CN207103664U - A kind of skewed stator core slot lamination tooling - Google Patents

A kind of skewed stator core slot lamination tooling Download PDF

Info

Publication number
CN207103664U
CN207103664U CN201721065779.0U CN201721065779U CN207103664U CN 207103664 U CN207103664 U CN 207103664U CN 201721065779 U CN201721065779 U CN 201721065779U CN 207103664 U CN207103664 U CN 207103664U
Authority
CN
China
Prior art keywords
cam
rotating shaft
plate
tie
arm
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Active
Application number
CN201721065779.0U
Other languages
Chinese (zh)
Inventor
承文俊
潘华兴
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
CHANGZHOU SHENLI ELECTRICAL MACHINE Co Ltd
Original Assignee
CHANGZHOU SHENLI ELECTRICAL MACHINE Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by CHANGZHOU SHENLI ELECTRICAL MACHINE Co Ltd filed Critical CHANGZHOU SHENLI ELECTRICAL MACHINE Co Ltd
Priority to CN201721065779.0U priority Critical patent/CN207103664U/en
Application granted granted Critical
Publication of CN207103664U publication Critical patent/CN207103664U/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Landscapes

  • Manufacture Of Motors, Generators (AREA)

Abstract

It the utility model is related to a kind of skewed stator core slot lamination tooling,Including bottom plate,Chassis is provided with bottom plate,Center chassis is rotatably connected with rotating shaft,The iron core sleeve axle of some pillar and clamping ring compositions is provided with chassis and around rotating shaft,It is set on iron core sleeve axle and is connected with lower roof plate with bottom plate,It is removable on lower roof plate to be provided with some first spring stacks,Key connection has three groups of cam sets in rotating shaft,Cam set includes overhead cam and lower cam,Overhead cam and the adjacent side of lower cam offer the chute being used cooperatively respectively,Slide bar is provided with chute,Cam set side is provided with baffle plate,Baffle plate outside spacers are provided with positioning keypad,Linear axis are provided with baffle plate and positioning keypad,Slide bar is connected with arm-tie by linear axis,One end connection arm-tie and the other end of linear axis are connected with positioning taper key,Rotating shaft upper end is provided with position-arresting disk,The spanner for rotating shaft is provided with rotating shaft and above position-arresting disk.

Description

A kind of skewed stator core slot lamination tooling
Technical field
It the utility model is related to stator core frock technical field, especially a kind of skewed stator core slot lamination tooling.
Background technology
In known technical field, make the stator core with skew and need to use and determined using a kind of carry with gradient The frock of position key, and when manufacturing this iron core, because of this frock because positioning key carries gradient, each frock can only make One stator core, otherwise it is not easy to be stripped, and finally needs to be put into baking oven together after frock is pressed and heat, institute With expend man-hour it is longer what a stator core can only be but manufactured, waste plenty of time and human cost.
Utility model content
In view of the deficienciess of the prior art, the purpose of this utility model be to provide it is a kind of solve the above problems one Kind skewed stator core slot lamination tooling.
Technical scheme is used by the utility model solves its technical problem:A kind of skewed stator core slot lamination tooling, Including bottom plate, chassis is provided with bottom plate, center chassis is rotatably connected with rotating shaft, is set on chassis and around rotating shaft The iron core sleeve axle of some pillar and clamping ring compositions is equipped with, is set on iron core sleeve axle and is connected with lower roof plate with bottom plate, under Removable on top plate to be provided with some first spring stacks, in the first spring stack upper end, the removable diameter that is provided with is less than lower top Plate and the lower platen being set on iron core sleeve axle, the first of straight reciprocating motion can be made along pillar by being disposed with lower platen Dynamic plate, the second dynamic plate and the 3rd dynamic plate, the 3rd it is dynamic plate upper end is removable is provided with some second spring posts, in second spring Post upper end is removable to be connected with top board, is provided with some studs on top board, studs through top board with Lower roof plate is threadedly coupled, and band shoulder nut is provided with studs and above top board, key connection has three in rotating shaft Group cam set, cam set include overhead cam and lower cam, and overhead cam and the adjacent side of lower cam offer be used cooperatively respectively Chute, be provided with and can be connected with arm-tie along the slide bar of slide, slide bar in chute, baffle plate is provided with the outside of arm-tie, keep off Corresponded with arm-tie on the outside of plate and is provided with positioning keypad, be connected between arm-tie and positioning keypad through baffle plate and can be along gear Plate and the linear axis for making straight reciprocating motion, positioning keypad outside are provided with positioning taper key, rotating shaft upper end are provided with position-arresting disk, The spanner for rotating shaft is provided with rotating shaft and above position-arresting disk.
The utility model is further arranged to:The first cam set that three groups of cam sets include setting gradually from top to bottom, the Two cam sets and the 3rd cam set, the first cam set include wheel and the first lower whorl on first, taken turns on first and on the first lower whorl points The first cam path of same shape is not opened up, and the second cam set includes taking turns on second and the second lower whorl, on second under wheel and second Open up the second cam path of same shape on wheel respectively, the 3rd cam set includes wheel and the 3rd lower whorl on the 3rd, on the 3rd wheel and The 3rd cam path of same shape is opened up on 3rd lower whorl respectively, is divided on the first cam path, the second cam path and the 3rd cam path The first raised section, the second raised section and the 3rd raised section of arm-tie, the first raised section, second can be pulled by slide bar by not being provided with Raised section and the 3rd raised section misplace 90 degree of settings respectively.
The utility model is further arranged to:The gag lever post for limiting spanner rotation direction is provided with position-arresting disk.
The utility model is further arranged to:Slide bar rivets with arm-tie.
The beneficial effects of the utility model are:Using cam mechanism principle, under the drive of camshaft, cam rotation drives Realize to put in three groups of arm-ties of locating latch key connection and contract, because three groups of cam notches misplace 90 ° respectively, can be achieved three groups and determine Position taper key realizes that the order of radial direction is put according to the sequencing for laminating and being stripped and contracts, and realizes and sequentially laminates and be sequentially stripped, More iron core laminateds can be realized in a frock, and realizes and is easily stripped, substantially increase operating efficiency.
Brief description of the drawings
The utility model is further illustrated with reference to the accompanying drawings and examples.
Fig. 1 is structural representation of the present utility model;
Fig. 2 is the enlarged diagram of A in the utility model Fig. 1;
Fig. 3 is internal structure schematic diagram of the present utility model;
Fig. 4 is internal structure schematic diagram of the present utility model;
Fig. 5 is the first cam slot structure schematic diagram of the present utility model;
Fig. 6 is the second cam slot structure schematic diagram of the present utility model;
Fig. 7 is the 3rd cam slot structure schematic diagram of the present utility model;
In figure:1. bottom plate, 2. chassis, 3. rotating shafts, 4. pillars, 5. clamping rings, 6. iron core sleeve axles, 7. lower roof plates, 8. first Spring stack, 9. lower platens, 10. first dynamic plates, 11. second dynamic plates, 12. the 3rd dynamic plates, 13. second spring posts, 14. top boards, 15. studs, 16. band shoulder nuts, 17. cam sets, 170. overhead cams, 171. lower cams, 172. chutes, 173. slide bars, 174. arm-ties, 175. linear axis, 1770. first cam sets, take turns on 17700. first, 17701. first lower whorls, 17702. first Cam path, 1771. second cam sets, take turns on 17710. second, 17711. second lower whorls, 17712. second cam paths, 1772. Three cam sets, take turns on 17720. the 3rd, 17721. the 3rd lower whorls, 17722. the 3rd cam paths, 177020. first raised sections, 177120. second raised sections, 177220. the 3rd raised sections, 18. baffle plates, 19. positioning keypads, 20. positioning taper keies, 21. is spacing Disk, 22. spanners, 23. gag lever posts, 24. punchings, 25. notches.
Embodiment
The utility model is described in further detail presently in connection with accompanying drawing.These accompanying drawings are simplified schematic diagram, Only illustrate basic structure of the present utility model in a schematic way, therefore it only shows the composition relevant with the utility model.
Preferred embodiment of the present utility model as Figure 1-3, a kind of skewed stator core slot lamination tooling, including bottom plate 1, chassis 2 is provided with bottom plate 1, and the central rotatable of chassis 2 is connected with rotating shaft 3, is set on chassis 2 and around rotating shaft 3 The iron core sleeve axle 6 of some pillar 4 and clamping ring 5 compositions is equipped with, is set on iron core sleeve axle 6 and is connected with lower roof plate with bottom plate 1 7, it is removable on lower roof plate 7 to be provided with some first spring stacks 8, the upper end of the first spring stack 8 it is removable be provided with it is straight Footpath is less than lower roof plate 7 and the lower platen 9 being set on iron core sleeve axle 6, and being disposed with lower platen 9 can make directly along pillar 4 Line reciprocating first, which moves plate 10, second and moves plate 11 and the 3rd, moves plate 12, and the 3rd, dynamic the upper end of plate 12 is removable is provided with Some second spring posts 13, top board 14 is connected with the upper end of second spring post 13 is removable, is provided with top board 14 Some studs 15, studs 15 are threadedly coupled through top board 14 with lower roof plate 7, on studs 15 and positioned at upper The top of pressing plate 14 is provided with band shoulder nut 16, and key connection has three groups of cam sets 17 in rotating shaft 3, and cam set 17 includes overhead cam 170 and lower cam 171, overhead cam 170 and the adjacent side of lower cam 171 offer the chute 172 being used cooperatively, chute respectively The slide bar 173 that can be slided along chute 172 is provided with 172, slide bar 173 is connected with arm-tie 174, is provided with the outside of arm-tie 174 Baffle plate 18, the outside of baffle plate 18 corresponds with arm-tie 174 is provided with positioning keypad 19, between arm-tie 174 and positioning keypad 19 It is connected with through baffle plate 18 and can positions the outside of keypad 19 along baffle plate 18 and the linear axis 175 for making straight reciprocating motion and be provided with Taper key 20 is positioned, the upper end of rotating shaft 3 is provided with position-arresting disk 21, is provided with rotating shaft 3 and above position-arresting disk 21 for turning The spanner 22 of turn axle 3.
Band shoulder nut 16 is unclamped, removes top board 14, subsidiary 13 and the 3rd dynamic plate 12 of second spring post of top board 14 is together Remove.Then remove the second dynamic plate 11 and first and move plate 10, overlapping punching sheet 24, the notch 25 and positioning taper key 20 for making punching 24 block With because positioning taper key 20 carry gradient, it is possible to laminate the iron core to form skew;The height of first iron core is laminated Afterwards, the first dynamic plate 10 is put into, again overlapping punching sheet 24, after having laminated second iron core, is put into the second dynamic plate 11, then proceedes to put Enter punching 24 to continue to laminate, be finally sequentially placed into and install the 3rd dynamic plate 12, second spring post 13 and top board 14, tighten band Shoulder nut 16, is put into press, press is produced pressure to top board 14, and pass through the first spring stack 3 and second spring post 13 It is applied in all punchings 24, then proceedes to after locking is fond of nut 16, be put into baking oven and heat.
Completion is heated after frock cooling, unclamps band shoulder nut 16, removes top board 14, the subsidiary second spring of top board 14 Post 13 and the 3rd moves plate 12 and removed together, then rotary spanner 22, and spanner 22 drives rotating shaft 2 to rotate, the cam set 17 in rotating shaft 2 Rotate, slide bar 173 is rotated in chute 172, slide bar 173 is pulled arm-tie 174 by linear axis 175, arm-tie 174 drives fixed Position taper key 20 is shunk, you can three stator cores pressed are taken out.
As shown in figs. 4-7, three groups of cam sets 17 include the first cam set 1770, the second cam set gradually from top to bottom Group 1771 and the 3rd cam set 1772, the first cam set 1770 include the lower whorl 17701 of wheel 17700 and first on first, on first The first cam path 17702 of same shape is opened up on the lower whorl 17701 of wheel 17700 and first respectively, the second cam set 1771 includes Wheel 17710 and second lower whorl 17711 on second, same shape is opened up respectively on the lower whorl 17711 of wheel 17710 and second on second Second cam path 17712, the 3rd cam set 1772 include the lower whorl 17721 of wheel 17720 and the 3rd on the 3rd, 17720 are taken turns on the 3rd With the 3rd cam path 17722 for opening up same shape on the 3rd lower whorl 17721 respectively, the first cam path 17702, the second cam path 17712 and the 3rd be respectively arranged with cam path 17722 can be pulled by slide bar 173 arm-tie 174 the first raised section 177020, Second raised section 177120 and the 3rd raised section 177220, the first raised section 177020, the second raised section 177120 and the 3rd are convex Play section 177220 to misplace respectively 90 degree of settings, the first raised section 177020, the second raised section 177120 and the 3rd raised section 177220 can drive slide bar 173 therein to slide respectively and shrink arm-tie 17.
When reaching 90 degree using the rotating shaft 2 of spanner 22, the slide bar 173 in the first cam set 1770 is in the first raised section When turning to A2 from A1 in 177020, the positioning taper key 20 of the superiors is drawn into contraction, and other two groups of slide bars 173 rotate, still Arm-tie 174 is not driven to act;When rotating shaft 2 reaches 180 degree again, the slide bar 173 in the second cam set 1771 rotates from A2 To A3, and arm-tie 174 is driven to shrink, the positioning taper key 20 of the second layer is drawn into, and when rotating shaft 2 to 270 is spent, the 3rd is convex Slide bar 173 in wheel group 1772 turns to A4 from A3, and undermost positioning taper key 20 is drawn into, so operates can and successively take Under the stator core that presses.
The gag lever post 23 for limiting the rotation direction of spanner 22 is provided with position-arresting disk 21.
Slide bar 173 rivets with arm-tie 174.
Using it is above-mentioned according to desirable embodiment of the present utility model as enlightenment, pass through above-mentioned description, related work people Member can carry out various changes and amendments in the range of without departing from this item utility model technological thought completely.This item is real The content being not limited to new technical scope on specification, it is necessary to which its technology is determined according to right Property scope.

Claims (4)

  1. A kind of 1. skewed stator core slot lamination tooling, it is characterised in that:Including bottom plate (1), described bottom plate is provided with bottom on (1) Disk (2), described chassis (2) central rotatable are connected with rotating shaft (3), on described chassis (2) and positioned at rotating shaft (3) week Enclose the iron core sleeve axle (6) for being provided with some pillars (4) and clamping ring (5) composition, be set on described iron core sleeve axle (6) and with Bottom plate (1) is connected with lower roof plate (7), removable on described lower roof plate (7) to be provided with some first spring stacks (8), The removable lower platen for being provided with diameter and being less than lower roof plate (7) and being set on iron core sleeve axle (6) in first spring stack (8) upper end (9) the first dynamic plate (10) that can make straight reciprocating motion along pillar (4), second, are disposed with described lower platen (9) Dynamic plate (11) and the 3rd dynamic plate (12), move that plate (12) upper end is removable to be provided with some second spring posts the described the 3rd (13) top board (14), is connected with described second spring post (13) upper end is removable, on described top board (14) Some studs (15) are provided with, described studs (15) is threadedly coupled through top board (14) with lower roof plate (7), Band shoulder nut (16) is provided with described studs (15) and above top board (14), in described rotating shaft (3) Key connection has three groups of cam sets (17), and described cam set (17) includes overhead cam (170) and lower cam (171), and described is upper Cam (170) and the adjacent side of lower cam (171) offer the chute (172) being used cooperatively respectively, are set in chute (172) There is the slide bar (173) that can be slided along chute (172), described slide bar (173) is connected with arm-tie (174), in described arm-tie (174) outside is provided with baffle plate (18), is corresponded on the outside of described baffle plate (18) with arm-tie (174) and is provided with positioning keypad (19), be connected between described arm-tie (174) and positioning keypad (19) through baffle plate (18) and can along baffle plate (18) and Make the linear axis (175) of straight reciprocating motion, positioning taper key (20) is provided with the outside of described positioning keypad (19), described Rotating shaft (3) upper end is provided with position-arresting disk (21), is provided with described rotating shaft (3) and above position-arresting disk (21) for turning The spanner (22) of turn axle (3).
  2. A kind of 2. skewed stator core slot lamination tooling as claimed in claim 1, it is characterised in that:Cam set described in three groups (17) the first cam set (1770), the second cam set (1771) and the 3rd cam set set gradually from top to bottom is included (1772), described the first cam set (1770) includes taking turns (17700) and the first lower whorl (17701) on first, and described first Open up the first cam path (17702) of same shape on upper wheel (17700) and the first lower whorl (17701) respectively, described second Cam set (1771) includes taking turns (17710) and the second lower whorl (17711) on second, and (17710) and second are taken turns on described second Open up the second cam path (17712) of same shape on lower whorl (17711) respectively, the 3rd described cam set (1772) includes the (17720) and the 3rd lower whorl (17721) are taken turns on three, takes turns on the described the 3rd on (17720) and the 3rd lower whorl (17721) and opens respectively If the 3rd cam path (17722) of same shape, described the first cam path (17702), the second cam path (17712) and the 3rd The first raised section (177020) that arm-tie (174) can be pulled by slide bar (173), the are respectively arranged with cam path (17722) Two raised sections (177120) and the 3rd raised section (177220), described the first raised section (177020), the second raised section (177120) misplaced respectively 90 degree of settings with the 3rd raised section (177220).
  3. A kind of 3. skewed stator core slot lamination tooling as claimed in claim 1, it is characterised in that:In described position-arresting disk (21) On be provided with for limiting the gag lever post (23) of spanner (22) rotation direction.
  4. A kind of 4. skewed stator core slot lamination tooling as claimed in claim 1, it is characterised in that:Described slide bar (173) with Arm-tie (174) rivets.
CN201721065779.0U 2017-08-23 2017-08-23 A kind of skewed stator core slot lamination tooling Active CN207103664U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201721065779.0U CN207103664U (en) 2017-08-23 2017-08-23 A kind of skewed stator core slot lamination tooling

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201721065779.0U CN207103664U (en) 2017-08-23 2017-08-23 A kind of skewed stator core slot lamination tooling

Publications (1)

Publication Number Publication Date
CN207103664U true CN207103664U (en) 2018-03-16

Family

ID=61570550

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201721065779.0U Active CN207103664U (en) 2017-08-23 2017-08-23 A kind of skewed stator core slot lamination tooling

Country Status (1)

Country Link
CN (1) CN207103664U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107309353A (en) * 2017-08-23 2017-11-03 常州神力电机股份有限公司 A kind of skewed stator core slot lamination tooling

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107309353A (en) * 2017-08-23 2017-11-03 常州神力电机股份有限公司 A kind of skewed stator core slot lamination tooling

Similar Documents

Publication Publication Date Title
CN107309353A (en) A kind of skewed stator core slot lamination tooling
CN207103664U (en) A kind of skewed stator core slot lamination tooling
JP5385068B2 (en) Laminating machine for laminated core
CN107835083A (en) A kind of protector for communication equipment being easily installed
CN202889128U (en) Laminated die of high voltage generator stator core
CN207086943U (en) Arc rail precision clamping jaw
CN211304656U (en) Pressure riveting die capable of automatically converting stations
DE102012217276A1 (en) Forging press and method for controlling this
DE102010062043B4 (en) Turning mechanism for a machine tool
CN207234627U (en) A kind of skewed stator core slot lamination tooling taper key device
DE102007017342B4 (en) Energy storage for a land vehicle
CN202639134U (en) Four-station rotary type indexing mechanism
CN107516981A (en) A kind of skewed stator core slot lamination tooling taper key device
CN106738213A (en) The ceramic rolling forming device of bull pressing mold
CN101869952A (en) Manufacturing device of S-shaped metal honeycomb vector
CN209597985U (en) A kind of gear drive for periodical punching
CN203651006U (en) Turnover device for forming long joist
CN209627076U (en) A kind of oblique pole rotor structure
JPH0123623Y2 (en)
CN201070656Y (en) Punch press turret structure
EP2569852A2 (en) Rotating electric machine
CN205519211U (en) A collapsible support column for stacking idle station mould
JP2840653B2 (en) Manufacturing method of metal corrugated plate
CN105960750A (en) Dual cam torque transfer mechanism
CN205178792U (en) Skew is folded and is pressed rotor pressure equipment anchor clamps to improve structure

Legal Events

Date Code Title Description
GR01 Patent grant
GR01 Patent grant