転電機である。   The present invention is a laminated core that improves the space factor of a coil and the adhesion strength of an electromagnetic steel sheet, and a rotating electrical machine including the laminated core.

本発明は、複数の電磁鋼板を前記電磁鋼板に設けたカシメ部を介して固着されることによって形成される環状のヨーク部及び前記ヨーク部の半径方向に突出するティース部を備える積層コアであって、前記ヨーク部には、前記ティース部より固着強度の強いカシメ部を設け、前記ティース部には、前記ヨーク部より前記電磁鋼板の占積率を高めるカシメ部を設ける。   The present invention is a laminated core comprising an annular yoke portion formed by fixing a plurality of electromagnetic steel plates via caulking portions provided on the electromagnetic steel plate, and a tooth portion protruding in the radial direction of the yoke portion. The yoke portion is provided with a caulking portion having a stronger fixing strength than the teeth portion, and the tooth portion is provided with a caulking portion that increases the space factor of the electromagnetic steel sheet from the yoke portion.

また、本発明は、複数の電磁鋼板が前記電磁鋼板に設けたカシメ部を介して固着することによって形成される環状のヨーク部及び前記ヨーク部の半径方向に突出するティース部を備える積層コアであって、前記ティース部に設けられるカシメ部の深さが前記ヨーク部に設けられるカシメ部の深さより小さい。   Further, the present invention is a laminated core comprising an annular yoke portion formed by fixing a plurality of electromagnetic steel plates via caulking portions provided on the electromagnetic steel plate, and a tooth portion protruding in the radial direction of the yoke portion. The depth of the caulking portion provided in the teeth portion is smaller than the depth of the caulking portion provided in the yoke portion.

また、本発明は、複数の電磁鋼板が前記電磁鋼板に設けたカシメ部を介して固着することによって形成される環状のヨーク部及び前記ヨーク部の半径方向に突出するティース部を備える積層コアであって、前記ティース部に設けられるカシメ部の底辺の幅が前記ヨーク部に設けられるカシメ部の底辺の幅より大きい。   Further, the present invention is a laminated core comprising an annular yoke portion formed by fixing a plurality of electromagnetic steel plates via caulking portions provided on the electromagnetic steel plate, and a tooth portion protruding in the radial direction of the yoke portion. The width of the bottom side of the caulking portion provided in the tooth portion is larger than the width of the bottom side of the caulking portion provided in the yoke portion.

また、本発明は、複数の電磁鋼板が前記電磁鋼板に設けたカシメ部を介して固着することによって形成される環状のヨーク部及び前記ヨーク部の半径方向に突出するティース部を備える積層コアであって、前記ヨーク部に設けられるカシメ部の底辺の幅が前記ヨーク部に設けられるカシメ部の深さより小さく、前記ティース部に設けられるカシメ部の底辺の幅が前記ティース部に設けられるカシメ部の深さより大きい。   Further, the present invention is a laminated core comprising an annular yoke portion formed by fixing a plurality of electromagnetic steel plates via caulking portions provided on the electromagnetic steel plate, and a tooth portion protruding in the radial direction of the yoke portion. A caulking part in which the width of the bottom side of the caulking part provided in the yoke part is smaller than the depth of the caulking part provided in the yoke part, and the width of the base side of the caulking part provided in the tooth part is provided in the tooth part. Greater than depth.

また、前記積層コアにおいて、前記ヨーク部に設けられるカシメ部は、Vカシメであり、前記ティース部に設けられるカシメ部は、平カシメであることが好ましい。   Further, in the laminated core, it is preferable that a caulking portion provided in the yoke portion is a V caulking, and a caulking portion provided in the teeth portion is a flat caulking.

また、本発明は、複数の電磁鋼板が前期電磁鋼板に設けたカシメ部を介して固着することによって形成される環状のヨーク部及び前記ヨーク部の半径方向に突出するティース部を備える積層コアを含む回転電機であって、前記ヨーク部には、前記ティース部より固着強度の強いカシメ部を設け、前記ティース部には、前記ヨーク部より前記電磁鋼板の占積率を高めるカシメ部を設ける。   Further, the present invention provides a laminated core comprising an annular yoke portion formed by fixing a plurality of electromagnetic steel plates via caulking portions provided on the previous electromagnetic steel plate, and a tooth portion protruding in the radial direction of the yoke portion. In the rotating electric machine, the yoke portion is provided with a caulking portion having a stronger fixing strength than the tooth portion, and the tooth portion is provided with a caulking portion that increases a space factor of the electromagnetic steel plate than the yoke portion.

また、本発明は、複数の電磁鋼板が前期電磁鋼板に設けたカシメ部を介して固着することによって形成される環状のヨーク部及び前記ヨーク部の半径方向に突出するティース部を備える積層コアを含む回転電機であって、前記ティース部に設けられるカシメ部の深さが前記ヨーク部に設けられるカシメ部の深さより小さい。   Further, the present invention provides a laminated core comprising an annular yoke portion formed by fixing a plurality of electromagnetic steel plates via caulking portions provided on the previous electromagnetic steel plate, and a tooth portion protruding in the radial direction of the yoke portion. The depth of the crimping part provided in the said tooth part is smaller than the depth of the crimping part provided in the said yoke part.

また、本発明は、複数の電磁鋼板が前期電磁鋼板に設けたカシメ部を介して固着することによって形成される環状のヨーク部及び前記ヨーク部の半径方向に突出するティース部を備える積層コアを含む回転電機であって、前記ティース部に設けられるカシメ部の底辺の幅が前記ヨーク部に設けられるカシメ部の底辺の幅より大きい。   Further, the present invention provides a laminated core comprising an annular yoke portion formed by fixing a plurality of electromagnetic steel plates via caulking portions provided on the previous electromagnetic steel plate, and a tooth portion protruding in the radial direction of the yoke portion. The width of the bottom side of the caulking part provided in the teeth part is larger than the width of the bottom side of the caulking part provided in the yoke part.

また、本発明は、複数の電磁鋼板が前期電磁鋼板に設けたカシメ部を介して固着することによって形成される環状のヨーク部及び前記ヨーク部の半径方向に突出するティース部を備える積層コアを含む回転電機であって、前記ヨーク部に設けられるカシメ部の底辺の幅が前記ヨーク部に設けられるカシメ部の深さより小さく、前記ティース部に設けられるカシメ部の底辺の幅が前記ティース部に設けられるカシメ部の深さより大きい。   Further, the present invention provides a laminated core comprising an annular yoke portion formed by fixing a plurality of electromagnetic steel plates via caulking portions provided on the previous electromagnetic steel plate, and a tooth portion protruding in the radial direction of the yoke portion. The width of the bottom side of the caulking part provided in the yoke part is smaller than the depth of the caulking part provided in the yoke part, and the width of the bottom side of the caulking part provided in the tooth part is included in the tooth part. It is larger than the depth of the caulking portion provided.

また、前記回転電機において、前記ヨーク部に設けられるカシメ部は、Vカシメであり、前記ティース部に設けられるカシメ部は、平カシメであることが好ましい。   In the rotating electrical machine, it is preferable that the caulking portion provided in the yoke portion is a V caulking, and the caulking portion provided in the teeth portion is a flat caulking.

本発明によれば、ヨーク部には、ティース部より固着強度の強いカシメ部を設け、ティース部には、ヨーク部より電磁鋼板の占積率を高めるカシメ部を設けることにより、コイルの占積率及び電磁鋼板の固着強度を向上させる積層コア及び当該積層コアを備える回転電機を提供することができる。   According to the present invention, the yoke portion is provided with a caulking portion having a stronger fixing strength than the teeth portion, and the tooth portion is provided with a caulking portion that increases the space factor of the electromagnetic steel plate from the yoke portion, thereby It is possible to provide a laminated core that improves the rate and the adhesion strength of the electrical steel sheet and a rotating electrical machine including the laminated core.

本発明の実施の形態について以下説明する。   Embodiments of the present invention will be described below.

図1は、本発明の実施形態に係る積層コアの構成の一例を示す一部模式平面図である。積層コア1は、複数の分割積層コア10と、リング12と、コイル14とを有する。分割積層コア10は、分割ヨーク部16と、ティース部18とを有する。   FIG. 1 is a partial schematic plan view showing an example of the configuration of a laminated core according to an embodiment of the present invention. The laminated core 1 includes a plurality of divided laminated cores 10, a ring 12, and a coil 14. The divided laminated core 10 has a divided yoke portion 16 and a teeth portion 18.

分割積層コア10が、環状に配置されることによって、環状のヨーク部17及びヨーク部17の半径方向に突出するティース部18が形成される。積層コア1は、ヨーク部17の外周(分割ヨーク部16の外周)に、リング12を配置・焼きばめすることによって得られる。また、各ティース部18には、コイル14が配置されている。   By disposing the divided laminated core 10 in an annular shape, an annular yoke portion 17 and a tooth portion 18 protruding in the radial direction of the yoke portion 17 are formed. The laminated core 1 is obtained by arranging and shrink fitting the ring 12 on the outer periphery of the yoke portion 17 (the outer periphery of the divided yoke portion 16). In addition, a coil 14 is disposed in each tooth portion 18.

図2は、本実施形態に係る分割積層コアの構成の一例を示す模式斜視図である。図2に示すように、分割積層コア10は、電磁鋼板20を積層コア1の軸方向(図2に示す矢印X)に積層したものである。電磁鋼板20同士は、電磁鋼板20に設けたカシメ部(22,24)を介して固着されている。   FIG. 2 is a schematic perspective view showing an example of the configuration of the divided laminated core according to the present embodiment. As shown in FIG. 2, the divided laminated core 10 is obtained by laminating electromagnetic steel sheets 20 in the axial direction of the laminated core 1 (arrow X shown in FIG. 2). The electromagnetic steel plates 20 are fixed to each other via caulking portions (22, 24) provided on the electromagnetic steel plate 20.

本実施形態の分割積層コア10において、電磁鋼板20に設けられるカシメ部(22,24)のうち、分割ヨーク部16には、ティース部18より固着強度の強いカシメ部22を設け、ティース部18には、分割ヨーク部16より電磁鋼板20の占積率を高めるカシメ部24が設けられている。   In the divided laminated core 10 of the present embodiment, of the crimped portions (22, 24) provided on the electromagnetic steel sheet 20, the divided yoke portion 16 is provided with a crimped portion 22 having a stronger fixing strength than the tooth portion 18, and the teeth portion 18 is provided. The crimping part 24 which raises the space factor of the electromagnetic steel plate 20 from the division | segmentation yoke part 16 is provided.

分割ヨーク部16の電磁鋼板20に設けられる固着強度の強いカシメ部22には、固着強度、積層コアの製造時の作業性等の点で、Vカシメを用いることが好ましい。   It is preferable to use a V-caulking for the caulking portion 22 having a high adhering strength provided on the electromagnetic steel plate 20 of the divided yoke portion 16 in terms of adhering strength, workability at the time of manufacturing the laminated core and the like.

ティース部18の電磁鋼板20に設けられる電磁鋼板20の占積率を高めるカシメ部24には、占積率、積層コアの製造時の作業性等の点で、平カシメを用いることが好ましい。以下、平カシメ及びVカシメについて説明する。   The caulking portion 24 that increases the space factor of the electromagnetic steel plate 20 provided on the electromagnetic steel plate 20 of the teeth portion 18 is preferably used in terms of space factor, workability at the time of manufacturing the laminated core, and the like. Hereinafter, flat caulking and V caulking will be described.

図3は、電磁鋼板が平カシメを介して固着されることによって形成されたティース部の一部模式断面図である。   FIG. 3 is a partial schematic cross-sectional view of a tooth portion formed by fixing an electromagnetic steel sheet via a flat caulking.

図3に示すカシメ部24(平カシメ)は、電磁鋼板を半抜き加工等して、電磁鋼板の積層方向に形成された半抜き状の凹部24a及び凸部24bを有するものであるが、平カシメの形状は、半抜き状に限定されるものではない。図4は、平カシメの他の形状を示すティース部の一部模式断面図である。図4に示すように、カシメ部24(平カシメ)の形状は、台形状のものでもよい。平カシメは、カシメ部24の底辺の幅(図4に示すW2)が、カシメ部24の深さ(図4に示すD)より大きいものである。   The caulking portion 24 (flat caulking) shown in FIG. 3 has a half punched concave portion 24a and a convex portion 24b formed in the laminating direction of the electromagnetic steel plate by half punching the electromagnetic steel plate. The shape of the caulking is not limited to a half-cut shape. FIG. 4 is a partial schematic cross-sectional view of a tooth portion showing another shape of flat caulking. As shown in FIG. 4, the shape of the crimping portion 24 (flat crimping) may be trapezoidal. In the flat crimping, the width of the base of the crimping portion 24 (W2 shown in FIG. 4) is larger than the depth of the crimping portion 24 (D shown in FIG. 4).

ティース部18を構成する電磁鋼板20同士は、電磁鋼板20のカシメ部24(平カシメ)の凸部24bを他の電磁鋼板20のカシメ部24の凹部24aに嵌め込むことにより固着される。平カシメの場合、後述するVカシメより、カシメ部24の深さ(図4に示すD)、幅(図4に示すW1)カシメ部24の底辺の幅(図4に示すW2)等の寸法を制御し易く、凹部24aと凸部24bとの間に隙間が生じ難い。そのため、電磁鋼板20同士の間の隙間も生じ難く、電磁鋼板20の占積率を高めることができる。したがって、ティース部18の積層厚を小さくすることができ、ティース部18の外周に設けられるコイル14の占積率を向上させることができる。また、コイルの占積率が向上すれば、回転電機のトルク、出力等を増加させることができる。   The electromagnetic steel plates 20 constituting the teeth portion 18 are fixed by fitting the convex portions 24b of the caulking portions 24 (flat caulking) of the electromagnetic steel plates 20 into the concave portions 24a of the caulking portions 24 of other electromagnetic steel plates 20. In the case of flat caulking, dimensions such as the depth (D shown in FIG. 4), the width (W1 shown in FIG. 4), the width of the bottom of the caulking part 24 (W2 shown in FIG. 4), etc. It is easy to control, and it is hard to produce a clearance gap between the recessed part 24a and the convex part 24b. Therefore, a gap between the electromagnetic steel sheets 20 is hardly generated, and the space factor of the electromagnetic steel sheets 20 can be increased. Therefore, the lamination thickness of the teeth portion 18 can be reduced, and the space factor of the coil 14 provided on the outer periphery of the teeth portion 18 can be improved. Moreover, if the space factor of a coil improves, the torque, output, etc. of a rotary electric machine can be increased.

カシメ部24の深さ、幅等は、特に制限されるものではないが、電磁鋼板20の強度の点で、カシメ部24の深さが、電磁鋼板20の厚みに対して1/2程度であることが好ましい。   The depth, width, and the like of the crimping portion 24 are not particularly limited, but the depth of the crimping portion 24 is about ½ of the thickness of the electromagnetic steel plate 20 in terms of strength of the electromagnetic steel plate 20. Preferably there is.

図5は、電磁鋼板がVカシメを介して固着されることによって形成されたヨーク部の一部模式断面図である。   FIG. 5 is a partial schematic cross-sectional view of a yoke portion formed by fixing an electromagnetic steel sheet via V caulking.

図5に示すカシメ部22(Vカシメ)は、くさび状のパンチ等を使用して、電磁鋼板20の積層方向に形成されたV字状の凹部22a及び凸部22bを有するものであるが、Vカシメの形状は、V字状に限定されるものではない。図6は、Vカシメの他の形状を示す分割ヨーク部の一部模式断面図である。図6に示すように、カシメ部22(Vカシメ)の形状は、台形状のものでもよい。Vカシメは、カシメ部22の底辺の幅(図6に示すW2)が、カシメ部22の深さ(図6に示すD)より小さいものである。   The caulking portion 22 (V caulking) shown in FIG. 5 has a V-shaped concave portion 22a and a convex portion 22b formed in the laminating direction of the electromagnetic steel sheet 20, using a wedge-shaped punch or the like. The shape of the V caulking is not limited to a V shape. FIG. 6 is a partial schematic cross-sectional view of a split yoke portion showing another shape of V-caulking. As shown in FIG. 6, the shape of the caulking portion 22 (V caulking) may be trapezoidal. In the V-caulking, the width of the base of the caulking portion 22 (W2 shown in FIG. 6) is smaller than the depth of the caulking portion 22 (D shown in FIG. 6).

分割ヨーク部16を構成する電磁鋼板20同士は、電磁鋼板20のカシメ部22(Vカシメ)の凸部22bを他の電磁鋼板のカシメ部22(Vカシメ)の凹部22aに嵌め込むことにより固着される。Vカシメの場合、平カシメより、カシメ部22の深さ(図6に示すD)を大きくすることができるため、電磁鋼板20の固着強度を高めることができる。したがって、リング12の収縮により、分割ヨーク部16に応力が加えられても、分割ヨーク部16の破損を防止することができる。   The electromagnetic steel plates 20 constituting the split yoke portion 16 are fixed to each other by fitting the convex portions 22b of the caulking portions 22 (V caulking) of the electromagnetic steel plates 20 into the concave portions 22a of the caulking portions 22 (V caulking) of other electromagnetic steel plates. Is done. In the case of V caulking, the depth (D shown in FIG. 6) of the caulking portion 22 can be made larger than that of flat caulking, so that the fixing strength of the electromagnetic steel sheet 20 can be increased. Therefore, even if stress is applied to the split yoke portion 16 due to the contraction of the ring 12, the split yoke portion 16 can be prevented from being damaged.

このように、本実施形態に係る積層コアにおいて、ヨーク部に、ティース部より固着強度の強いカシメ部(例えばVカシメ)を設け、ティース部に、ヨーク部より電磁鋼板の占積率を高めるカシメ部(例えば平カシメ)を設けることによって、ティース部の電磁鋼板の占積率を高め、ヨーク部の固着強度を向上させることができる。そして、ティース部の電磁鋼板の占積率を高めることができれば、ティース部の外周に設けられるコイルの占積率を高くすることができるため、回転電機のトルク、出力等の向上を図ることができる。また、ヨーク部の固着強度を向上させることができれば、積層コアの製造時において、リングの収縮による応力によっても、ヨーク部の破損を生じること防ぐことができる。   As described above, in the laminated core according to the present embodiment, the yoke portion is provided with a caulking portion (for example, V-caulking) having a stronger fixing strength than the tooth portion, and the tooth portion is caulking to increase the space factor of the electromagnetic steel sheet from the yoke portion. By providing the portion (for example, flat caulking), the space factor of the electrical steel sheet in the tooth portion can be increased, and the fixing strength of the yoke portion can be improved. And if the space factor of the electrical steel sheet of a teeth part can be raised, since the space factor of the coil provided in the outer periphery of a tooth part can be made high, improvement of the torque of a rotary electric machine, an output, etc. can be aimed at. it can. Further, if the fixing strength of the yoke portion can be improved, it is possible to prevent the yoke portion from being damaged by the stress due to the contraction of the ring during the manufacture of the laminated core.

電磁鋼板の占積率及び電磁鋼板の固着強度を向上させる積層コアを提供するためには、必ずしも上記構成に限定されるものではない。例えば、ティース部に設けられるカシメ部の深さ(例えば、図4に示すカシメ部24の深さD)がヨーク部に設けられるカシメ部の深さ(例えば、図6に示すカシメ部22の深さD)より小さいものであってもよい。また、ティース部に設けられるカシメ部の底辺の幅(例えば、図4に示すカシメ部24の底辺の幅W2)がヨーク部に設けられるカシメ部の底辺の幅(例えば、図6に示すカシメ部22の底辺の幅W2)より大きいものであってもよい。さらに、ヨーク部のカシメ部の底辺の幅(例えば、図6に示すカシメ部22の底辺の幅W2)がヨーク部のカシメ部の深さ(例えば、図6に示すカシメ部22の深さD)より小さく、ティース部のカシメ部の底辺の幅(例えば、図4に示すカシメ部24の底辺の幅W2)がティース部のカシメ部の深さ(例えば、図4に示すカシメ部24の深さD)より大きいものであってもよい。本実施形態の積層コアは、上記構成のうち少なくともいずれか1つを備えることによって、電磁鋼板の占積率及び電磁鋼板の固着強度を向上させることができる。   In order to provide the laminated core which improves the space factor of an electromagnetic steel plate and the adhering strength of an electromagnetic steel plate, it is not necessarily limited to the said structure. For example, the depth of the caulking portion provided in the tooth portion (for example, the depth D of the caulking portion 24 shown in FIG. 4) is the depth of the caulking portion provided in the yoke portion (for example, the depth of the caulking portion 22 shown in FIG. 6). D) may be smaller. Further, the width of the bottom side of the caulking part provided in the tooth part (for example, the width W2 of the bottom side of the caulking part 24 shown in FIG. 4) is the width of the bottom side of the caulking part provided in the yoke part (eg, the caulking part shown in FIG. 6). 22 may be larger than the width W2) of the bottom side. Further, the width of the base of the crimped portion of the yoke portion (for example, the width W2 of the bottom of the crimped portion 22 shown in FIG. 6) is the depth of the crimped portion of the yoke portion (for example, the depth D of the crimped portion 22 shown in FIG. 6). ) And the width of the bottom of the caulking portion of the teeth portion (for example, the width W2 of the bottom of the caulking portion 24 shown in FIG. 4) is the depth of the caulking portion of the teeth portion (eg, the depth of the caulking portion 24 shown in FIG. 4). D) may be larger. The laminated core of this embodiment can improve the space factor of an electromagnetic steel plate and the adhering strength of an electromagnetic steel plate by providing at least any one of the above configurations.

ヨーク部に設けられるカシメ部には、固着強度、積層コアの製造時の作業性等の点で、Vカシメを用い、ティース部に設けられるカシメ部には、占積率、積層コアの製造時の作業性等の点で、平カシメを用いることが好ましいが、本実施形態の積層コアが上記説明した構成を備えるものであれば、ヨーク部及びティース部に設けられるカシメ部は共に平カシメ又はVカシメでもよい。   The caulking part provided in the yoke part uses V caulking in terms of fixing strength, workability during production of the laminated core, etc., and the caulking part provided in the tooth part has a space factor, during production of the laminated core. However, if the laminated core of the present embodiment has the above-described configuration, both the caulking portions provided in the yoke portion and the teeth portion are either flat caulking or V caulking may be used.

次に本実施形態に係る積層コアを備える回転電機について説明する。   Next, a rotating electrical machine including the laminated core according to the present embodiment will be described.

図7は、本実施形態に係る回転電機の構成の一例を示す模式図である。回転電機は、ACモータ、SRモータ、クローポール型モータ等のパルスモータ等特に制限されるものでない。本実施形態では、SRモータ(以下単にモータと呼ぶ)を例に以下説明する。図7に示すように、回転電機2は、積層コア1、回転子26、積層コア1及び回転子26を収容する枠体(不図示)を備えている。本実施形態に用いられる積層コア1は、上記説明した積層コアと同様の構成を有する。また、積層コア1は、枠体の内側に固定されている。   FIG. 7 is a schematic diagram illustrating an example of the configuration of the rotating electrical machine according to the present embodiment. The rotating electrical machine is not particularly limited, such as a pulse motor such as an AC motor, an SR motor, or a claw pole type motor. In the present embodiment, an SR motor (hereinafter simply referred to as a motor) will be described as an example. As shown in FIG. 7, the rotating electrical machine 2 includes a laminated core 1, a rotor 26, a laminated core 1, and a frame (not shown) that accommodates the rotor 26. The laminated core 1 used in the present embodiment has the same configuration as the laminated core described above. The laminated core 1 is fixed to the inside of the frame.

回転子26は、シャフト28、回転子コア30を備えるものである。図7に示すように回転子26は、中央に配設されたシャフト28の周りに回転子コア30が固定されている。また、回転子26は、積層コア1との間に所定のギャップを有するように挿入配置されている。   The rotor 26 includes a shaft 28 and a rotor core 30. As shown in FIG. 7, the rotor 26 has a rotor core 30 fixed around a shaft 28 disposed in the center. Further, the rotor 26 is inserted and disposed so as to have a predetermined gap between the rotor 26 and the laminated core 1.

回転子コア30には、複数の永久磁石(32a,32b・・・)が設けられている。また、回転子コア30は、プレス装置により打ち抜き加工された複数の上記電磁鋼板を積層して一体化すること等により構成されている。回転子コア30の構成はこれに限定されるものではなく、上記磁性粉を金型に投入し加圧成形されたものであってもよい。シャフト28は、枠体にベアリング(不図示)を介して支持されている。   The rotor core 30 is provided with a plurality of permanent magnets (32a, 32b...). In addition, the rotor core 30 is configured by stacking and integrating a plurality of the above-described electromagnetic steel sheets punched by a pressing device. The configuration of the rotor core 30 is not limited to this, and the rotor core 30 may be formed by putting the magnetic powder into a mold and press-molding it. The shaft 28 is supported by the frame body via a bearing (not shown).

次に、本実施形態に係る回転電機2の稼動について説明する。例えば、積層コア1のティース部18aに設けられたコイル(不図示)に電流を流すことによって、永久磁石32aからティース部18a内へ磁束が流れ、永久磁石32aがティース部18aに引きつけられる。さらに、別のティース部18bのコイル(不図示)に電流を流すことによって、他の永久磁石32bがティース部18bに引き付けられる。これを連続的に行うことによって回転子26が回転し、トルクが発生する。   Next, the operation of the rotating electrical machine 2 according to this embodiment will be described. For example, when a current is passed through a coil (not shown) provided in the tooth portion 18a of the laminated core 1, a magnetic flux flows from the permanent magnet 32a into the tooth portion 18a, and the permanent magnet 32a is attracted to the tooth portion 18a. Furthermore, by passing a current through a coil (not shown) of another tooth portion 18b, another permanent magnet 32b is attracted to the tooth portion 18b. By continuously performing this, the rotor 26 rotates and torque is generated.

以上、図7により本実施形態に係る回転電機2について説明したが、回転電機の構成は、これに限定されるものではなく、例えば、永久磁石が回転子コア内に埋め込まれた埋め込み型モータ等であってもよく、本発明の要旨を逸脱しない範囲における設計変更があっても、それらは、本発明に含まれるものである。   As described above, the rotating electrical machine 2 according to the present embodiment has been described with reference to FIG. 7, but the configuration of the rotating electrical machine is not limited to this, for example, an embedded motor in which a permanent magnet is embedded in the rotor core, or the like. Even if there is a design change within a scope not departing from the gist of the present invention, they are included in the present invention.

本発明の実施形態に係る積層コアの構成の一例を示す一部模式平面図である。It is a partial schematic plan view which shows an example of a structure of the laminated core which concerns on embodiment of this invention. 本実施形態に係る分割積層コアの構成の一例を示す模式斜視図である。It is a model perspective view which shows an example of a structure of the division | segmentation laminated core which concerns on this embodiment. 電磁鋼板が平カシメを介して固着されることによって形成されたティース部の一部模式断面図である。It is a partial schematic cross section of the teeth part formed by fixing an electromagnetic steel plate via a flat caulking. 平カシメの他の形状を示すティース部の一部模式断面図である。It is a partial schematic cross section of the teeth part which shows the other shape of a flat crimp. 電磁鋼板がVカシメを介して固着されることによって形成されたヨーク部の一部模式断面図である。It is a partial schematic cross section of the yoke part formed by fixing an electromagnetic steel plate via V caulking. Vカシメの他の形状を示す分割ヨーク部の一部模式断面図である。It is a partial schematic cross-sectional view of a divided yoke portion showing another shape of V-caulking. 本実施形態に係る回転電機の構成の一例を示す模式図である。It is a schematic diagram which shows an example of a structure of the rotary electric machine which concerns on this embodiment.

符号の説明Explanation of symbols

1 積層コア、2 回転電機、10 分割積層コア、12 リング、14 コイル、16 分割ヨーク部、17 ヨーク部、18,18a,18b ティース部、20 電磁鋼板、22,24 カシメ部、22a,24a 凹部、22b,24b 凸部、26 回転子、28 シャフト、30 回転子コア、32a,32b 永久磁石。   DESCRIPTION OF SYMBOLS 1 Laminated core, 2 Rotating electric machine, 10 Divided laminated core, 12 Ring, 14 Coil, 16 Divided yoke part, 17 Yoke part, 18, 18a, 18b Teeth part, 20 Electrical steel plate, 22, 24 Caulking part, 22a, 24a Recessed part , 22b, 24b convex part, 26 rotor, 28 shaft, 30 rotor core, 32a, 32b permanent magnet.

Claims (10)

複数の電磁鋼板が前記電磁鋼板に設けたカシメ部を介して固着することによって形成される環状のヨーク部及び前記ヨーク部の半径方向に突出するティース部を備える積層コアであって、
前記ヨーク部には、前記ティース部より固着強度の強いカシメ部を設け、前記ティース部には、前記ヨーク部より前記電磁鋼板の占積率を高めるカシメ部を設けることを特徴とする積層コア。
A laminated core comprising an annular yoke portion formed by fixing a plurality of electromagnetic steel plates via caulking portions provided on the electromagnetic steel plate and a tooth portion protruding in the radial direction of the yoke portion,
The laminated core is characterized in that the yoke portion is provided with a caulking portion having a stronger fixing strength than the teeth portion, and the tooth portion is provided with a caulking portion that increases a space factor of the electromagnetic steel sheet from the yoke portion.
複数の電磁鋼板が前記電磁鋼板に設けたカシメ部を介して固着することによって形成される環状のヨーク部及び前記ヨーク部の半径方向に突出するティース部を備える積層コアであって、
前記ティース部に設けられるカシメ部の深さが前記ヨーク部に設けられるカシメ部の深さより小さいことを特徴とする積層コア。
A laminated core comprising an annular yoke portion formed by fixing a plurality of electromagnetic steel plates via caulking portions provided on the electromagnetic steel plate and a tooth portion protruding in the radial direction of the yoke portion,
A laminated core, wherein a depth of a crimped portion provided in the teeth portion is smaller than a depth of a crimped portion provided in the yoke portion.
複数の電磁鋼板が前記電磁鋼板に設けたカシメ部を介して固着することによって形成される環状のヨーク部及び前記ヨーク部の半径方向に突出するティース部を備える積層コアであって、
前記ティース部に設けられるカシメ部の底辺の幅が前記ヨーク部に設けられるカシメ部の底辺の幅より大きいことを特徴とする積層コア。
A laminated core comprising an annular yoke portion formed by fixing a plurality of electromagnetic steel plates via caulking portions provided on the electromagnetic steel plate and a tooth portion protruding in the radial direction of the yoke portion,
The laminated core characterized in that the width of the bottom side of the crimping portion provided in the teeth portion is larger than the width of the bottom side of the crimping portion provided in the yoke portion.
複数の電磁鋼板が前記電磁鋼板に設けたカシメ部を介して固着することによって形成される環状のヨーク部及び前記ヨーク部の半径方向に突出するティース部を備える積層コアであって、
前記ヨーク部に設けられるカシメ部の底辺の幅が前記ヨーク部に設けられるカシメ部の深さより小さく、前記ティース部に設けられるカシメ部の底辺の幅が前記ティース部に設けられるカシメ部の深さより大きいことを特徴とする積層コア。
A laminated core comprising an annular yoke portion formed by fixing a plurality of electromagnetic steel plates via caulking portions provided on the electromagnetic steel plate and a tooth portion protruding in the radial direction of the yoke portion,
The width of the bottom part of the crimping part provided in the yoke part is smaller than the depth of the crimping part provided in the yoke part, and the width of the bottom part of the crimping part provided in the tooth part is larger than the depth of the crimping part provided in the tooth part. A laminated core that is large.
請求項1〜4のいずれか1項に記載の積層コアであって、前記ヨーク部に設けられるカシメ部は、Vカシメであり、前記ティース部に設けられるカシメ部は、平カシメであることを特徴とする積層コア。   It is a lamination | stacking core of any one of Claims 1-4, Comprising: The caulking part provided in the said yoke part is V caulking, and the caulking part provided in the said teeth part is flat caulking Features a laminated core. 複数の電磁鋼板が前期電磁鋼板に設けたカシメ部を介して固着することによって形成される環状のヨーク部及び前記ヨーク部の半径方向に突出するティース部を備える積層コアを含む回転電機であって、
前記ヨーク部には、前記ティース部より固着強度の強いカシメ部を設け、前記ティース部には、前記ヨーク部より前記電磁鋼板の占積率を高めるカシメ部を設けることを特徴とする回転電機。
A rotating electrical machine including a laminated core including an annular yoke portion formed by fixing a plurality of electromagnetic steel plates via caulking portions provided on the previous electromagnetic steel plate and a tooth portion protruding in the radial direction of the yoke portion. ,
A rotating electric machine characterized in that the yoke part is provided with a caulking part having a stronger fixing strength than the tooth part, and the tooth part is provided with a caulking part for increasing a space factor of the electromagnetic steel sheet from the yoke part.
複数の電磁鋼板が前期電磁鋼板に設けたカシメ部を介して固着することによって形成される環状のヨーク部及び前記ヨーク部の半径方向に突出するティース部を備える積層コアを含む回転電機であって、
前記ティース部に設けられるカシメ部の深さが前記ヨーク部に設けられるカシメ部の深さより小さいことを特徴とする回転電機。
A rotating electrical machine including a laminated core including an annular yoke portion formed by fixing a plurality of electromagnetic steel plates via caulking portions provided on the previous electromagnetic steel plate and a tooth portion protruding in the radial direction of the yoke portion. ,
A rotating electric machine characterized in that a depth of a caulking portion provided in the teeth portion is smaller than a depth of a caulking portion provided in the yoke portion.
複数の電磁鋼板が前期電磁鋼板に設けたカシメ部を介して固着することによって形成される環状のヨーク部及び前記ヨーク部の半径方向に突出するティース部を備える積層コアを含む回転電機であって、
前記ティース部に設けられるカシメ部の底辺の幅が前記ヨーク部に設けられるカシメ部の底辺の幅より大きいことを特徴とする回転電機。
A rotating electrical machine including a laminated core including an annular yoke portion formed by fixing a plurality of electromagnetic steel plates via caulking portions provided on the previous electromagnetic steel plate and a tooth portion protruding in the radial direction of the yoke portion. ,
The rotating electrical machine characterized in that the width of the bottom side of the caulking part provided in the teeth part is larger than the width of the base side of the caulking part provided in the yoke part.
複数の電磁鋼板が前期電磁鋼板に設けたカシメ部を介して固着することによって形成される環状のヨーク部及び前記ヨーク部の半径方向に突出するティース部を備える積層コアを含む回転電機であって、
前記ヨーク部に設けられるカシメ部の底辺の幅が前記ヨーク部に設けられるカシメ部の深さより小さく、前記ティース部に設けられるカシメ部の底辺の幅が前記ティース部に設けられるカシメ部の深さより大きいことを特徴とする回転電機。
A rotating electrical machine including a laminated core including an annular yoke portion formed by fixing a plurality of electromagnetic steel plates via caulking portions provided on the previous electromagnetic steel plate and a tooth portion protruding in the radial direction of the yoke portion. ,
The width of the bottom part of the crimping part provided in the yoke part is smaller than the depth of the crimping part provided in the yoke part, and the width of the bottom part of the crimping part provided in the tooth part is larger than the depth of the crimping part provided in the tooth part. A rotating electrical machine that is large.
請求項6〜9のいずれか1項に記載の回転電機であって、前記ヨーク部に設けられるカシメ部は、Vカシメであり、前記ティース部に設けられるカシメ部は、平カシメであることを特徴とする回転電機。   It is a rotary electric machine of any one of Claims 6-9, Comprising: The caulking part provided in the said yoke part is V caulking, and the caulking part provided in the said teeth part is flat caulking. A rotating electric machine that is characterized.
JP2007100295A 2007-04-06 2007-04-06 Laminated core and rotating electric machine Expired - Fee Related JP5012155B2 (en)

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JP2012016141A (en) * 2010-06-30 2012-01-19 Denso Corp Stator of rotation electrical machine
JP2013059262A (en) * 2012-12-28 2013-03-28 Mitsubishi Electric Corp Stator core and stator and motor and compressor
JP2014204472A (en) * 2013-04-01 2014-10-27 アスモ株式会社 Rotary electric machine
EP3000543A1 (en) * 2014-09-29 2016-03-30 Wilhelm Schröder GmbH Method for producing a sheet metal part with large wall thickness and such a sheet metal part
US9318923B2 (en) 2011-02-03 2016-04-19 Mitsui High-Tec, Inc. Laminated iron core and method for manufacturing same
WO2019012860A1 (en) * 2017-07-11 2019-01-17 株式会社三井ハイテック Layered iron core and method for manufacturing same
CN111146882A (en) * 2018-11-06 2020-05-12 三菱电机株式会社 Armature of rotating electric machine
CN111864922A (en) * 2019-04-25 2020-10-30 丰田自动车株式会社 Motor and method for manufacturing the same
WO2023097920A1 (en) * 2021-12-03 2023-06-08 广东美芝制冷设备有限公司 Stator iron core, motor, compressor, and refrigeration device

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JP2011120392A (en) * 2009-12-04 2011-06-16 Mitsubishi Electric Corp Stator core, stator, motor, and compressor
JP2012016141A (en) * 2010-06-30 2012-01-19 Denso Corp Stator of rotation electrical machine
US9318923B2 (en) 2011-02-03 2016-04-19 Mitsui High-Tec, Inc. Laminated iron core and method for manufacturing same
JP2013059262A (en) * 2012-12-28 2013-03-28 Mitsubishi Electric Corp Stator core and stator and motor and compressor
JP2014204472A (en) * 2013-04-01 2014-10-27 アスモ株式会社 Rotary electric machine
EP3000543A1 (en) * 2014-09-29 2016-03-30 Wilhelm Schröder GmbH Method for producing a sheet metal part with large wall thickness and such a sheet metal part
CN110800190A (en) * 2017-07-11 2020-02-14 株式会社三井高科技 Laminated iron core and manufacturing method thereof
JP2019022247A (en) * 2017-07-11 2019-02-07 株式会社三井ハイテック Lamination core and manufacturing method therefor
WO2019012860A1 (en) * 2017-07-11 2019-01-17 株式会社三井ハイテック Layered iron core and method for manufacturing same
CN110800190B (en) * 2017-07-11 2021-11-05 株式会社三井高科技 Laminated iron core and manufacturing method thereof
CN111146882A (en) * 2018-11-06 2020-05-12 三菱电机株式会社 Armature of rotating electric machine
JP2020078121A (en) * 2018-11-06 2020-05-21 三菱電機株式会社 Rotary electric machine armature
CN111864922A (en) * 2019-04-25 2020-10-30 丰田自动车株式会社 Motor and method for manufacturing the same
US11557431B2 (en) 2019-04-25 2023-01-17 Toyota Jidosha Kabushiki Kaisha Motor
CN111864922B (en) * 2019-04-25 2023-02-28 丰田自动车株式会社 Motor and method for manufacturing the same
WO2023097920A1 (en) * 2021-12-03 2023-06-08 广东美芝制冷设备有限公司 Stator iron core, motor, compressor, and refrigeration device

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