CN108110968A - A kind of All-in-One rushes core machine - Google Patents
A kind of All-in-One rushes core machine Download PDFInfo
- Publication number
- CN108110968A CN108110968A CN201710830607.6A CN201710830607A CN108110968A CN 108110968 A CN108110968 A CN 108110968A CN 201710830607 A CN201710830607 A CN 201710830607A CN 108110968 A CN108110968 A CN 108110968A
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- Prior art keywords
- core
- chipset
- shaft core
- guide groove
- cylinder
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- H—ELECTRICITY
- H02—GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
- H02K—DYNAMO-ELECTRIC MACHINES
- H02K15/00—Methods or apparatus specially adapted for manufacturing, assembling, maintaining or repairing of dynamo-electric machines
- H02K15/02—Methods or apparatus specially adapted for manufacturing, assembling, maintaining or repairing of dynamo-electric machines of stator or rotor bodies
-
- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02P—CLIMATE CHANGE MITIGATION TECHNOLOGIES IN THE PRODUCTION OR PROCESSING OF GOODS
- Y02P70/00—Climate change mitigation technologies in the production process for final industrial or consumer products
- Y02P70/10—Greenhouse gas [GHG] capture, material saving, heat recovery or other energy efficient measures, e.g. motor control, characterised by manufacturing processes, e.g. for rolling metal or metal working
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- Engineering & Computer Science (AREA)
- Manufacturing & Machinery (AREA)
- Power Engineering (AREA)
- Manufacture Of Motors, Generators (AREA)
- Perforating, Stamping-Out Or Severing By Means Other Than Cutting (AREA)
Abstract
The present invention relates to motor rotor processing machinery fields more particularly to a kind of All-in-One to rush core machine.The present invention adopts the following technical scheme that:A kind of All-in-One rushes core machine, including rushing core owner body, rushing core owner's body and be provided with and send core apparatus, shaft core decompressor, shell-punching device, chip assembly guidance, chip mistake piece rotating device, chipset film advance mechanism, the advantage of the invention is that:Include shaft core decompressor, shell-punching device, chip mistake piece rotating device, automation is efficient, greatly improves the efficiency of production, reduces artificial input, reduces production cost, improves its competitiveness of product in market.
Description
Technical field
The present invention relates to motor rotor processing machinery fields more particularly to a kind of All-in-One to rush core machine.
Background technology
Motor is a kind of widely used micro-machine, and processing method is also varied, and having for small processing manually adds
Work, semi-automatic processing, large size processing have automatic production line processing.In small processing, artificial efficiency is low, semi-automatic to add
Its shortcoming of the equipment postscript of work, and the degree of automation is low, especially rushes core machine part, influences very much processing efficiency, and then improves
The production cost of enterprise.
The content of the invention
It is an object of the invention to provide a kind of All-in-Ones to rush core machine, be characterized in particular in providing a kind of simple in structure and efficiency compared with
High All-in-One rushes core machine.
In order to achieve the above objectives, the present invention adopts the following technical scheme that:A kind of All-in-One rushes core machine, including rushing core owner
Body rushes core owner's body and is provided with and send core apparatus, shaft core decompressor, shell-punching device, chipset film advance mechanism, and core apparatus is sent to include
For housing the shaft core hopper of shaft core, its bottom of shaft core hopper extends to the longitudinal shaft core parallel with shaft core hopper outlet and leads
Slot is setting shaft core decompressor, longitudinal axis close to longitudinal shaft core guide groove between shaft core hopper and vertical shaft core guide groove
Core guide groove end is disposed adjacent shell-punching device, and the opposite side of shell-punching device sets chipset film advance mechanism.
The first cylinder is being set positioned at one end of longitudinal axis core guide groove, the first cylinder is placed in longitudinal axis by pushing away core bar transmission
Shaft core in core guide groove is promoted toward vertical shaft core guide groove direction, and the shaft core to connect with longitudinal shaft core guide groove is set in vertical shaft core guide groove
Arc guiding hole.
Shaft core decompressor is being set between vertical axis core guide groove and shaft core hopper, and shaft core decompressor includes being placed in
First hydraulic cylinder at the top of shaft core stamping machine rack presses core bar, rushes core upper mold, rushes core lower die, and first hydraulic cylinder is by pressing core bar
Transmission rushes core upper mold and wears overshoot core lower die toward the output of core lower die direction, longitudinal shaft core guide groove is rushed and extend to vertical shaft core guide groove
Into core mouth.
Preferably, the apposition position for rush core upper mold, rushing core bed die is respectively arranged with the embossing of mutual cooperation.
Further, chipset film advance mechanism includes the second cylinder positioned at shell-punching device one side by the way that piece bar is sent to be driven core
Piece Support tray is simultaneously driven its back and forth movement between chip assembly guidance and shell-punching device.
Further, chip assembly guidance is set between shell-punching device and chipset film advance mechanism, and chipset is oriented to
Device includes chipset and is oriented to rack and is arranged at least one set the first chip guiding axis that chipset is oriented to upper rack,
Bottom of the frame is oriented to positioned at chipset is opened in chip Support tray pull back out-of-date corresponding chipset outlet.
Further, core apparatus is sent to be additionally included in the 3rd cylinder, intermediate transmission bar, axis positioned at vertical shaft core guide groove one side
Core bracket, the 3rd cylinder are driven shaft core bracket by intermediate transmission bar and are transported back and forth toward between vertical shaft core guide groove and shell-punching device
It is dynamic.
Further, the 4th cylinder is being set at the 3rd cylinder bottom, the 4th cylinder is driven the 3rd by lifting bar
Cylinder lifting or decline, the rising height of the 4th cylinder are slightly over the fixed shaft hole depth for rushing core bar.
Further, chip mistake piece rotating device is included in sets chipset to adjust at chip assembly guidance top
Rack, chipset, which adjusts, sets chipset to rotate wrong piece pipeline, the top one of chipset rotation mistake piece pipeline at the bottom of rack
The top CD feeding port that end extends to chipset adjustment rack is correspondingly arranged, the wrong piece duct bottom one end connection chip of chipset rotation
Assembly guidance, the wrong wrong piece pipeline rotation of piece servo motor transmission chipset rotation, the wrong piece pipeline inner ring of chipset rotation are set
3rd chip guiding axis.
The one side of chipset adjustment rack is provided with the 5th cylinder, and the 5th cylinder send piece ruler by bar transmission of pulling back, send piece
Ruler offers the first feedback outlet slightly larger than chipset diameter, the second feedback outlet, and the second chip is being set positioned at CD feeding port both sides
Guiding axis, feedback outlet, chip guide groove, the same axial direction of CD feeding port, the first feedback outlet are located adjacent to the 5th gas when sending the piece bar to pull back
Second chip guiding axis bottom of cylinder one side, the second feedback outlet are correspondingly arranged with CD feeding port.
The advantage of the invention is that:Simple in structure, high degree of automation, rotor machining is efficient and further holding
The uniformity of its product and the using effect of entirety, have also specifically included shaft core decompressor, shell-punching device, chip mistake piece
Rotating device, automation is efficient, greatly improves the efficiency of production, reduces artificial input, reduces production cost, improves
Its competitiveness of product in market.
Description of the drawings
Attached drawing 1 rushes the three-dimensional structure diagram of core machine for a kind of 1 All-in-One of embodiment;
Attached drawing 2 rushes the isometric side structure figure of core machine for a kind of 1 All-in-One of embodiment;
Attached drawing 3 rushes the facing structure figure of core machine for a kind of 1 All-in-One of embodiment;
Reference numeral:1- send core apparatus, 10- longitudinal directions shaft core guide groove, the first cylinders of 11-, 12- to push away core bar, 13- shaft cores hopper, 14-
6th cylinder, 15- are pushed away in the vertical shaft core guide groove of chip, 16-, 17- cylinder brackets, the 4th cylinders of 170-, the 3rd cylinders of 18-, 19-
Between drive link, 190- shaft core brackets;
2- shaft cores decompressor, 21- first hydraulic cylinders, 22- press core bar, 23- rushes core upper mold, 24- rushes core lower die;
4- rushes core owner's body;
3- shell-punching devices, 31- rush core rack, 32- rushes core bar, 33- fixed shaft holes;
5- chipsets film advance mechanism, 51- send piece bar, 52- chip Support tray;6- chips assembly guidance, the first chips of 61- are oriented to
Axis, the 9th cylinders of 62-, 63- catch bars;7- chip mistake pieces rotating device, 70- chipsets adjustment rack, 71- mistake pieces servo electricity
Machine, the wrong piece pipeline of 72- chipsets rotation, the 3rd chip guiding axis of 73-, 74- send piece ruler, the 5th cylinders of 740-, the second feed backs of 75-
Mouth, the first feedback outlets of 76-, the second chips of 77- guiding axis, 78- CD feeding ports, the second chips of 79- are oriented to pedestal;The 8th cylinders of 8-,
81- push jack compression bars.
Specific embodiment
Embodiment 1:With reference to Fig. 1-3, a kind of All-in-One rushes core machine, including rushing core owner body 4, rushing core owner's body and be provided with and send
Core apparatus 1, shaft core decompressor 2, shell-punching device 3, chipset film advance mechanism 5 send core apparatus 1 to include the axis for housing shaft core
Core material slot 13, its bottom of shaft core hopper 13 extend to the longitudinal shaft core guide groove 10 parallel with 13 outlet of shaft core hopper, close
Longitudinal shaft core guide groove 10 is setting shaft core decompressor 2, longitudinal shaft core between shaft core hopper 13 and vertical shaft core guide groove 16
10 end of guide groove is disposed adjacent shell-punching device 3, and the opposite side of shell-punching device 3 sets chipset film advance mechanism 5.
First cylinder 11 is being set positioned at one end of longitudinal axis core guide groove 10, the first cylinder 11 is put by pushing away the transmission of core bar 12
It promotes, is set in vertical shaft core guide groove 16 and longitudinal shaft core toward vertical 16 direction of shaft core guide groove in the shaft core in longitudinal shaft core guide groove 10
The shaft core arc guiding hole that guide groove connects, the height of vertical shaft core guide groove 16 carry out corresponding configuration to be suitble to according to the height of shaft core
Shaft core can naturally be directed to its discharge gate, specifically, vertical shaft core guide groove 16 walks heart arc guiding hole by close to longitudinal direction
Position corresponding with follow-up shaft core bracket is extended under 10 one side arc of shaft core guide groove.
Shaft core decompressor 2 is being set between vertical axis core guide groove 16 and shaft core hopper 13, and shaft core decompressor 2 wraps
The first hydraulic cylinder 21 being placed at the top of shaft core stamping machine rack, pressure core bar 22 are included, core upper mold 23 is rushed, rushes core lower die 24, the first liquid
Cylinder pressure 21 is exported by the way that the transmission of core bar 22 is pressed to rush core upper mold 23 toward 24 direction of core lower die is rushed, and longitudinal shaft core guide groove 10 wears overshoot core
Lower die 24 extend to vertical shaft core guide groove 10 into core mouth.
In the present embodiment, rush core upper mold 23, rush core lower die 24 between limitation is set to rush core upper mold 23 and press to rush under core
The elastic device of mould 24 can be specifically the compression spring in spring axle sleeve in-between.
When it is to be embossed move axially to rush core upper mold 23, rush between core lower die 24 when, first hydraulic cylinder 21 drives
Pressure core bar pushing makes to rush core upper mold 23 and expected embossing is extruded to shaft core toward rushing 24 direction of core lower die and push, and is pressed after the completion of embossing
22 lifting of core bar and since the presence of compression spring rushes the lifting of core upper mold can continue next process.
In the present embodiment, shaft core to be punched be placed in shaft core hopper 13 and pass through shaft core hopper 13 be expelled to downwards it is vertical
Into shaft core guide groove 10, specifically, longitudinal shaft core guide groove 10 correspond to above-mentioned 13 bottom discharge outlet of shaft core hopper open up it is corresponding
Shaft core notch, it is preferred that shaft core hopper 13 can be designed as V-type, and 13 bottom of shaft core hopper is engraved structure, and in shaft core hopper
13 one sides set the 14 oblique driving of the 6th cylinder to push away the drive of chip 15 shaft core and are forced into toward shaft core notch direction to longitudinal shaft core
In guide groove 10.
After shaft core is entered in longitudinal shaft core guide groove 10, shaft core is driven toward vertically by pushing away core bar 12 from the first cylinder 11
16 direction of shaft core guide groove promotes, and under normal circumstances, the first cylinder 11 is at least one by pushing away the mobile spacing that core bar 12 promotes
Root shaft core length.
Core apparatus 1 is sent to be additionally included in the 3rd cylinder 18, intermediate transmission bar 19, shaft core positioned at vertical 16 one side of shaft core guide groove
Bracket 190, the 3rd cylinder 18 are driven shaft core bracket 190 toward vertical shaft core guide groove 16 and shell-punching device by intermediate transmission bar 19
Back and forth movement between 3, the 3rd cylinder 18 are mounted on cylinder bracket 17, it is preferred that are being set at 17 bottom of cylinder bracket
4th cylinder 170, the 4th cylinder 170 are driven 17 lifting of cylinder bracket or decline by lifting bar, and the lifting of the 4th cylinder 170 is high
Degree is slightly over 33 depth of fixed shaft hole for rushing core bar 32.
In the present embodiment, when shaft core bracket 190 is located at vertical 16 bottom of shaft core guide groove, with above-mentioned vertical shaft core
The axial direction of the outlet of guide groove 16 is coaxial, it is preferred that vertical shaft core guide groove 16 is provided with the row compared with vertical shaft core guide groove 16
7th cylinder of export direction output, the 7th cylinder can be placed on vertical shaft core guide groove direction and promote drive shaft core as needed
It is discharged toward its outlet, which can be configured, it is not necessary to be set.
In the above-described embodiments, the 4th cylinder 170 can drive 190 lifting of cylinder bracket and make 190 lifting of shaft core bracket
It picks up the shaft core of the vertical discharge of shaft core guide groove 16 or shaft core lifting is pressed into above-mentioned fixed shaft hole 33.
It first, drives shaft core bracket 190 to move at the outlet of vertical shaft core guide groove 16 and picks up in use
Shaft core, shaft core bracket 190 are moved at 3 bottom of shell-punching device, and the fixation of core bar 32 is rushed in shaft core press-in by 190 lifting of shaft core bracket
In axis hole 33.
Preferably, above-mentioned cylinder bracket 17 is provided with the position-limited rail with 19 form fit of intermediate transmission bar, to keep it
Output is axial.
Rushing the shell-punching device 3 set on core owner body 1 includes being arranged on the down pressing drive transmission rushed in core rack 31
It rushes core bar and carries out punching press toward the chipset on the chip Support tray 52 of its bottom, down pressing drive can be second hydraulic cylinder 30
Or lower air cylinder, above-mentioned rushing at 32 bottom of core bar open up the fixed shaft hole 33 with shaft core cooperation, are provided in fixed shaft hole 33
Ring sets rubber layer.
In the present embodiment, when after rushing the chipset of stacking of core and being placed in chip Support tray 52, by above-mentioned by shaft core
It is placed in rush to be rushed core bar 32 by it and pushed punching press and complete to the central shaft for the chipset being stacked the shaft core of chipset after core bar 32 and pacify
Dress.
Chipset film advance mechanism 5 includes the second cylinder 50 positioned at 3 one side of shell-punching device by the way that piece bar 51 is sent to be driven chip
Support tray 52 is simultaneously driven its back and forth movement between chip assembly guidance 6 and shell-punching device 3.
In the present embodiment, chipset is discharged down by chip assembly guidance 6 and dropped down onto on chip Support tray 52, and by second
At 50 output driving of cylinder to the bottom of shell-punching device 3, complete to rush after core after finished product disengaging chip Support tray 52, the second gas
Cylinder 50 bounces back and chip Support tray 52 is driven to move at 6 bottom of chip assembly guidance, specific chip assembly guidance 6 with
The opening of chip Support tray 52 is correspondingly arranged, and can also be arranged as required to coordinate with chipset resigning mouthful in chip Support tray 52
Chip limit shaft 73.
Chip assembly guidance 6 is set between shell-punching device 3 and chipset film advance mechanism 5, and chip assembly guidance 6 wraps
Include chipset be oriented to rack and be arranged on chipset be oriented to upper rack the first chip of at least one set guiding axis 61, positioned at
Chipset, which is oriented to bottom of the frame and is opened in chip Support tray 52, pulls back out-of-date corresponding chipset outlet, in the present embodiment
In, chip string formation is arranged on the first chip guiding axis 61.
Chip mistake piece rotating device 7 is included in sets chipset to adjust rack 70 at 6 top of chip assembly guidance,
Chipset is set to rotate wrong piece pipeline 72, the top one of the wrong piece pipeline 72 of chipset rotation at the bottom of chipset adjustment rack 70
The top CD feeding port 78 that end extends to chipset adjustment rack 7 is correspondingly arranged, and wrong 72 bottom end of piece pipeline of chipset rotation connects
Chip assembly guidance 6 is connect, wrong piece servomotor 71 is driven the wrong piece pipeline 72 of chipset rotation and rotates, the wrong piece pipe of chipset rotation
72 inner ring of road sets the 3rd chip guiding axis of protrusion.
The one side of chipset adjustment rack 70 is provided with the 5th cylinder 740, and the 5th cylinder 740 send piece by bar transmission of pulling back
Ruler 74 send piece ruler 74 to offer the first feedback outlet 76 slightly larger than chipset diameter, the second feedback outlet 75, positioned at CD feeding port 78
Both sides set the second chip guiding axis 77, and the first feedback outlet 76, the second feedback outlet 75, CD feeding port 78 are same when sending the piece ruler 74 to pull back
Axial, the first feedback outlet 76 is located adjacent to 77 bottom of the second chip guiding axis of 740 one side of the 5th cylinder, the second feedback outlet 75 with
CD feeding port 78 is correspondingly arranged.
Preferably, the second chip guiding axis 77 is separately mounted on the second chip guiding pedestal 79, and piece ruler 74 is sent to slide peace
It is oriented to mounted in two second chips in pedestal 79, it is past into piece the 8th cylinder 8 is set to be driven push jack compression bar 81 at CD feeding port 78
The output of mouthful direction, its object is to further the chipset of not wrong piece is sent into CD feeding port.
In the above-described embodiments, the chipset of not wrong piece is separately mounted on the second chip guiding axis 77 of both sides, chip
It drops down onto and is sent on the first feedback outlet 76 of piece ruler 74 under group meeting, the depth of the first feedback outlet 76 is generally with expected wrong label pack number
Consistent, piece ruler 74 is sent in the driving of the 5th cylinder 740, and the first feedback outlet 76 equipped with chipset is pushed away toward 78 direction of CD feeding port
It is dynamic, and its chipset is made to move forward and is fallen in CD feeding port to carry out rotating wrong piece by the wrong piece pipeline 72 of chipset rotation, wrong piece is complete
Chipset after is rotated by chipset drops down onto chipset guider 6 under wrong piece duct bottom.
The second feedback outlet 75 is moved to another second simultaneously during the first feedback outlet 76 is promoted toward CD feeding port
At the bottom of chip guiding axis 77 and it is packed into chipset.
The driving of 5th cylinder 740 send piece ruler 74 to pull back, and makes the second feedback outlet 75 and CD feeding port 78 coaxial, and makes chipset
It is sent into CD feeding port 78 and carries out rotating wrong piece.
From the foregoing, it will be observed that sending the driving of piece ruler that can all bring the chip of certain amount into chipset each time rotates wrong piece pipe
Road, sequence of movement are default into piece, the wrong piece pipeline rotation one of nearly chipset rotation for piece ruler is sent to drive by control device control
Angle, then send the driving of piece ruler again into piece, the wrong piece pipeline rotation of driving chip group rotation again, it is constantly reciprocal thus to realize mistake
Piece, the 9th cylinder 62 transmission catch bar 63 specifically continued after engagement, which can then control, to be placed in the wrong piece pipeline of chipset rotation
The number of chipset.
In the above-described embodiments, the angle of the wrong piece pipeline rotation of chipset rotation then can be according to the number of chip resigning mouthful
It is configured accordingly.
The process of above-mentioned mistake piece makes the balance higher of later stage finished product after multigroup chipset rushes core improve its finished product
Quality.
Preferably, the 9th cylinder of setting at wrong piece pipeline 72 is being rotated close to chipset positioned at chip mistake piece rotating device
62, the 9th cylinder 62 is driven catch bar 63 toward 6 falling direction baffle of chip assembly guidance.
Certainly, it these are only better embodiment of the present invention, the use scope of the present invention not limited with this, therefore, it is every
Equivalent change is made in the principle of the invention to should be included in the protection domain of invention.
Claims (10)
1. a kind of All-in-One rushes core machine, including rush core owner body, rush core owner's body be provided with send core apparatus, shaft core decompressor,
Shell-punching device, chipset film advance mechanism send core apparatus to include the shaft core hopper for housing shaft core, the extension of its bottom of shaft core hopper
To the longitudinal shaft core guide groove parallel with shaft core hopper outlet, in close longitudinal shaft core guide groove positioned at shaft core hopper and vertical axis
Shaft core decompressor is set between core guide groove, and longitudinal shaft core guide groove end is disposed adjacent shell-punching device, the opposite side of shell-punching device
Chipset film advance mechanism is set.
2. a kind of All-in-One according to claim 1 rushes core machine, it is characterised in that:Positioned at one end of longitudinal axis core guide groove
First cylinder is set, and the first cylinder is driven the shaft core being placed in longitudinal shaft core guide groove toward vertical shaft core guide groove direction by pushing away core bar
It promotes, the shaft core arc guiding hole to connect with longitudinal shaft core guide groove is set in vertical shaft core guide groove.
3. a kind of All-in-One according to claim 2 rushes core machine, it is characterised in that:Positioned at vertical axis core guide groove and shaft core
Shaft core decompressor is set between hopper, shaft core decompressor include being placed in first hydraulic cylinder at the top of shaft core stamping machine rack,
Pressure core bar rushes core upper mold, rushes core lower die, and first hydraulic cylinder is exported by the way that core bar transmission is pressed to rush core upper mold toward core lower die direction is rushed,
Longitudinal shaft core guide groove wear overshoot core lower die extend to vertical shaft core guide groove into core mouth.
4. a kind of All-in-One according to claim 3 rushes core machine, it is characterised in that:The core that rushes set on core owner's body is rushed to fill
It puts and rushes core bar toward the chipset on the chip Support tray of its bottom including being arranged on the down pressing drive rushed in core rack transmission
Punching press is carried out, above-mentioned rushing at core bar bottom opens up the fixed shaft hole with shaft core cooperation.
5. a kind of All-in-One according to claim 4 rushes core machine, it is characterised in that:Chipset film advance mechanism includes being located at punching
Second cylinder of core apparatus one side is filled by the way that piece bar is sent to be driven chip Support tray and is driven it in chip assembly guidance with rushing core
Back and forth movement between putting.
6. a kind of All-in-One according to claim 5 rushes core machine, it is characterised in that:It is sent in shell-punching device with chipset on chip
Chip assembly guidance is set between putting, and chip assembly guidance includes chipset and is oriented to rack and is arranged on chipset guiding
At least one set the first chip guiding axis of upper rack is pulled back being opened in chip Support tray positioned at chipset guiding bottom of the frame
Out-of-date corresponding chipset outlet.
7. a kind of All-in-One according to claim 6 rushes core machine, it is characterised in that:Core apparatus is sent to be additionally included in positioned at vertical
The 3rd cylinder, intermediate transmission bar, the shaft core bracket of shaft core guide groove one side, the 3rd cylinder are driven shaft core bracket by intermediate transmission bar
Toward back and forth movement between vertical shaft core guide groove and shell-punching device.
8. a kind of All-in-One according to claim 7 rushes core machine, it is characterised in that:It is being set at the 3rd cylinder bottom
4th cylinder, the 4th cylinder is driven the 3rd cylinder lifting by lifting bar or decline, the rising height of the 4th cylinder are slightly over
Rush the fixed shaft hole depth of core bar.
9. a kind of All-in-One according to claim 6 rushes core machine, it is characterised in that:Chip mistake piece rotating device includes in place
Chipset is set to adjust rack at chip assembly guidance top, chipset rotation is set at the bottom of chipset adjustment rack
Wrong piece pipeline, the top CD feeding port correspondence that top one end of the wrong piece pipeline of chipset rotation extends to chipset adjustment rack are set
It puts, the wrong piece duct bottom one end connection chip assembly guidance of chipset rotation, wrong piece servo motor transmission chipset rotation is wrong
Piece pipeline rotates, and the wrong piece pipeline inner ring of chipset rotation sets the 3rd chip guiding axis.
10. a kind of All-in-One according to claim 9 rushes core machine, it is characterised in that:The one side of chipset adjustment rack is set
The 5th cylinder is equipped with, the 5th cylinder send piece ruler by bar transmission of pulling back, piece ruler is sent to offer first slightly larger than chipset diameter
Feedback outlet, the second feedback outlet are setting the second chip guiding axis, feedback outlet, chip when sending the piece bar to pull back positioned at CD feeding port both sides
The same axial direction of guide groove, CD feeding port, the first feedback outlet are located adjacent to the second chip guiding axis bottom of the 5th cylinder one side, and second
Feedback outlet is correspondingly arranged with CD feeding port.
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CN201710830607.6A CN108110968B (en) | 2017-09-15 | 2017-09-15 | All-in-one core punching machine |
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CN201710830607.6A CN108110968B (en) | 2017-09-15 | 2017-09-15 | All-in-one core punching machine |
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CN108110968B CN108110968B (en) | 2023-06-27 |
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CN201937405U (en) * | 2010-12-16 | 2011-08-17 | 东昌电机(深圳)有限公司 | Rotor core punching device |
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CN103707044A (en) * | 2013-09-25 | 2014-04-09 | 常州新区金康精工机械有限公司 | Multi-station shaft compressing machine |
CN104377898A (en) * | 2014-10-28 | 2015-02-25 | 宿州市申大电机有限公司 | Motor central spindle stamping device |
CN104467304A (en) * | 2014-11-24 | 2015-03-25 | 宁波顺成机电有限公司 | Automatic motor rotor assembling machine |
CN105071608A (en) * | 2015-08-21 | 2015-11-18 | 江门市智能装备制造研究院有限公司 | Motor rotor shaft automatic assembling machine |
CN105515295A (en) * | 2015-12-04 | 2016-04-20 | 重庆智仁发电设备有限责任公司 | Novel rotor core press-in device |
CN207184275U (en) * | 2017-09-15 | 2018-04-03 | 揭阳市铭嘉达五金塑胶实业有限公司 | A kind of All-in-One rushes core machine |
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Publication number | Priority date | Publication date | Assignee | Title |
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EP0526060A2 (en) * | 1991-07-22 | 1993-02-03 | General Electric Company | Method for assembling armatures |
CN201937405U (en) * | 2010-12-16 | 2011-08-17 | 东昌电机(深圳)有限公司 | Rotor core punching device |
CN102324809A (en) * | 2011-09-13 | 2012-01-18 | 深圳市双环全新机电股份有限公司 | Device used for stator and rotor assembly |
CN103707044A (en) * | 2013-09-25 | 2014-04-09 | 常州新区金康精工机械有限公司 | Multi-station shaft compressing machine |
CN104377898A (en) * | 2014-10-28 | 2015-02-25 | 宿州市申大电机有限公司 | Motor central spindle stamping device |
CN104467304A (en) * | 2014-11-24 | 2015-03-25 | 宁波顺成机电有限公司 | Automatic motor rotor assembling machine |
CN105071608A (en) * | 2015-08-21 | 2015-11-18 | 江门市智能装备制造研究院有限公司 | Motor rotor shaft automatic assembling machine |
CN105515295A (en) * | 2015-12-04 | 2016-04-20 | 重庆智仁发电设备有限责任公司 | Novel rotor core press-in device |
CN207184275U (en) * | 2017-09-15 | 2018-04-03 | 揭阳市铭嘉达五金塑胶实业有限公司 | A kind of All-in-One rushes core machine |
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