JP6707279B2 - Laminated iron core manufacturing method and laminated iron core manufacturing apparatus - Google Patents

Laminated iron core manufacturing method and laminated iron core manufacturing apparatus Download PDF

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JP6707279B2
JP6707279B2 JP2015238258A JP2015238258A JP6707279B2 JP 6707279 B2 JP6707279 B2 JP 6707279B2 JP 2015238258 A JP2015238258 A JP 2015238258A JP 2015238258 A JP2015238258 A JP 2015238258A JP 6707279 B2 JP6707279 B2 JP 6707279B2
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punch
laminated
core
punching
absorber
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JP2017108473A (en
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森 祐司
祐司 森
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YOSHIKAWAKOGYO CO.,LTD.
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    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01FMAGNETS; INDUCTANCES; TRANSFORMERS; SELECTION OF MATERIALS FOR THEIR MAGNETIC PROPERTIES
    • H01F41/00Apparatus or processes specially adapted for manufacturing or assembling magnets, inductances or transformers; Apparatus or processes specially adapted for manufacturing materials characterised by their magnetic properties
    • H01F41/02Apparatus or processes specially adapted for manufacturing or assembling magnets, inductances or transformers; Apparatus or processes specially adapted for manufacturing materials characterised by their magnetic properties for manufacturing cores, coils, or magnets

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Description

本発明は、帯状鋼板から鉄心片を打ち抜いて積層する積層鉄心の製造方法及び積層鉄心の製造装置に関する。 The present invention relates to a method for manufacturing a laminated core and an apparatus for manufacturing a laminated core in which an iron core piece is punched out from a strip-shaped steel sheet and laminated.

複数の鉄心片が積層された積層鉄心は、間欠的に移送される帯状鋼板から打ち抜いた鉄心片を積層し固定することによって形成される。各鉄心片は、かしめによって、あるいは、接着剤によって固定され、接着剤により鉄心片を固定する具体例が、例えば、特許文献1に記載されている。
特許文献1に記載の方法は、複数の吐出孔に連通する接着剤溜まりが設けられた接着塗布手段を下型(下金型)に設け、下型まで距離を有する位置に配された加圧装置から接着剤溜まりに所定の圧力で接着剤を供給し、複数の吐出孔から接着剤を押し出して帯状鋼板の下面に塗布するものである。
The laminated iron core in which a plurality of iron core pieces are laminated is formed by laminating and fixing the iron core pieces punched out from the band-shaped steel plates that are intermittently transferred. For example, Patent Document 1 describes a specific example in which each core piece is fixed by caulking or by an adhesive, and the core piece is fixed by the adhesive.
In the method described in Patent Document 1, an adhesive applying unit provided with an adhesive reservoir communicating with a plurality of ejection holes is provided in a lower mold (lower mold), and pressure is applied at a position having a distance to the lower mold. The adhesive is supplied from the device to the adhesive reservoir at a predetermined pressure, and the adhesive is extruded from a plurality of ejection holes and applied to the lower surface of the strip steel plate.

特開2013−48555号公報JP, 2013-48555, A

しかしながら、引用文献1に記載の方法においては、帯状鋼板の下面に所定量の接着剤を安定的に塗布するのが困難であり、結果として、接着剤の塗布量が多すぎたり不足したりして歩留まりが生じるという課題があった。
本発明は、かかる事情に鑑みてなされるもので、帯状鋼板に対する接着剤の付着量にばらつきが生じるのを抑制する積層鉄心の製造方法及び積層鉄心の製造装置を提供することを目的とする。
However, in the method described in Patent Document 1, it is difficult to stably apply a predetermined amount of adhesive to the lower surface of the strip-shaped steel sheet, and as a result, the amount of adhesive applied may be too large or may be insufficient. Therefore, there was a problem that the yield was generated.
The present invention has been made in view of the above circumstances, and an object of the present invention is to provide a method for manufacturing a laminated core and an apparatus for manufacturing a laminated core that suppress variations in the amount of adhesive adhered to a strip steel sheet.

前記目的に沿う第1の発明に係る積層鉄心の製造方法は、上型及び下型の間を間欠的に移送される帯状鋼板から順次、鉄心片を打ち抜いて積層する積層鉄心の製造方法において、前記帯状鋼板の前記鉄心片が打ち抜かれる打ち抜き領域の上面に接着剤を含ませた吸収体の下端の突起を接触させて該接着剤を塗布する工程Aと、前記上型に設けられたパンチで前記打ち抜き領域から前記鉄心片を打ち抜く工程Bと、打ち抜いた前記鉄心片を積層する工程Cとを有し、前記吸収体は、前記パンチの内に取り付けられ、該パンチと共に降下して、該パンチから下方に突出した状態の前記突起が、前記鉄心片が打ち抜かれる直前の前記打ち抜き領域の上面に接触し、前記吸収体には、供給機から加圧によって送られる前記接着剤を貯留する、前記パンチ内に収容されたタンクが連結されている。 A method for manufacturing a laminated core according to the first aspect of the present invention is a method for manufacturing a laminated core, in which a core strip is punched and laminated sequentially from a strip steel sheet that is intermittently transferred between an upper die and a lower die, A step A of applying the adhesive by bringing a protrusion at the lower end of an absorbent containing an adhesive into contact with the upper surface of a punching region of the strip-shaped steel plate where the iron core piece is punched, and a punch provided in the upper die. It has a step B of punching the core pieces from the punching region and a step C of stacking the punched core pieces, the absorber being mounted in the punch, descending with the punch, From above, the projection in a state of protruding downward comes into contact with the upper surface of the punching region immediately before the iron core piece is punched, and the absorber stores the adhesive sent by pressure from a feeder , The tanks contained in the punch are connected.

第1の発明に係る積層鉄心の製造方法において、積層鉄心の最上に積層される前記鉄心片が打ち抜かれる最上用の前記打ち抜き領域に対し、前記吸収体は、前記突起が前記パンチ内に収容され該最上用の打ち抜き領域に非接触な状態で降下するのが好ましい。 In the method for manufacturing a laminated core according to the first aspect of the present invention, in the uppermost punching region in which the core piece laminated on the top of the laminated core is punched, the absorber has the protrusions accommodated in the punch. It is preferable to descend without contacting the uppermost punching area.

前記目的に沿う第2の発明に係る積層鉄心の製造装置は、上型及び下型の間を間欠的に移送される帯状鋼板から順次、鉄心片を打ち抜いて積層する積層鉄心の製造装置において、前記帯状鋼板の前記鉄心片が打ち抜かれる打ち抜き領域の上面に接触して塗布する接着剤を含んだ吸収体を、前記上型に備え、前記吸収体は、前記鉄心片を打ち抜くパンチ内に取り付けられ、該パンチの下方から下端の突起が突出した状態で該パンチと共に降下して前記打ち抜き領域の上面に接触し、前記吸収体には、供給機から加圧によって送られる前記接着剤を貯留する、前記パンチ内に収容されたタンクが連結されている。 A laminated iron core manufacturing apparatus according to a second aspect of the present invention according to the above object is a laminated core manufacturing apparatus for sequentially punching and stacking core pieces from a strip-shaped steel sheet that is intermittently transferred between an upper die and a lower die, The upper die is provided with an absorber containing an adhesive applied in contact with the upper surface of a punching region where the core piece of the strip-shaped steel plate is punched, and the absorber is mounted in a punch for punching the core piece. A bottom protrusion protruding from the lower side of the punch is lowered together with the punch to come into contact with the upper surface of the punching region, and the absorbent stores the adhesive sent from the feeder by pressure . The tanks contained in the punch are connected.

第2の発明に係る積層鉄心の製造装置において、前記吸収体を前記パンチに対して上昇させ、該吸収体の前記突起が該パンチの下方から突出した状態から該パンチ内に収容された状態にする引き上げ手段を、更に備えるのが好ましい。 In the laminated core manufacturing apparatus according to the second aspect of the present invention, the absorber is raised with respect to the punch so that the protrusion of the absorber protrudes from below the punch to be accommodated in the punch. It is preferable to further include a lifting means for

第1の発明に係る積層鉄心の製造方法及び第2の発明に係る積層鉄心の製造装置によれば、帯状鋼板の打ち抜き領域の上面あるいは下面に接着剤を含ませた吸収体を接触させて接着剤を塗布することができるので、帯状鋼板に対する接着剤の付着量にばらつきが生じるのを抑制可能である。 According to the method for manufacturing a laminated core according to the first invention and the apparatus for manufacturing a laminated core according to the second invention, an absorbent body containing an adhesive is brought into contact with and bonded to the upper surface or the lower surface of the punching region of the strip steel sheet. Since the agent can be applied, it is possible to suppress variations in the adhesion amount of the adhesive to the strip-shaped steel sheet.

本発明の一実施の形態に係る積層鉄心の製造装置の説明図である。It is explanatory drawing of the manufacturing apparatus of the laminated iron core which concerns on one embodiment of this invention. 同積層鉄心の製造装置によって鉄心片が打ち抜かれる帯状鋼板の平面図である。FIG. 3 is a plan view of a strip-shaped steel plate from which an iron core piece is punched out by the same laminated iron core manufacturing apparatus. 帯状鋼板に接着剤を塗布する機構を示す説明図である。It is explanatory drawing which shows the mechanism which applies an adhesive agent to a strip steel plate.

続いて、添付した図面を参照しつつ、本発明を具体化した実施の形態につき説明し、本発明の理解に供する。
図1、図3に示すように、本発明の一実施の形態に係る積層鉄心の製造装置10は、上型11及び下型12の間を間欠的に移送される帯状鋼板Wから順次、鉄心片Tを打ち抜いて積層する装置である。以下、詳細に説明する。
Subsequently, embodiments of the present invention will be described with reference to the accompanying drawings to provide an understanding of the present invention.
As shown in FIG. 1 and FIG. 3, a laminated core manufacturing apparatus 10 according to an embodiment of the present invention is configured such that an iron core is sequentially transferred from a strip-shaped steel plate W that is intermittently transferred between an upper die 11 and a lower die 12. This is a device for punching and stacking pieces T. The details will be described below.

積層鉄心の製造装置10は、図1に示すように、帯状鋼板Wを間欠的に移送するロールフィーダ13と、帯状鋼板Wの移送方向に沿ってロールフィーダ13の上流側に配された金型14を有している。
金型14は、パンチホルダ15及びパンチホルダ15に固定された複数のパンチ16〜19を有する上型11と、パンチ16〜19が挿通されたストリッパプレート20と、パンチ16〜19にそれぞれ対応する図示しないダイが設けられた下型12を具備している。
帯状鋼板Wは、ロールフィーダ13の作動により、上型11と下型12の間で所定距離の進行と一次停止を繰り返して、間欠的に移動する。
As shown in FIG. 1, a laminated core manufacturing apparatus 10 includes a roll feeder 13 for intermittently transferring a strip-shaped steel plate W, and a die arranged upstream of the roll feeder 13 along the transportation direction of the strip-shaped steel plate W. Have fourteen.
The mold 14 corresponds to the upper die 11 having the punch holder 15 and the plurality of punches 16 to 19 fixed to the punch holder 15, the stripper plate 20 in which the punches 16 to 19 are inserted, and the punches 16 to 19, respectively. The lower die 12 is provided with a die (not shown).
The strip steel plate W moves intermittently between the upper die 11 and the lower die 12 by repeating a predetermined distance and a primary stop by the operation of the roll feeder 13.

上型11は、ストリッパプレート20と共に降下し、ストリッパプレート20が一次停止している帯状鋼板Wを下型12に押さえ付けた状態から、更に降下して、パンチ16〜19で帯状鋼板Wに打ち抜き加工を行う。
帯状鋼板Wは、図1、図2に示すように、複数のパンチ16による打ち抜き加工によってパイロット孔H1が形成され、複数のパンチ17による打ち抜き加工によってスロット孔H2が形成され、パンチ18による打ち抜き加工によってシャフト孔H3が形成され、パンチ19による外形打ち抜きによって、図3に示す鉄心片Tが帯状鋼板Wから打ち抜かれる。なお、図3においては、ストリッパプレート20の記載を省略している。
The upper die 11 descends together with the stripper plate 20, and further lowers from the state where the strip steel plate W on which the stripper plate 20 is temporarily stopped is pressed against the lower die 12 and punches the strip steel plate W with the punches 16 to 19. Perform processing.
As shown in FIGS. 1 and 2, the strip steel plate W has a pilot hole H1 formed by punching with a plurality of punches 16, a slot hole H2 formed by punching with a plurality of punches 17, and a punching work by a punch 18. The shaft hole H3 is formed by the punching, and the core piece T shown in FIG. Note that the stripper plate 20 is omitted in FIG.

図2に示すように、帯状鋼板Wにおいて、鉄心片Tが打ち抜かれる領域を、以下、「打ち抜き領域S」とも言う。
鉄心片Tを打ち抜くパンチ19は、図3に示すように、管状に形成され、内側に、接着剤を含んだスポンジからなる吸収体21が取り付けられている。吸収体21は、円柱状部22と、円柱状部22の下側に連結され下端に複数の突起23が形成されたベース部24を備えている。各突起23は、平面視して、帯状鋼板Wの打ち抜き領域S内、かつ、スロット孔H2やシャフト孔H3が非形成の領域に位置するように配されている。
As shown in FIG. 2, in the strip-shaped steel plate W, the region where the core piece T is punched out is also referred to as “punching region S” below.
As shown in FIG. 3, the punch 19 for punching out the iron core piece T is formed in a tubular shape, and an absorber 21 made of sponge containing an adhesive is attached to the inside thereof. The absorber 21 includes a columnar portion 22 and a base portion 24 that is connected to the lower side of the columnar portion 22 and has a plurality of protrusions 23 formed at the lower end. Each of the protrusions 23 is arranged so as to be located in the punching region S of the strip-shaped steel plate W and in a region where the slot hole H2 and the shaft hole H3 are not formed in plan view.

円柱状部22の上側には、接着剤の供給機25に管26を介して接続され、パンチ19内に収容されたタンク27が連結されている。タンク27は、供給機25から加圧によって送られる接着剤を貯留し、円柱状部22に含有されている接着剤の減少に合わせ、貯留している接着剤を円柱状部22に供給する。円柱状部22に含まれている接着剤は、ベース部24に含有されている接着剤の減少に伴って、ベース部24に移動し、各突起23に常に所定量の接着剤が含まれるようにする。 A tank 27 housed in the punch 19 is connected to the upper side of the cylindrical portion 22 by being connected to an adhesive feeder 25 via a pipe 26. The tank 27 stores the adhesive sent from the feeder 25 by pressurization, and supplies the stored adhesive to the columnar section 22 in accordance with the decrease of the adhesive contained in the columnar section 22. The adhesive contained in the cylindrical portion 22 moves to the base portion 24 as the adhesive contained in the base portion 24 decreases, so that each protrusion 23 always contains a predetermined amount of the adhesive. To

パンチ19内のタンク27の上側には、対となるカム28及び従節部材29が設けられている。従節部材29はタンク27の上部に固定され、吸収体21、タンク27及び従節部材29は、パンチ19内に設けられた弾性部材30、31によって上方、即ち、カム28に向かって付勢されている。
カム28は、パンチホルダ15によって上下方向の動作が制限され、パンチ19に対して上下方向に変位しない状態にあり、駆動源32から駆動力を与えられて水平移動する動力伝達部材33と共に水平移動する。
A pair of cams 28 and follower members 29 are provided above the tank 27 in the punch 19. The follower member 29 is fixed to the upper portion of the tank 27, and the absorber 21, the tank 27 and the follower member 29 are urged upward by the elastic members 30 and 31 provided in the punch 19, that is, toward the cam 28. Has been done.
The movement of the cam 28 in the vertical direction is restricted by the punch holder 15, and the cam 28 is not displaced in the vertical direction with respect to the punch 19. To do.

カム28は、駆動源32の作動によって、カム28と従節部材29が噛み合あわず、従節部材29の重心がカム28の重心から最も遠ざかった非噛合位置と、カム28と従節部材29が噛み合って、従節部材29の重心がカム28の重心に最も接近した噛合位置の間を水平移動する。
カム28が非噛合位置にあるとき、吸収体21、タンク27及び従節部材29は、パンチホルダ15を基準にして最も下位置に配され、各突起23がパンチ19の下方から突出した状態となる。
The cam 28 does not mesh with the cam 28 and the follower member 29 due to the operation of the drive source 32, and the center of gravity of the follower member 29 is farthest from the center of gravity of the cam 28. 29 are meshed with each other, and the center of gravity of the follower member 29 horizontally moves between the meshing positions closest to the center of gravity of the cam 28.
When the cam 28 is in the non-meshing position, the absorber 21, the tank 27, and the follower member 29 are arranged at the lowest position with respect to the punch holder 15, and the projections 23 project from below the punch 19. Become.

そして、カム28が噛合位置にあるとき、吸収体21、タンク27及び従節部材29は、パンチホルダ15を基準にして最も上位置に配され、各突起23が、パンチ19内に収容され、パンチ19の下方から突出していない状態となる。
本実施の形態では、主として、カム28、従節部材29、弾性部材30、31、駆動源32及び動力伝達部材33によって、引き上げ手段が構成されている。
Then, when the cam 28 is in the meshing position, the absorber 21, the tank 27, and the follower member 29 are arranged at the highest position with respect to the punch holder 15, and the protrusions 23 are housed in the punch 19. The punch 19 is not projected from below.
In this embodiment, the cam 28, the follower member 29, the elastic members 30 and 31, the drive source 32, and the power transmission member 33 mainly constitute the pulling-up means.

上型11を降下させてパンチ19で帯状鋼板Wの打ち抜き領域Sから鉄心片Tを打ち抜く際、カム28は非噛合位置にあり、吸収体21は、各突起23がパンチ19の下方から突出した状態でパンチ19と共に降下する。パンチ19と共に降下した吸収体21は、パンチ19が帯状鋼板Wから鉄心片Tを打ち抜く前に、各突起23が打ち抜き領域Sの上面の所定位置に接触して接着剤を塗布する。したがって、各突起23、即ち、吸収体21は、打ち抜き領域Sの上面に接触して塗布する接着剤を含んでいることとなる。 When the upper die 11 is lowered to punch the core piece T from the punching region S of the strip steel plate W with the punch 19, the cam 28 is in the non-meshing position, and the absorber 21 has the projections 23 protruding from the lower side of the punch 19. In the state, it descends with the punch 19. In the absorber 21 that has descended together with the punch 19, before the punch 19 punches the core piece T from the strip steel plate W, each protrusion 23 comes into contact with a predetermined position on the upper surface of the punched region S and applies an adhesive. Therefore, each of the protrusions 23, that is, the absorber 21 includes an adhesive agent that is applied in contact with the upper surface of the punched region S.

そして、打ち抜き領域Sの上面の複数箇所に接着剤が塗布された直後に、パンチ19が打ち抜き領域Sに接触し、帯状鋼板Wから鉄心片Tを打ち抜く。
下型12には、図3に示すように、パンチ19の直下に、鉄心片Tが積層される積層部34が設けられている。帯状鋼板Wから打ち抜かれて落下する鉄心片Tは、一つ前に帯状鋼板Wから打ち抜かれて積層部34で積層された状態にある鉄心片T(積層部34で積層されている鉄心片Tの中で最も上位置にある鉄心片T)に載り、下面に、その一つ前に打ち抜かれた鉄心片Tの上面に付着している接着剤が付着する。
Immediately after the adhesive is applied to the upper surface of the punching area S, the punch 19 contacts the punching area S and punches the core piece T from the strip steel plate W.
As shown in FIG. 3, the lower die 12 is provided with a laminated portion 34 in which the core pieces T are laminated immediately below the punch 19. The core piece T punched out from the strip-shaped steel plate W and falling is the core piece T punched out from the strip-shaped steel sheet W and laminated in the laminating portion 34 (the iron core piece T laminated in the laminating portion 34). Of the core piece T), which is located at the uppermost position of the above, and the adhesive agent attached to the upper surface of the core piece T punched out immediately before is attached to the lower surface.

積層部34で積層された鉄心片Tの数が所定枚数に達したタイミングで、所定枚数の鉄心片Tが積層された鉄心片Tの群は、積層部34から取り出され、加熱されて接着剤が固化し、積層された所定枚数の鉄心片Tが固定された積層鉄心となる。
ここで、積層鉄心の最上に積層される(配される)鉄心片Tには接着剤を塗布しないようにする必要がある。
When the number of iron core pieces T laminated in the laminating section 34 reaches a predetermined number, a group of the iron core pieces T in which a predetermined number of the iron core pieces T are laminated are taken out from the laminating section 34 and heated to form an adhesive. Is solidified to form a laminated core in which a predetermined number of laminated core pieces T are fixed.
Here, it is necessary not to apply an adhesive to the core piece T laminated (disposed) on the top of the laminated core.

そのため、積層鉄心の最上に積層される鉄心片Tが打ち抜かれる(に対応する)打ち抜き領域S(以下、「最上用の打ち抜き領域S」とも言う)に対しては、カム28が噛合位置に配され、吸収体21は、突起23(即ち、吸収体21の下部)がパンチ19内に収容されて、最上用の打ち抜き領域Sに非接触な状態で、パンチ19と共に降下する。したがって、パンチ19は、突起23に含有されている接着剤を最上用の打ち抜き領域Sに付着させることなく、帯状鋼板Wから鉄心片Tを打ち抜くことができる。 Therefore, the cam 28 is arranged at the meshing position with respect to the punching area S (hereinafter, also referred to as “uppermost punching area S”) in which the core piece T laminated on the top of the laminated iron core is punched (corresponding to). Then, the absorbent body 21 is lowered together with the punch 19 in a state where the protrusion 23 (that is, the lower portion of the absorbent body 21) is accommodated in the punch 19 and is not in contact with the uppermost punching region S. Therefore, the punch 19 can punch the core piece T from the strip-shaped steel plate W without adhering the adhesive agent contained in the protrusion 23 to the punching area S for the uppermost portion.

次に、積層鉄心の製造装置10を適用した本発明の一実施の形態に係る積層鉄心の製造方法について説明する。
その積層鉄心の製造方法は、上型11及び下型12の間を間欠的に移送される帯状鋼板Wから順次、鉄心片Tを打ち抜いて積層するものであり、帯状鋼板Wの打ち抜き領域Sの上面に吸収体21の複数の突起23を接触させて接着剤を塗布する工程(工程A)と、パンチ19で打ち抜き領域Sから鉄心片Tを打ち抜く工程(工程B)と、打ち抜いた鉄心片Tを積層する工程(工程C)とを有する。
Next, a method for manufacturing a laminated core according to an embodiment of the present invention to which the apparatus 10 for manufacturing a laminated core is applied will be described.
In the method for manufacturing the laminated core, the core pieces T are sequentially punched out from the strip-shaped steel plates W that are intermittently transferred between the upper die 11 and the lower die 12 to be laminated. The step of applying the adhesive by bringing the plurality of protrusions 23 of the absorber 21 into contact with the upper surface (step A), the step of punching the core piece T from the punching region S by the punch 19 (step B), and the punched core piece T And a step of stacking (step C).

そして、本実施の形態において、吸収体21は、パンチ19内に取り付けられ、パンチ19と共に降下して、パンチ19から下方に突出した状態の複数の突起23(下部)が、鉄心片Tが打ち抜かれる直前の打ち抜き領域Sの上方から降下して打ち抜き領域Sの上面に接触する。更に、本実施の形態では、最上用の打ち抜き領域Sに対し、吸収体21は、突起23がパンチ19内に収容され最上用の打ち抜き領域Sに非接触な状態で降下するため、積層鉄心の最上に積層される鉄心片Tの上面には接着剤が塗布されない。 Then, in the present embodiment, the absorber 21 is mounted in the punch 19, descends together with the punch 19, and the plurality of projections 23 (lower portions) protruding downward from the punch 19 are punched out by the core piece T. It comes down from above the punching area S immediately before the punching area S and comes into contact with the upper surface of the punching area S. Further, in the present embodiment, since the protrusions 23 are accommodated in the punch 19 and the absorber 21 descends in the non-contact state with respect to the uppermost punching region S in the punch 19, the laminated body of the laminated core is reduced. No adhesive is applied to the upper surface of the core piece T that is laminated on the top.

以上、本発明の実施の形態を説明したが、本発明は、上記した形態に限定されるものでなく、要旨を逸脱しない条件の変更等は全て本発明の適用範囲である。
例えば、吸収体を上型でなく、下型に設けて打ち抜き領域の下面に接着剤を塗布するようにしてもよい。吸収体を下型に設ける場合、帯状鋼板から鉄心片を打ち抜く位置より上流側で打ち抜き領域の下面に接着剤を塗布するのが設計を簡素にする上で好ましい。
また、吸収体を上型に設けて、打ち抜き領域の上面に接着剤を塗布する場合も、帯状鋼板から鉄心片を打ち抜く位置より上流側で打ち抜き領域に接着剤を塗布するようにしてもよい。
Although the embodiments of the present invention have been described above, the present invention is not limited to the above-described embodiments, and changes in conditions and the like without departing from the gist are all within the scope of application of the present invention.
For example, the absorber may be provided not in the upper mold but in the lower mold, and the adhesive may be applied to the lower surface of the punching region. When the absorber is provided in the lower die, it is preferable to apply an adhesive to the lower surface of the punching region upstream from the position where the core piece is punched from the strip-shaped steel plate in order to simplify the design.
Also, when the absorber is provided in the upper mold and the adhesive is applied to the upper surface of the punched region, the adhesive may be applied to the punched region upstream from the position where the core piece is punched from the strip steel plate.

そして、吸収体として、スポンジの代わりに不織布や多孔質のゴムやその他の素材を採用することも可能であり、更に、吸収体は、打ち抜き領域に接着剤を塗布できるものであればよく、必ずしも突起を有する必要はない。
また、吸収体をパンチに対して上昇させる引き上げ手段は、必ずしも必要ではなく、例えば、所定のタイミングで吸収体の下部を覆う機構によって最上用の打ち抜き領域に接着剤を塗布しないようにしてもよい。更に、引き上げ手段を採用する場合も、引き上げ手段はカムを利用したものに限定されない。
Then, as the absorber, it is also possible to employ a non-woven fabric or porous rubber or other material instead of the sponge, and further, the absorber may be any one that can apply an adhesive to the punched area, It need not have protrusions.
Further, the lifting means for raising the absorber with respect to the punch is not always necessary, and for example, the adhesive may not be applied to the uppermost punching region by a mechanism that covers the lower part of the absorber at a predetermined timing. .. Further, when adopting the lifting means, the lifting means is not limited to the one using the cam.

10:積層鉄心の製造装置、11:上型、12:下型、13:ロールフィーダ、14:金型、15:パンチホルダ、16〜19:パンチ、20:ストリッパプレート、21:吸収体、22:円柱状部、23:突起、24:ベース部、25:供給機、26:管、27:タンク、28:カム、29:従節部材、30、31:弾性部材、32:駆動源、33:動力伝達部材、34:積層部、W:帯状鋼板、T:鉄心片、H1:パイロット孔、H2:スロット孔、H3:シャフト孔、S:打ち抜き領域 10: laminated core manufacturing apparatus, 11: upper mold, 12: lower mold, 13: roll feeder, 14: mold, 15: punch holder, 16 to 19: punch, 20: stripper plate, 21: absorber, 22 : Cylindrical part, 23: Protrusion, 24: Base part, 25: Feeder, 26: Pipe, 27: Tank, 28: Cam, 29: Follower member, 30, 31: Elastic member, 32: Drive source, 33 : Power transmission member, 34: laminated portion, W: strip steel plate, T: iron core piece, H1: pilot hole, H2: slot hole, H3: shaft hole, S: punching region

Claims (4)

上型及び下型の間を間欠的に移送される帯状鋼板から順次、鉄心片を打ち抜いて積層する積層鉄心の製造方法において、
前記帯状鋼板の前記鉄心片が打ち抜かれる打ち抜き領域の上面に接着剤を含ませた吸収体の下端の突起を接触させて該接着剤を塗布する工程Aと、
前記上型に設けられたパンチで前記打ち抜き領域から前記鉄心片を打ち抜く工程Bと、
打ち抜いた前記鉄心片を積層する工程Cとを有し、
前記吸収体は、前記パンチの内に取り付けられ、該パンチと共に降下して、該パンチから下方に突出した状態の前記突起が、前記鉄心片が打ち抜かれる直前の前記打ち抜き領域の上面に接触し、
前記吸収体には、供給機から加圧によって送られる前記接着剤を貯留する、前記パンチ内に収容されたタンクが連結されていることを特徴とする積層鉄心の製造方法。
From a strip-shaped steel sheet that is intermittently transferred between the upper die and the lower die, in a method for manufacturing a laminated core in which iron core pieces are punched and laminated,
A step A of applying the adhesive by bringing a protrusion at a lower end of an absorbent containing an adhesive into contact with an upper surface of a punching region where the core piece of the strip-shaped steel plate is punched;
A step B of punching the core piece from the punching region with a punch provided in the upper die;
And a step C of stacking the punched iron core pieces,
The absorber is mounted in the punch, descends together with the punch, and the projection in a state of protruding downward from the punch contacts the upper surface of the punching region immediately before the core piece is punched,
A method for manufacturing a laminated core , wherein a tank , which stores the adhesive sent from a feeder by pressure, is connected to the absorber and is accommodated in the punch .
請求項記載の積層鉄心の製造方法において、積層鉄心の最上に積層される前記鉄心片が打ち抜かれる最上用の前記打ち抜き領域に対し、前記吸収体は、前記突起が前記パンチ内に収容され該最上用の打ち抜き領域に非接触な状態で降下することを特徴とする積層鉄心の製造方法。 2. The method of manufacturing a laminated core according to claim 1 , wherein the protrusion of the absorber is accommodated in the punch with respect to the uppermost punching region where the core piece laminated on the uppermost of the laminated core is punched. A method for manufacturing a laminated core, characterized by descending in a non-contact state with a punching region for topmost. 上型及び下型の間を間欠的に移送される帯状鋼板から順次、鉄心片を打ち抜いて積層する積層鉄心の製造装置において、
前記帯状鋼板の前記鉄心片が打ち抜かれる打ち抜き領域の上面に接触して塗布する接着剤を含んだ吸収体を、前記上型に備え、前記吸収体は、前記鉄心片を打ち抜くパンチ内に取り付けられ、該パンチの下方から下端の突起が突出した状態で該パンチと共に降下して前記打ち抜き領域の上面に接触し、前記吸収体には、供給機から加圧によって送られる前記接着剤を貯留する、前記パンチ内に収容されたタンクが連結されていることを特徴とする積層鉄心の製造装置。
In a laminated iron core manufacturing apparatus for sequentially punching and stacking core pieces from a strip-shaped steel sheet that is intermittently transferred between an upper die and a lower die,
The upper die is provided with an absorber containing an adhesive applied in contact with the upper surface of a punching region where the core piece of the strip-shaped steel plate is punched, and the absorber is mounted in a punch for punching the core piece. , The lower end projection protruding from the lower side of the punch is lowered together with the punch to come into contact with the upper surface of the punching area, and the absorbent stores the adhesive fed by pressure from a feeder . A manufacturing apparatus for a laminated core, wherein tanks accommodated in the punches are connected to each other.
請求項記載の積層鉄心の製造装置において、前記吸収体を前記パンチに対して上昇させ、該吸収体の前記突起が該パンチの下方から突出した状態から該パンチ内に収容された状態にする引き上げ手段を、更に備えることを特徴とする積層鉄心の製造装置。 4. The laminated iron core manufacturing apparatus according to claim 3 , wherein the absorber is lifted with respect to the punch so that the protrusion of the absorber protrudes from below the punch and is accommodated in the punch. An apparatus for manufacturing a laminated core, further comprising pulling means.
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