Stator iron sheet assembling device for motor processing
By designing a stator iron sheet assembly device with limit bumps and stamping structures, the problem of misalignment of the stator iron sheet during stacking is solved, and the precise stacking assembly of the stator iron sheet is realized, ensuring the assembly accuracy of the motor processing.
Patent Information
- Application Number
- CN202421649350.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-12
- Publication Date
- 2025-07-04
- Estimated Expiration
- 2034-07-12
AI Technical Summary
The existing stator iron sheet assembly device for motor processing is not limited during the stacking process, resulting in the possible misalignment of the stator iron sheet, causing dimensional deviation to affect subsequent assembly.
A stator iron sheet assembly device including a support base, a stacking table, an assembly frame, a locking member, a plug-in seat, a positioning column, a limiting bump and a stamping structure is designed. The stator iron sheet is limited by a limiting bump on both sides of the positioning column, and precisely stacking and assembly is performed using a stamping structure.
Effectively prevent misalignment of stator iron sheets during stacking, ensure assembly accuracy, and avoid dimensional deviations affecting subsequent assembly processes.
Smart Images

Figure CN223066978U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of motor equipment, in particular to a stator iron sheet assembly device for motor processing. Background Art
[0002] The motor stator is the stationary part of the motor. The existing motor stator is formed by stacking multiple stator iron sheets layer by layer, and then the lamination of the motor stator is completed by stamping, thus completing the assembly of the motor iron sheets.
[0003] The prior art discloses a stator iron sheet assembly device for motor processing, including a processing table, positioning columns, a stamping machine and a hollow stamping seat. By placing multiple stator iron sheets layer by layer on the positioning columns for stacking, and then controlling the stamping machine to drive the hollow stamping seat to insert into the positioning columns while stamping the stacked stator iron sheets, the assembly of the stator iron sheets can be completed.
[0004] However, adopting the above method, since there is no limit during the stacking process of the stator iron sheets, the stator iron sheets may be misaligned during the subsequent stacking and assembly process, resulting in dimensional deviation and affecting the subsequent assembly. Summary of the Utility Model
[0005] The purpose of the utility model is to provide a stator iron sheet assembly device for motor processing, aiming to solve the problem that in the existing stator iron sheet assembly device for motor processing, since there is no limit during the stacking process of the stator iron sheets, the stator iron sheets may be misaligned during the subsequent stacking and assembly process, resulting in dimensional deviation and affecting the subsequent assembly.
[0006] To achieve the above purpose, the utility model provides a stator iron sheet assembly device for motor processing, including a support base and a stator iron sheet assembly component;
[0007] The stator iron sheet assembly component includes a lamination table, an assembly frame, a locking member, a socket, a positioning column, two connecting parts, two limiting protrusions, two guiding members and a stamping structure;
[0008] The lamination table is fixedly connected to the support base and is located on one side of the support base; the assembly frame is fixedly connected to the lamination table and is located on one side of the lamination table; the locking member is arranged on one side of the assembly frame; the socket is located inside the assembly frame; the positioning column is fixedly connected to the socket and is located on one side of the socket; the two connecting parts are respectively fixedly connected to the positioning column and are respectively located on both sides of the positioning column; the two limiting protrusions are respectively fixedly connected to the two connecting parts and are respectively located on one side of the two connecting parts; the two guiding members are respectively arranged on both sides of the lamination table; the stamping structure is arranged on one side of the support base
[0009] Wherein, the locking member includes a locking screw and a knob. The locking screw is threadedly connected to the assembly frame and is also threadedly connected to the socket, and is located on one side of the assembly frame; the knob is fixedly connected to the locking screw and is located on one side of the locking screw.
[0010] Wherein, the guiding member includes a support block and a guiding column. The support block is fixedly connected to the stacking table and is located on one side of the stacking table; the guiding column is fixedly connected to the support block and is located on one side of the support block.
[0011] Wherein, the stamping structure includes a stamping frame, a stamping cylinder, a stamping plate, a hollow stamping seat and two guiding rings. The stamping frame is fixedly connected to the support base and is located on one side of the support base; the stamping cylinder is fixedly connected to the stamping frame and is located on one side of the stamping frame; the stamping plate is fixedly connected to the output end of the stamping cylinder and is located on one side of the stamping cylinder; the hollow stamping seat is fixedly connected to the stamping plate and is located on one side of the stamping plate; the two guiding rings are respectively fixedly connected to the hollow stamping seat and are respectively located on both sides of the hollow stamping seat.
[0012] Wherein, the stamping structure further includes two limiting members, and the two limiting members are respectively arranged between the stamping frame and the stamping plate.
[0013] Wherein, the limiting member includes a limiting sleeve and a limiting column. The limiting sleeve is fixedly connected to the stamping frame and is located on one side of the stamping frame; the limiting column is slidably connected to the limiting sleeve and is fixedly connected to the stamping plate and is located on one side of the limiting sleeve.
[0014] For a stator iron sheet assembling device for motor processing according to the present utility model, when assembling the stator iron sheets of the motor, the positioning column is inserted into the assembly frame through the socket, and then the locking member is operated to complete the fixation of the socket, and then the positioning column can be assembled. A plurality of motor stator iron sheets are respectively placed on the positioning column for stacking. The limiting protrusions on the connecting parts on both sides of the positioning column are used to limit the stator iron sheets, so that the stacking positions of the plurality of motor stator iron sheets are more accurate and prevent misalignment during stacking. Control the stamping structure to cooperate with the guiding of the two guiding members, dock with the positioning column and then extrude the plurality of motor stator iron sheets stacked on the positioning column to complete the stacking and assembling of the stator iron sheets, thereby solving the problem that in the existing stator iron sheet assembling device for motor processing, since the stator iron sheets are not limited during the stacking process, the stator iron sheets may be misaligned during the subsequent stacking and assembling process, resulting in dimensional deviation and affecting the subsequent assembling. Description of the Drawings
[0015] To more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the following will briefly introduce the drawings required for the description of the embodiments or the prior art.
[0016] Figure 1 is a schematic diagram of the overall structure of the first embodiment of the present utility model.
[0017] Figure 2 is a front view of the overall of the first embodiment of the present utility model.
[0018] Figure 3 is a schematic diagram of the overall structure of the second embodiment of the present utility model.
[0019] Figure 4 is a front view of the overall of the second embodiment of the present utility model.
[0020] 101 - support base, 102 - stacking table, 103 - assembly frame, 104 - locking member, 105 - socket, 106 - positioning post, 107 - connecting portion, 108 - limiting projection, 109 - guiding member, 110 - stamping structure, 111 - locking screw, 112 - knob, 113 - support block, 114 - guiding post, 115 - stamping frame, 116 - stamping cylinder, 117 - stamping plate, 118 - hollow stamping seat, 119 - guiding ring, 201 - limiting member, 202 - limiting sleeve, 203 - limiting post. Detailed implementation manners
[0021] The first embodiment of the present application is as follows:
[0022] Please refer to Figure 1 - Figure 2 , wherein, Figure 1 is a schematic diagram of the overall structure of the first embodiment of the present utility model, Figure 2 is a front view of the overall of the first embodiment of the present utility model.
[0023] The present utility model provides a stator iron sheet assembly device for motor processing: including a support base 101 and a stator iron sheet assembly component. The stator iron sheet assembly component includes a stacking table 102, an assembly frame 103, a locking member 104, a socket 105, a positioning post 106, two connecting portions 107, two limiting projections 108, two guiding members 109 and a stamping structure 110. The locking member 104 includes a locking screw 111 and a knob 112. The guiding member 109 includes a support block 113 and a guiding post 114. The stamping structure 110 includes a stamping frame 115, a stamping cylinder 116, a stamping plate 117, a hollow stamping seat 118 and two guiding rings 119. Through the foregoing solution, the problem that in the existing stator iron sheet assembly device for motor processing, since there is no limit during the stacking process of the stator iron sheets, the stator iron sheets may be misaligned during the subsequent stacking and assembly process, resulting in dimensional deviation and affecting the subsequent assembly, is solved.
[0024] For this specific embodiment, the support base 101 is used to support the installation of the positioning iron sheet assembly component.
[0025] Wherein, the stacking table 102 is fixedly connected to the support base 101 and is located on one side of the support base 101; the assembly frame 103 is fixedly connected to the stacking table 102 and is located on one side of the stacking table 102; the locking member 104 is arranged on one side of the assembly frame 103; the socket 105 is located inside the assembly frame 103; the positioning column 106 is fixedly connected to the socket 105 and is located on one side of the socket 105; the two connecting parts 107 are respectively fixedly connected to the positioning column 106 and are respectively located on both sides of the positioning column 106; the two limiting bumps 108 are respectively fixedly connected to the two connecting parts 107 and are respectively located on one side of the two connecting parts 107; the two guiding members 109 are respectively arranged on both sides of the stacking table 102; the stamping structure 110 is arranged on one side of the support base 101. When assembling the motor stator iron sheets, insert the positioning column 106 into the assembly frame 103 through the socket 105, and then operate the locking member 104 to fix the socket 105, so as to assemble the positioning column 106. A plurality of motor stator iron sheets are respectively placed on the positioning column 106 for stacking. The limiting bumps 108 on the connecting parts 107 on both sides of the positioning column 106 limit the stator iron sheets, making the stacking positions of the plurality of motor stator iron sheets more accurate and preventing misalignment during stacking. Control the stamping structure 110 to cooperate with the guiding of the two guiding members 109, dock with the positioning column 106 and then extrude the plurality of motor stator iron sheets stacked on the positioning column 106 to complete the stacking and assembly of the stator iron sheets, thus solving the problem that in the existing stator iron sheet assembly device for motor processing, since the stator iron sheets are not limited during the stacking process, the stator iron sheets may be misaligned during the subsequent stacking and assembly process, resulting in dimensional deviation and affecting the subsequent assembly.
[0026] Secondly, the locking screw 111 is threadedly connected to the assembly frame 103 and is also threadedly connected to the socket 105, and is located on one side of the assembly frame 103; the knob 112 is fixedly connected to the locking screw 111 and is located on one side of the locking screw 111. After the socket 105 is inserted into the assembly frame 103, twist the knob 112 to make the locking screw 111 rotate. The locking screw 111 is threadedly connected to the socket 105 to fix the socket 105, and thus the assembly of the positioning column 106 can be completed.
[0027] Meanwhile, the support block 113 is fixedly connected to the stacking table 102 and is located on one side of the stacking table 102; the guide post 114 is fixedly connected to the support block 113 and is located on one side of the support block 113. The support block 113 is used to support the installation of the guide post 114, and the guide post 114 is used to guide the stamping structure 110 so that the stamping structure 110 can stamp the stacked stator iron sheets more accurately.
[0028] In addition, the stamping frame 115 is fixedly connected to the support base 101 and is located on one side of the support base 101; the stamping cylinder 116 is fixedly connected to the stamping frame 115 and is located on one side of the stamping frame 115; the stamping plate 117 is fixedly connected to the output end of the stamping cylinder 116 and is located on one side of the stamping cylinder 116; the hollow stamping seat 118 is fixedly connected to the stamping plate 117 and is located on one side of the stamping plate 117; the two guide rings 119 are respectively fixedly connected to the hollow stamping seat 118 and are respectively located on both sides of the hollow stamping seat 118. The stamping frame 115 is used to support the assembly of the stamping cylinder 116. After multiple motor stator iron sheets are stacked on the positioning column 106, the stamping cylinder 116 is controlled to drive the stamping plate 117 to move, driving the hollow stamping seat 118 to move towards the positioning column 106. During the movement, the two guide rings 119 are inserted into the two guide posts 114 to position the hollow stamping seat 118. The hollow stamping seat 118 is hollow, and the middle hole is docked with the positioning column 106. Then, the stacked stator iron sheets can be assembled by pressing down through the stamping seat.
[0029] When using the stator iron sheet assembly device for motor processing described in this embodiment, during the assembly of the motor stator iron sheets, the positioning column 106 is inserted into the assembly frame 103 through the socket 105. After the socket 105 is inserted into the assembly frame 103, turn the knob 112 to rotate the locking screw 111. The locking screw 111 is threadedly connected to the socket 105 to fix the socket 105, and thus the assembly of the positioning column 106 can be completed. Place multiple motor stator iron sheets separately on the positioning column 106 for stacking. The limiting bumps 108 on the connecting parts 107 on both sides of the positioning column 106 limit the stator iron sheets, making the stacking positions of multiple motor stator iron sheets more accurate and preventing misalignment during stacking. When multiple motor stator iron sheets are stacked on the positioning column 106, control the stamping cylinder 116 to drive the stamping plate 117 to move, driving the hollow stamping seat 118 to move towards the positioning column 106. During the movement, the two guiding rings 119 are inserted into the two guiding columns 114 to position the hollow stamping seat 118. The hollow stamping seat 118 is hollow, and the middle hole is docked with the positioning column 106. Then, by pressing down the stacked stator iron sheets through the stamping seat, the stacking and assembly of the stator iron sheets can be completed, thus solving the problem that in the existing stator iron sheet assembly device for motor processing, since the stator iron sheets are not limited during the stacking process, the stator iron sheets may be misaligned during the subsequent stacking and assembly process, resulting in dimensional deviation and affecting the subsequent assembly.
[0030] The second embodiment of this application is as follows:
[0031] Please refer to Figure 3 - Figure 4 , in which, Figure 3 is the overall structural schematic diagram of the second embodiment of the present utility model, Figure 4 is the front view of the whole of the second embodiment of the present utility model.
[0032] On the basis of the first embodiment, a stator iron sheet assembly device for motor processing provided by the present utility model, the stamping structure 110 further includes two limiting members 201. The limiting member 201 includes a limiting sleeve 202 and a limiting column 203.
[0033] Among them, the two limiting members 201 are respectively arranged between the stamping frame 115 and the stamping plate 117. The limiting member 201 provides limitation when the stamping plate 117 moves up and down, so that when the stamping plate 117 drives the hollow stamping seat 118 to move, the applied limitation can make it move more smoothly and vertically.
[0034] Secondly, the limiting sleeve 202 is fixedly connected to the stamping frame 115 and is located on one side of the stamping frame 115; the limiting post 203 is slidably connected to the limiting sleeve 202, is fixedly connected to the stamping plate 117, and is located on one side of the limiting sleeve 202. The limiting sleeve 202 is used to support the sliding of the limiting post 203, and the limiting post 203 is used to provide a limit when the stamping plate 117 moves up and down, so that the stamping plate 117 can move more smoothly and vertically when driving the hollow stamping seat 118 to move.
[0035] When using the stator iron sheet assembly device for motor processing according to this embodiment, the limiting sleeve 202 is used to support the sliding of the limiting post 203, and the limiting post 203 is used to provide a limit when the stamping plate 117 moves up and down, so that the stamping plate 117 can move more smoothly and vertically when driving the hollow stamping seat 118 to move.
[0036] The above-disclosed are only one or more preferred embodiments of the present application, and the scope of rights of the present application cannot be limited thereby. Those of ordinary skill in the art can understand all or part of the processes of implementing the above embodiments, and the equivalent changes made according to the claims of the present application still fall within the scope covered by the present application.
Claims
1. A stator iron sheet assembly device for motor processing, including a support base, characterized in that, it further includes a stator iron sheet assembly component; The stator iron sheet assembly component includes a stacking table, an assembly frame, a locking member, a socket, a positioning column, two connecting parts, two limiting bumps, two guiding members and a stamping structure; The stacking table is fixedly connected to the support base and is located on one side of the support base; the assembly frame is fixedly connected to the stacking table and is located on one side of the stacking table; the locking member is arranged on one side of the assembly frame; the socket is located inside the assembly frame; the positioning column is fixedly connected to the socket and is located on one side of the socket; the two connecting parts are respectively fixedly connected to the positioning column and are respectively located on both sides of the positioning column; the two limiting bumps are respectively fixedly connected to the two connecting parts and are respectively located on one side of the two connecting parts; the two guiding members are respectively arranged on both sides of the stacking table; the stamping structure is arranged on one side of the support base.
2. The stator iron sheet assembly device for motor processing according to claim 1, characterized in that, The locking member includes a locking screw and a knob. The locking screw is threadedly connected to the assembly frame and is also threadedly connected to the socket, and is located on one side of the assembly frame; the knob is fixedly connected to the locking screw and is located on one side of the locking screw.
3. The stator iron sheet assembly device for motor processing according to claim 2, characterized in that, The guiding member includes a support block and a guiding column. The support block is fixedly connected to the stacking table and is located on one side of the stacking table; the guiding column is fixedly connected to the support block and is located on one side of the support block.
4. The stator iron sheet assembly device for motor processing according to claim 3, characterized in that, The stamping structure includes a stamping frame, a stamping cylinder, a stamping plate, a hollow stamping seat and two guiding rings. The stamping frame is fixedly connected to the support base and is located on one side of the support base; the stamping cylinder is fixedly connected to the stamping frame and is located on one side of the stamping frame; the stamping plate is fixedly connected to the output end of the stamping cylinder and is located on one side of the stamping cylinder; the hollow stamping seat is fixedly connected to the stamping plate and is located on one side of the stamping plate; the two guiding rings are respectively fixedly connected to the hollow stamping seat and are respectively located on both sides of the hollow stamping seat.
5. The stator iron sheet assembly device for motor processing according to claim 4, characterized in that, The stamping structure further includes two limiting members, and the two limiting members are respectively arranged between the stamping frame and the stamping plate.
6. The stator iron sheet assembly device for motor processing according to claim 5, characterized in that, The limiting member includes a limiting sleeve and a limiting column. The limiting sleeve is fixedly connected to the stamping frame and is located on one side of the stamping frame; the limiting column is slidably connected to the limiting sleeve and is fixedly connected to the stamping plate and is located on one side of the limiting sleeve.