CN105375236A - Commutator mica sheet and copper sheet mixed arrangement device - Google Patents

Commutator mica sheet and copper sheet mixed arrangement device Download PDF

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Publication number
CN105375236A
CN105375236A CN201510587970.0A CN201510587970A CN105375236A CN 105375236 A CN105375236 A CN 105375236A CN 201510587970 A CN201510587970 A CN 201510587970A CN 105375236 A CN105375236 A CN 105375236A
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China
Prior art keywords
sheet
mould
bracket
copper sheet
copper
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Granted
Application number
CN201510587970.0A
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Chinese (zh)
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CN105375236B (en
Inventor
梁瑜
肖开文
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Meizhou Kai Yu Automation Equipment Co Ltd
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Meizhou Kai Yu Automation Equipment Co Ltd
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Priority to CN201510587970.0A priority Critical patent/CN105375236B/en
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Application granted granted Critical
Publication of CN105375236B publication Critical patent/CN105375236B/en
Expired - Fee Related legal-status Critical Current
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Abstract

A commutator mica sheet and copper sheet mixed arrangement device comprises a base, a sheet arrangement mold assembly, and a mold driving assembly. The mold body of the sheet arrangement mold assembly is internally sleeved with sheet inserting molds, and the front ends of the sheet inserting molds are each equipped with a copper sheet blocking column. A mica sheet slot is formed between every two adjacent copper sheet blocking columns. The inside of the sheet inserting molds is coaxially sleeved with a bracket mold, and a bracket blocking column is formed at the front end of the bracket mold. For sheet arrangement, mica sheets are inserted into the mica sheet slots first, and then, copper sheets are aligned with the copper sheet blocking columns, the copper sheets are pushed so as to push the sheet inserting molds to retract into mold cavity holes, and finally, the mica sheets are each clamped between two copper sheets. For sheet inserting, inserted sheets are pushed so as to push the bracket mold to retract, and sheet inserting is completed. The production efficiency is high, the yield of processing is improved, and the degree of automation of commutator sheet inserting production can be improved.

Description

Megohmit(e) and copper sheet mixing slice arranging apparatus
Technical field
The present invention relates to automatic slice inserting machine technical field, particularly relate to a kind of megohmit(e) and copper sheet mixing slice arranging apparatus.
Background technology
Commutator is that the one on motor commonly uses accessory.The basic structure of commutator surrounds annular by multiple contact chip (also referred to as copper sheet), connect epitrochanterian each contact respectively, two of outside connection are called that brush contacts with it, only contact two wherein simultaneously, for ensureing spaced insulation during each copper sheet production and assembly, during by copper sheet and phenolic moulding powder die casting, need first to be plugged in often between adjacent two copper sheets with mica sheet interval, and copper sheet and mica sheet are inserted on inserted sheet support as a transition operation.
Traditional copper segment is inserted in the copper sheet slot of inserted sheet support, and all adopts artificial plug-in mounting one by one to complete when being inserted between adjacent copper sheet by mica sheet; Adopt hand assembled, its production efficiency is very low, and labour intensity is large, and mica sheet is thin and crisp, and very easily cause it cracked during insertion, grafting yields is not high, can not meet the large need of production of modernization.
Summary of the invention
Based on this, be necessary for the problems referred to above, provide one to be conducive to enhancing productivity, improve processing yields, improve megohmit(e) and the copper sheet mixing slice arranging apparatus of production automation degree.
A kind of megohmit(e) and copper sheet mixing slice arranging apparatus, comprising:
Base, is provided with reciprocating motion driving mechanism;
Screening die assembly, be slidably connected to described base and be connected with described reciprocating motion driving mechanism output, comprise die ontology, described die ontology offers cavity hole, the inserted sheet mould that can move axially is arranged with in described cavity hole, described inserted sheet die nose uniform intervals is provided with copper sheet bumping post, mica sheet slot is formed between every two adjacent copper sheet bumping posts, described copper sheet bumping post and copper sheet cross sectional shape match, described mica sheet slot and mica sheet cross sectional shape match, in described inserted sheet mould, coaxial sleeve is provided with the bracket mould that can move axially, described bracket mould front end is formed with the support bumping post with inserted sheet bracket cross section form fit,
Mould driven unit, comprises the first piston mechanism driving described inserted sheet mould, and drives the second piston mechanism of described bracket mould.
Wherein in an embodiment, described bracket mould front end face offers location hole.
Wherein in an embodiment, the location hole of the described location hole side of being taper hole shape.
Wherein in an embodiment, described screening die assembly also comprises dividing and positioning mechanism, described inserted sheet mould is cylindrical shape and is sheathed in described cavity hole pivotly, and described dividing and positioning mechanism is connected to described inserted sheet mould rear end, and dividing and positioning mechanism is electrically connected with stepping motor.
Wherein in an embodiment, described die ontology both sides offer the guide groove of through sidewall, described mould driven unit also includes the first transmission bracket and the second transmission bracket, described first transmission bracket is connected to first piston mechanism output, and stretch into from die ontology two side respectively from described guide groove and be fixed in described inserted sheet mould, described second transmission bracket is connected to the second piston mechanism output, and stretches into from die ontology two side respectively from guide groove and be fixed in described bracket mould.
Wherein in an embodiment, described mould driven unit also comprises the 3rd piston mechanism and the 3rd transmission bracket, described is all connected to described 3rd transmission bracket with piston mechanism and the second piston mechanism, and described 3rd transmission bracket is connected to the output of described 3rd piston mechanism.
Above-mentioned megohmit(e) and copper sheet mixing slice arranging apparatus, first mica sheet is inserted mica sheet slot respectively, again by copper sheet and the contraposition of described copper sheet bumping post, promote copper sheet, thus promotion inserted sheet mould is retracted vertically in cavity hole, thus each mica sheet is held between two copper sheets, during inserted sheet, by inserted sheet support and the contraposition of described support bumping post, promote inserted sheet support, thus promotion bracket mould is retracted vertically in cavity hole, thus mica sheet and copper sheet are inserted inserted sheet support, production efficiency is high, and all only do axial reciprocating when the screening of screening die assembly and inserted sheet and move, consistent with mica sheet direction of insertion, so avoid the mica sheet that fractures, improve processing yields, be conducive to the production automation degree of reverser inserting sheet.
Accompanying drawing explanation
In order to be illustrated more clearly in the embodiment of the present invention or technical scheme of the prior art, be briefly described to the accompanying drawing used required in embodiment or description of the prior art below, apparently, accompanying drawing in the following describes is only some embodiments of the present invention, for those of ordinary skill in the art, under the prerequisite not paying creative work, other accompanying drawing can also be obtained according to these accompanying drawings.
Fig. 1 is the structural representation of megohmit(e) and copper sheet mixing slice arranging apparatus in an execution mode;
Fig. 2 is that in an execution mode, megohmit(e) and copper sheet mixing slice arranging apparatus are in operating state partial schematic diagram when inserting copper sheet.
Wherein: mixing slice arranging apparatus 30, track 310, base 320, screening die assembly 330, inserted sheet mould 331, copper sheet bumping post 3311, mica sheet slot 3312, bracket mould 332, location hole 3322, dividing and positioning mechanism 333, first piston mechanism 341, second piston mechanism 342, first transmission bracket 343, second transmission bracket 344, the 3rd piston mechanism 345, the 3rd transmission bracket 346, reciprocating motion driving mechanism 350.
Embodiment
For the ease of understanding the present invention, below with reference to relevant drawings, the present invention is described more fully.Preferred embodiment of the present invention is given in accompanying drawing.But the present invention can realize in many different forms, is not limited to embodiment described herein.On the contrary, provide the object of these embodiments be make the understanding of disclosure of the present invention more comprehensively thorough.
As depicted in figs. 1 and 2, a kind of megohmit(e) and copper sheet mixing slice arranging apparatus, comprising:
Base 320, is slidably connected to described track 310, is provided with reciprocating motion driving mechanism 350.
Screening die assembly 330, be slidably connected to described base 320 and be connected with described reciprocating motion driving mechanism 350 output, comprise die ontology, described die ontology offers cavity hole, is arranged with the inserted sheet mould 331 that can move axially in described cavity hole.Described inserted sheet mould 331 front end uniform intervals is provided with copper sheet bumping post 3311, mica sheet slot 3312 is formed between every two adjacent copper sheet bumping posts 3311, described copper sheet bumping post 3311 matches with copper sheet cross sectional shape, and described mica sheet slot 3312 matches with mica sheet cross sectional shape.In described inserted sheet mould 331, coaxial sleeve is provided with the bracket mould 332 that can move axially, and described bracket mould 332 front end is formed with the support bumping post with inserted sheet bracket cross section form fit.
Mould driven unit, comprises the first piston mechanism 341 driving described inserted sheet mould 331, and drives the second piston mechanism 342 of described bracket mould 332.
As depicted in figs. 1 and 2, above-mentioned megohmit(e) and copper sheet mixing slice arranging apparatus, first insert mica sheet slot 3312 respectively by mica sheet.Again by copper sheet and the contraposition of described copper sheet bumping post 3311, promote copper sheet, thus promotion inserted sheet mould 331 is retracted in cavity hole vertically, thus each mica sheet is held between two copper sheets.
During inserted sheet, by inserted sheet support and the contraposition of described support bumping post, promote inserted sheet support, thus promotion bracket mould 332 is retracted in cavity hole vertically, thus mica sheet and copper sheet is inserted inserted sheet support.
This mixing slice arranging apparatus production efficiency is high, and all only do axial reciprocating when screening die assembly 330 screening and inserted sheet and move, consistent with mica sheet direction of insertion, so avoid the mica sheet that fractures, improve processing yields, be conducive to the production automation degree of reverser inserting sheet.
As shown in Figure 2, wherein in an embodiment, described bracket mould 332 front end face offers location hole 3322.By the location of location hole 3322, can screening die assembly 330 to dock with mica sheet arrangement die or copper sheet arrangement die receive mica sheet or copper sheet time, contraposition can be realized quickly, to improve insertion accuracy.Described location hole 3322 is the location hole 3322 of not rounded hole shape.
In one particularly embodiment, the location hole 3322 of described location hole 3322 side of being taper hole shape.
Wherein in an embodiment, described screening die assembly 330 also comprises dividing and positioning mechanism 333, described inserted sheet mould 331 is cylindrical shape and is sheathed in described cavity hole pivotly, and described dividing and positioning mechanism 333 is connected to described inserted sheet mould 331 rear end.Inserted sheet mould 331 and bracket mould 332 can drive through described dividing and positioning mechanism 333 and stepping is rotated, and further increase contraposition regulation and control precision.
Wherein in an embodiment, described die ontology both sides offer the guide groove of through sidewall, described mould driven unit also includes the first transmission bracket 343 and the second transmission bracket 344, described first transmission bracket 343 is connected to first piston mechanism 341 output, and stretch into from die ontology two side respectively from described guide groove and be fixed in described inserted sheet mould 331, described second transmission bracket 344 is connected to the second piston mechanism 342 output, and stretches into from die ontology two side respectively from guide groove and be fixed in described bracket mould 332.By the transmission of the first transmission bracket 343 and the second transmission bracket 344, moving axially of inserted sheet mould 331 and bracket mould 332 is more steady, is conducive to the precision improving inserted sheet.
Wherein in an embodiment, described mould driven unit also comprises the 3rd piston mechanism 345 and the 3rd transmission bracket 346, described first piston mechanism 341 and the second piston mechanism 342 are all connected to described 3rd transmission bracket 346, and described 3rd transmission bracket 346 is connected to the output of described 3rd piston mechanism 345.Inserted sheet mould 331 and bracket mould 332 entirety can be driven to move axially by the 3rd piston mechanism 345, release copper sheet and mica sheet with overall in inserted sheet assembling procedure, inserted sheet is assembled accurately faster.
The above embodiment only have expressed several execution mode of the present invention, and it describes comparatively concrete and detailed, but therefore can not be interpreted as the restriction to the scope of the claims of the present invention.It should be pointed out that for the person of ordinary skill of the art, without departing from the inventive concept of the premise, can also make some distortion and improvement, these all belong to protection scope of the present invention.Therefore, the protection range of patent of the present invention should be as the criterion with claims.

Claims (6)

1. megohmit(e) and a copper sheet mixing slice arranging apparatus, comprising:
Base, is provided with reciprocating motion driving mechanism;
Screening die assembly, be slidably connected to described base and be connected with described reciprocating motion driving mechanism output, comprise die ontology, described die ontology offers cavity hole, the inserted sheet mould that can move axially is arranged with in described cavity hole, described inserted sheet die nose uniform intervals is provided with copper sheet bumping post, mica sheet slot is formed between every two adjacent copper sheet bumping posts, described copper sheet bumping post and copper sheet cross sectional shape match, described mica sheet slot and mica sheet cross sectional shape match, in described inserted sheet mould, coaxial sleeve is provided with the bracket mould that can move axially, described bracket mould front end is formed with the support bumping post with inserted sheet bracket cross section form fit,
Mould driven unit, comprises the first piston mechanism driving described inserted sheet mould, and drives the second piston mechanism of described bracket mould.
2. megohmit(e) according to claim 1 and copper sheet mixing slice arranging apparatus, is characterized in that, described bracket mould front end face offers location hole.
3. megohmit(e) according to claim 2 and copper sheet mixing slice arranging apparatus, is characterized in that, the location hole of the described location hole side of being taper hole shape.
4. megohmit(e) according to claim 2 and copper sheet mixing slice arranging apparatus, it is characterized in that, described screening die assembly also comprises dividing and positioning mechanism, described inserted sheet mould is cylindrical shape and is sheathed in described cavity hole pivotly, described dividing and positioning mechanism is connected to described inserted sheet mould rear end, and dividing and positioning mechanism is electrically connected with stepping motor.
5. megohmit(e) according to claim 4 and copper sheet mixing slice arranging apparatus, it is characterized in that, described die ontology both sides offer the guide groove of through sidewall, described mould driven unit also includes the first transmission bracket and the second transmission bracket, described first transmission bracket is connected to first piston mechanism output, and stretch into from die ontology two side respectively from described guide groove and be fixed in described inserted sheet mould, described second transmission bracket is connected to the second piston mechanism output, and stretch into from die ontology two side respectively from guide groove and be fixed in described bracket mould.
6. the megohmit(e) according to claim 1 ~ 5 any one and copper sheet mixing slice arranging apparatus, it is characterized in that, described mould driven unit also comprises the 3rd piston mechanism and the 3rd transmission bracket, described is all connected to described 3rd transmission bracket with piston mechanism and the second piston mechanism, and described 3rd transmission bracket is connected to the output of described 3rd piston mechanism.
CN201510587970.0A 2015-09-16 2015-09-16 Megohmit(e) and copper sheet mixing slice arranging apparatus Expired - Fee Related CN105375236B (en)

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CN201510587970.0A CN105375236B (en) 2015-09-16 2015-09-16 Megohmit(e) and copper sheet mixing slice arranging apparatus

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113708186A (en) * 2021-07-12 2021-11-26 广东卓柏信息科技有限公司 Slice arranging device for groove type commutator

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH0582230A (en) * 1991-09-18 1993-04-02 Myotoku Kk Method and device for automatic arrangement of commutator segment
CN101488636A (en) * 2009-02-19 2009-07-22 宁波华瑞电器有限公司 Commutator production process
CN201674104U (en) * 2010-05-11 2010-12-15 温州科奇比威自动化设备有限公司 Mica sheet synchronous-implanted mechanism of commutator
CN203423358U (en) * 2013-08-01 2014-02-05 温州科奇比威自动化设备有限公司 Commutator segment overall insertion mechanism
CN104505692A (en) * 2014-12-26 2015-04-08 朱启旭 Automatic inserting equipment for commutators

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH0582230A (en) * 1991-09-18 1993-04-02 Myotoku Kk Method and device for automatic arrangement of commutator segment
CN101488636A (en) * 2009-02-19 2009-07-22 宁波华瑞电器有限公司 Commutator production process
CN201674104U (en) * 2010-05-11 2010-12-15 温州科奇比威自动化设备有限公司 Mica sheet synchronous-implanted mechanism of commutator
CN203423358U (en) * 2013-08-01 2014-02-05 温州科奇比威自动化设备有限公司 Commutator segment overall insertion mechanism
CN104505692A (en) * 2014-12-26 2015-04-08 朱启旭 Automatic inserting equipment for commutators

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113708186A (en) * 2021-07-12 2021-11-26 广东卓柏信息科技有限公司 Slice arranging device for groove type commutator
CN113708186B (en) * 2021-07-12 2024-04-09 曾树青 Groove type commutator segment arranging device

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Granted publication date: 20180612

Termination date: 20180916