A motor winding installation device

By designing a motor winding installation device including a clamping structure, a heat dissipation structure and an installation structure, the problem that existing devices cannot clamp and position and heat dissipate the stator core, and the flexible adjustment of the stator core, effective heat dissipation and convenient installation of the motor housing are achieved.

CN118900001BActive Publication Date: 2025-05-27JIANGSU XINRI INTELLIGENT TECH CO LTD
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Patent Information

Application Number
CN202410885657.4
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-07-03
Publication Date
2025-05-27
Estimated Expiration
2044-07-03

AI Technical Summary

Technical Problem

The existing motor stator winding installation device cannot clamp and position the stator core, resulting in the inability to flexibly adjust the core, which facilitates winding installation. At the same time, the device cannot effectively dissipate heat and fix the motor housing.

Method used

A motor winding installation device including a mounting table, a clamping structure, a heat dissipation structure and an installation structure are designed. The clamping structure realizes flexible positioning and angle adjustment of the stator core through cylinders, rotating rings, flip rings and arc frames; the heat dissipation structure uses blowers, ventilation nets and mobile blocks to achieve effective heat dissipation of the stator and windings; the installation structure realizes fixing and height adjustment of the motor housing through placing plates, stretch frames and threaded rods.

Benefits of technology

It realizes flexible positioning and angle adjustment of the stator core, which facilitates winding installation; the effective heat dissipation structure reduces the problem of heat accumulation during use of the motor; the installation structure can easily fix and adjust the motor housing, improving the overall installation efficiency and stability.

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Abstract

The present invention discloses a motor winding installation device, which relates to the field of motor processing and includes an installation workbench. A bearing is arranged at the top of the installation workbench, and a device board is arranged at the top of the bearing. A clamping structure is arranged on the left side of the device board. By setting a cylinder, a rotating ring, a flipping ring and an arc-shaped frame, the stator core is moved to the inside of the two arc-shaped frames. The two cylinders are controlled to drive the arc-shaped frames to move inward and engage with the outside of the stator core, so that the stator core is fixed. When the angle of the stator core needs to be adjusted, the magnetic suction rod is pulled out from the magnetic suction grooves on the outer walls of the flipping ring and the rotating ring, and then the rotating ring is pushed to slide inside the flipping ring through the slider and the sliding groove, so as to adjust the angle. After each 90° adjustment, the magnetic suction rod is inserted into the inside of the flipping ring and the rotating ring, so that the rotating ring and the flipping ring are fixed, and then the stator core is fixed. After adjustment, the winding installation at other positions can be continued.
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Description

Technical Field

[0001] The present invention relates to the field of motor processing, and specifically to a motor winding installation device. Background Art

[0002] As a common mechatronic product, a brushless motor generates a certain current by the rapid rotation of the rotor inside the stator, which causes the stator to be cut by magnetic lines of force in the rotating magnetic field, thereby achieving the effect of power generation. The stator winding refers to the winding installed on the stator, that is, the copper wire wound around the stator. The winding is a general term for a phase or the entire electromagnetic circuit composed of multiple coils or coil groups. When installing the stator winding, a special installation device is often used to maintain its stability.

[0003] The existing installation device for the motor stator winding cannot clamp and position the stator core, making it impossible to flexibly adjust the stator core for the convenience of winding installation. Therefore, there is an urgent need for a motor winding installation device. Summary of the Invention

[0004] The purpose of the present invention is to solve the problems that the existing installation device for the motor stator winding cannot clamp and position the stator core, making it impossible to flexibly adjust the stator core for the convenience of winding installation; when the traditional stator installation device is in use, due to the high heat generated during the current generation process, timely heat dissipation is required; and the current stator winding installation device cannot support and fix the motor housing, making it inconvenient to install the stator after winding installation with the motor housing, and to provide a motor winding installation device.

[0005] To achieve the above purpose, the present invention provides the following technical solution: A motor winding installation device includes an installation workbench. A bearing is provided at the top of the installation workbench, and a device board is provided at the top of the bearing. A clamping structure is provided on the left side of the device board, a heat dissipation structure is provided inside the device board, and an installation structure is provided on the right side of the device board.

[0006] The clamping structure includes a support plate. A forward and reverse motor is installed inside the support plate. The output end of the forward and reverse motor is provided with a flipping ring. A rotating ring is clamped inside the flipping ring, and a magnetic attraction rod is clamped at the top of the flipping ring. A magnetic attraction groove is formed on the outer wall of the rotating ring, and a cylinder is installed inside the rotating ring. The output end of the cylinder is provided with an arc-shaped frame, and a rubber strip is connected to the inner wall of the arc-shaped frame.

[0007] The heat dissipation structure includes a blower. An air inlet groove is formed on one side of the blower. The outer wall of the equipment board is fixed with a first air outlet hood. A ventilation pipe is clamped inside the first air outlet hood, and a first ventilation net is arranged on the outer wall of the first air outlet hood. The end of the ventilation pipe is connected with a wind blocking ring, and a limiting pipe is arranged at the front end of the ventilation pipe. A second air outlet hood is nested inside the limiting pipe. A second ventilation net is arranged at the front end of the second air outlet hood, and a moving block is arranged on the outer wall of the second air outlet hood.

[0008] The installation structure includes an adjustment groove. An extension frame is movably arranged inside the adjustment groove, and a movable groove is formed at the bottom of the adjustment groove. The end of the extension frame is provided with a movable block, and a threaded rod is arranged on the right side of the extension frame. A placement board is arranged above the extension frame. The end of the threaded rod is connected with a handle. A clamping board is arranged at the top of the placement board. A first installation block is connected to one side of the clamping board.

[0009] Preferably, a winding placement rack is arranged at the top of the installation workbench. Second installation blocks are connected to both sides of the equipment board. A stator core is clamped inside the arc-shaped frame and the rubber strip. A winding groove is formed inside the stator core. The equipment board is rotationally connected to the installation workbench through a bearing, and the equipment board and the installation workbench are fixedly installed through the second installation blocks and bolts.

[0010] Preferably, the support plate is welded to the outer wall of the equipment board, and an installation groove matching the forward and reverse motor is formed inside the support plate. The forward and reverse motor is movably connected to the flipping ring through a rotating shaft. A slider is arranged on the outer wall of the rotating ring. A sliding groove is formed on the inner wall of the flipping ring. The rotating ring and the flipping ring are rotationally connected through the slider and the sliding groove.

[0011] Preferably, the cylinder is fixedly installed with the rotating ring through an installation groove, and the number of the cylinders, the arc-shaped frames and the rubber strips is two. The two arc-shaped frames are clamped and connected to the stator core. The magnetic attraction rod is clamped and connected to the rotating ring through the flipping ring and the magnetic attraction groove. The number of the magnetic attraction grooves is four.

[0012] Preferably, the blower is fixedly installed with the equipment board through an installation groove. The wind blocking ring is clamped and connected to the first air outlet hood, and a magnetic attraction block is arranged on the inner wall of the wind blocking ring. The wind blocking ring and the equipment board are magnetically fixed through the magnetic attraction block.

[0013] Preferably, the first air outlet hood is provided with a through groove matching the ventilation pipe and the limiting pipe, and a limiting sleeve is connected to the outside of the through groove. The ventilation pipe and the limiting pipe are clamped and connected to the limiting sleeve.

[0014] Preferably, a moving groove is formed on the inner wall of the limiting pipe. The second air outlet hood and the limiting pipe are movably connected through the moving block and the moving groove.

[0015] Preferably, the adjustment groove and the inner side of the placement plate are both provided with movable grooves, and the upper and lower ends of the stretching frame are slidably connected to the movable grooves through movable blocks.

[0016] Preferably, the threaded rod penetrates to the inner side of the adjustment groove, and the threaded rod is movably connected to the installation workbench through threads. The clamping plate and the placement plate are fixedly installed through the first mounting block and bolts, and the number of the clamping plates is two.

[0017] Compared with the prior art, the beneficial effects of the present invention are as follows:

[0018] First, by setting the air cylinder, the rotating ring, the flipping ring and the arc-shaped frame, the stator core is moved to the inner side of the two arc-shaped frames, and the two air cylinders are controlled to drive the arc-shaped frames to move inward and engage with the outer side of the stator core, so that the stator core is fixed. When the angle of the stator core needs to be adjusted, the magnetic attraction rod is pulled out from the magnetic attraction grooves on the outer walls of the flipping ring and the rotating ring, and then the rotating ring is pushed to slide inside the flipping ring through the slider and the chute, so as to adjust the angle. After each 90° adjustment, the magnetic attraction rod is inserted into the inner sides of the flipping ring and the rotating ring, so that the rotating ring and the flipping ring are fixed, and then the stator core is fixed, and the winding installation at other positions can be continued after the adjustment.

[0019] Second, by setting the blower, the first air outlet cover, the second air outlet cover, the first ventilation net and the second ventilation net, during the winding installation process, when heat dissipation is required for the stator and the winding, the blower on the equipment board is controlled to operate. The external air enters the interior of the first air outlet cover through the blower and the air inlet groove. Part of the air flow flows out through the first ventilation net on the first air outlet cover, and the other part of the air flow flows out through the second ventilation net on the second air outlet cover. The two parts of the air flow dissipate heat from the stator core and the winding. When centralized heat dissipation is required for the winding alone, the limiting tube and the ventilation tube are pulled to move inside the first air outlet cover and extend outward. After being fully extended, the wind blocking ring at the end of the ventilation tube blocks the first ventilation net on the first air outlet cover. At the same time, the ventilation tube moves to the inside of the limiting sleeve, and its air outlet holes are blocked. And the second air outlet cover inside the limiting tube is pulled to extend outward. The second air outlet cover moves inside the limiting tube through the moving block on the outer wall. When the second air outlet cover is fully extended, it is very close to the winding. Then the blower operates, and all the air flow can only flow out through the second ventilation net on the second air outlet cover, directly dissipating heat from the winding.

[0020] Thirdly, in the present invention, by providing a placement plate, an extension frame, a threaded rod, a movable groove, and a movable block, after the stator winding is installed and needs to be installed with the motor housing, the motor housing is placed on the placement plate and abuts against the clamping plate on one side. At this time, the other clamping plate is pushed closer to the other side of the motor housing. After the clamping plate abuts against the motor housing, it is fixedly connected to the placement plate through the first mounting block at the bottom end. Then, the motor housing is fixed on the placement plate by the two clamping plates, and the threaded rod can be screwed. When the threaded rod rotates on the installation workbench, its end pushes the extension frame to contract inward through the rotating shaft. During the contraction, the movable blocks at both ends of the extension frame move in the adjustment groove and the movable groove inside the placement plate respectively. Then, as the threaded rod continuously advances and the extension frame continuously contracts, while the extension frame contracts, its two ends rise, thereby driving the placement plate to move upward, realizing the height adjustment of the placement plate, which facilitates the installation of the adjusted motor housing with the stator winding more conveniently. BRIEF DESCRIPTION OF THE DRAWINGS

[0021] Figure 1 is a schematic diagram of the overall structure of the present invention;

[0022] Figure 2 is a front view structural schematic diagram of the present invention;

[0023] Figure 3 is a schematic diagram of the clamping structure of the present invention;

[0024] Figure 4 is a schematic diagram of the stator core of the present invention;

[0025] Figure 5 is a schematic diagram of the arc-shaped frame of the present invention;

[0026] Figure 6 is a schematic diagram of the magnetic attraction rod of the present invention;

[0027] Figure 7 is a schematic diagram of the motor of the present invention;

[0028] Figure 8 is a schematic diagram of the first ventilation net of the present invention;

[0029] Figure 9 is a schematic diagram of the heat dissipation structure of the present invention;

[0030] Figure 10 is a schematic diagram of the wind shield ring of the present invention;

[0031] Figure 11 is a schematic diagram of the installation structure of the present invention;

[0032] Figure 12 is a schematic diagram of the threaded rod of the present invention;

[0033] Figure 13 is a schematic diagram of the clamping plate of the present invention.

[0034] In the figure: 1, installation workbench; 2, equipment board; 3, clamping structure; 301, support plate; 302, forward and reverse motor; 303, flipping ring; 304, rotating ring; 305, magnetic attraction groove; 306, magnetic attraction rod; 307, air cylinder; 308, arc-shaped frame; 309, rubber strip; 4, stator core; 5, winding groove; 6, heat dissipation structure; 601, blower; 602, air inlet groove; 603, first air outlet hood; 604, first ventilation net; 605, ventilation pipe; 606, wind shielding ring; 607, limiting pipe; 608, second air outlet hood; 609, moving block; 610, second ventilation net; 611, magnetic attraction block; 7, installation structure; 701, adjustment groove; 702, extension frame; 703, movable block; 704, movable groove; 705, placement plate; 706, threaded rod; 707, handle; 708, clamping plate; 709, first mounting block; 8, bearing; 9, second mounting block; 10, winding placement rack. Detailed implementation manners

[0035] The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.

[0036] Please refer to Figures 1-7, a motor winding installation device, including an installation workbench 1. There is a bearing 8 at the top of the installation workbench 1. There is an equipment board 2 at the top of the bearing 8. There is a clamping structure 3 on the left side of the equipment board 2. And there is a heat dissipation structure 6 inside the equipment board 2. There is an installation structure 7 on the right side of the equipment board 2. The clamping structure 3 includes a support plate 301. Inside the support plate 301, there is a forward and reverse motor 302. The output end of the forward and reverse motor 302 is provided with a flipping ring 303. Inside the flipping ring 303, there is a rotating ring 304 engaged. And at the top of the flipping ring 303, there is a magnetic attraction rod 306 engaged. There are magnetic attraction grooves 305 on the outer wall of the rotating ring 304. And inside the rotating ring 304, there is a cylinder 307 installed. The output end of the cylinder 307 is provided with an arc-shaped frame 308. The inner wall of the arc-shaped frame 308 is connected with a rubber strip 309. There are second mounting blocks 9 connected to both sides of the equipment board 2. The stator core 4 is engaged inside the arc-shaped frame 308 and the rubber strip 309. There is a winding groove 5 inside the stator core 4. There is a winding placement rack 10 at the top of the installation workbench 1. The equipment board 2 is rotatably connected to the installation workbench 1 through the bearing 8. And the equipment board 2 and the installation workbench 1 are fixedly installed through the second mounting block 9 and bolts. The support plate 301 is welded to the outer wall of the equipment board 2. And there is an installation groove matching the forward and reverse motor 302 inside the support plate 301. The forward and reverse motor 302 is movably connected to the flipping ring 303 through a rotating shaft. There are sliding blocks on the outer wall of the rotating ring 304. There are sliding grooves on the inner wall of the flipping ring 303. The rotating ring 304 and the flipping ring 303 are rotatably connected through the sliding blocks and the sliding grooves. The cylinder 307 is fixedly installed in the rotating ring 304 through the installation groove. And the number of the cylinders 307, the arc-shaped frames 308 and the rubber strips 309 is two. The two arc-shaped frames 308 are engaged with the stator core 4. The magnetic attraction rod 306 is engaged with the rotating ring 304 through the flipping ring 303 and the magnetic attraction grooves 305. The number of the magnetic attraction grooves 305 is four. Move the stator core 4 to the inside of the two arc-shaped frames 308. At this time, control the operation of the two cylinders 307. The internal technology of the cylinder 307 is the prior art. After the cylinder 307 operates, it drives the arc-shaped frame 308 at the output end to move inward. After the two arc-shaped frames 308 move, they are engaged outside the stator core 4, so that the stator core 4 is fixed inside the rotating ring 304. When installing the winding, the staff can engage the winding in the winding groove 5 inside the stator core 4. When the angle of the stator core 4 needs to be adjusted, the magnetic attraction rod 306 is pulled out from the magnetic attraction grooves 305 on the outer walls of the flipping ring 303 and the rotating ring 304. Then push the rotating ring 304 to slide inside the flipping ring 303 through the sliding blocks and the sliding grooves, so as to adjust the angle. After each adjustment of 90°, the magnetic attraction rod 306 is inserted into the inside of the flipping ring 303 and the rotating ring 304, so that the rotating ring 304 and the flipping ring 303 are fixed, and then the stator core 4 is fixed. After the adjustment, the winding installation at other positions can be continued.

[0037] Please refer toFigures 8-10 , a motor winding installation device, the heat dissipation structure 6 includes a blower 601, an air inlet groove 602 is formed on one side of the blower 601, the outer wall of the equipment board 2 is fixed with a first air outlet cover 603, a ventilation pipe 605 is clamped inside the first air outlet cover 603, and a first ventilation net 604 is arranged on the outer wall of the first air outlet cover 603. The end of the ventilation pipe 605 is connected with a wind shield ring 606, and a limiting pipe 607 is arranged at the front end of the ventilation pipe 605. A second air outlet cover 608 is nested inside the limiting pipe 607. A second ventilation net 610 is arranged at the front end of the second air outlet cover 608, and a moving block 609 is arranged on the outer wall of the second air outlet cover 608. The blower 601 and the equipment board 2 are fixedly installed through an installation groove. The wind shield ring 606 is clamped and connected with the first air outlet cover 603, and a magnetic attraction block 611 is arranged on the inner wall of the wind shield ring 606. The wind shield ring 606 and the equipment board 2 are magnetically fixed through the magnetic attraction block 611. A through groove matching with the ventilation pipe 605 and the limiting pipe 607 is formed on the first air outlet cover 603, and a limiting sleeve is connected to the outside of the through groove. The ventilation pipe 605 and the limiting pipe 607 are clamped and connected with the limiting sleeve. A moving groove is formed on the inner wall of the limiting pipe 607. The second air outlet cover 608 and the limiting pipe 607 are movably connected through the moving block 609 and the moving groove. During the winding installation process, when it is necessary to dissipate heat from the stator and the winding, the blower 601 on the equipment board 2 is controlled to operate. The external air enters the inside of the first air outlet cover 603 through the blower 601 and the air inlet groove 602. Part of the air flow flows out through the first ventilation net 604 on the first air outlet cover 603, and the other part of the air flow flows out through the second ventilation net 610 on the second air outlet cover 608. The two parts of the air flow dissipate heat from the stator core 4 and the winding. When it is necessary to dissipate heat from the winding alone in a concentrated manner, the limiting pipe 607 and the ventilation pipe 605 are pulled to move inside the first air outlet cover 603 and extend outward. After being fully extended, the wind shield ring 606 at the end of the ventilation pipe 605 blocks the first ventilation net 604 on the first air outlet cover 603. At the same time, the ventilation pipe 605 moves to the inside of the limiting sleeve, and its air outlet holes are blocked. The second air outlet cover 608 inside the limiting pipe 607 is pulled to extend outward. The second air outlet cover 608 moves inside the limiting pipe 607 through the moving block 609 on the outer wall. When the second air outlet cover 608 is fully extended, it is very close to the winding. At this time, the blower 601 operates, and all the air flow can only flow out through the second ventilation net 610 on the second air outlet cover 608, directly dissipating heat from the winding.

[0038] Please refer to Figures 11-13, a motor winding installation device, the installation structure 7 includes an adjustment groove 701, an extension frame 702 is movably arranged inside the adjustment groove 701, and a movable groove 704 is opened at the bottom of the adjustment groove 701. An end of the extension frame 702 is provided with a movable block 703, and a threaded rod 706 is arranged on the right side of the extension frame 702. A placement plate 705 is arranged above the extension frame 702. An end of the threaded rod 706 is connected to a handle 707. A clamping plate 708 is arranged at the top of the placement plate 705. One side of the clamping plate 708 is connected to a first mounting block 709. Movable grooves 704 are opened inside both the adjustment groove 701 and the placement plate 705. The upper and lower ends of the extension frame 702 are slidably connected to the movable groove 704 through the movable block 703. The threaded rod 706 penetrates to the inside of the adjustment groove 701, and the threaded rod 706 is movably connected to the installation workbench 1 through a thread. The clamping plate 708 and the placement plate 705 are fixedly installed through the first mounting block 709 and bolts, and the number of clamping plates 708 is two. After the stator winding is installed and needs to be installed with the motor housing, the motor housing is placed on the placement plate 705 and abuts against one side of the clamping plate 708. At this time, push the other clamping plate 708 close to the other side of the motor housing. After the clamping plate 708 abuts against the motor housing, it is fixedly connected to the placement plate 705 through the bottom first mounting block 709. Then the motor housing is fixed on the placement plate 705 through the two clamping plates 708, and the threaded rod 706 can be rotated. When the threaded rod 706 rotates on the installation workbench 1, its end pushes the extension frame 702 to contract inward through the rotating shaft. When contracting, the movable blocks 703 at both ends of the extension frame 702 move in the movable grooves 704 inside the adjustment groove 701 and the placement plate 705 respectively. Then the threaded rod 706 continuously advances and the extension frame 702 continuously contracts. While the extension frame 702 contracts, its two ends rise, thereby driving the placement plate 705 to move upward, realizing the height adjustment of the placement plate 705, and facilitating the installation of the adjusted motor housing with the stator winding more conveniently.

[0039] Working principle: When the present invention is in use, the stator core 4 is moved to the inner sides of the two arc-shaped frames 308. At this time, the two cylinders 307 are controlled to operate. The internal technology of the cylinders 307 is prior art. After the cylinders 307 operate, they drive the arc-shaped frames 308 at the output ends to move inward. After the two arc-shaped frames 308 move, they are clamped on the outer side of the stator core 4, so that the stator core 4 is fixed inside the rotating ring 304. When installing the winding, the staff can clamp the winding in the winding slot 5 inside the stator core 4. When the angle of the stator core 4 needs to be adjusted, the magnetic attraction rod 306 is pulled out from the magnetic attraction slots 305 on the outer walls of the flipping ring 303 and the rotating ring 304, and then the rotating ring 304 is pushed to slide inside the flipping ring 303 through the slider and the sliding slot, so as to adjust the angle. After each 90° adjustment, the magnetic attraction rod 306 is inserted into the inner sides of the flipping ring 303 and the rotating ring 304, so that the rotating ring 304 and the flipping ring 303 are fixed, and then the stator core 4 is fixed. After the adjustment, the installation of the winding at other positions can be continued. During the winding installation process, when heat dissipation needs to be carried out on the stator and the winding, the blower 601 on the equipment board 2 is controlled to operate. The external air enters the inside of the first air outlet cover 603 through the blower 601 and the air inlet slot 602. Part of the air flow flows out through the first ventilation net 604 on the first air outlet cover 603, and the other part of the air flow flows out through the second ventilation net 610 on the second air outlet cover 608. The two parts of the air flow perform heat dissipation treatment on the stator core 4 and the winding. When heat dissipation needs to be carried out on the winding alone in a concentrated manner, the limiting tube 607 and the ventilation tube 605 are pulled to interact inside the first air outlet cover 603 and extend outward. After being fully extended, the wind blocking ring 606 at the end of the ventilation tube 605 blocks the first ventilation net 604 on the first air outlet cover 603. At the same time, the ventilation tube 605 moves to the inside of the limiting sleeve, and its air outlet holes are blocked. And the second air outlet cover 608 inside the limiting tube 607 is pulled to extend outward. The second air outlet cover 608 moves inside the limiting tube 607 through the moving block 609 on the outer wall. When the second air outlet cover 608 is fully extended, it is very close to the winding. At this time, the blower 601 operates, and all the air flow can only flow out through the second ventilation net 610 on the second air outlet cover 608, directly performing heat dissipation treatment on the winding. After the stator winding is installed, when it needs to be installed with the motor housing, the motor housing is placed on the placement plate 705 and abuts against the clamping plate 708 on one side. At this time, another clamping plate 708 is pushed close to the other side of the motor housing. After the clamping plate 708 is attached to the motor housing, it is fixedly connected to the placement plate 705 through the first mounting block 709 at the bottom. Then the motor housing is fixed on the placement plate 705 through the two clamping plates 708. And the threaded rod 706 can be screwed. When the threaded rod 706 rotates on the installation workbench 1, its end pushes the extension frame 702 to contract inward through the rotating shaft. When contracting, the moving blocks 703 at both ends of the extension frame 702 move in the adjustment slots 701 and the moving slots 704 inside the placement plate 705 respectively,Then the threaded rod 706 continuously advances, and the extension frame 702 continuously contracts. While the extension frame 702 contracts, its two ends rise, thereby driving the placement plate 705 to move upward, realizing the height adjustment of the placement plate 705, and facilitating the installation of the adjusted motor housing with the stator winding more conveniently.

[0040] For those skilled in the art, it is obvious that the present invention is not limited to the details of the above exemplary embodiments, and without departing from the spirit or basic characteristics of the present invention, the present invention can be implemented in other specific forms. Therefore, from any point of view, the embodiments should be regarded as exemplary and non-limiting. The scope of the present invention is defined by the appended claims rather than the above description. Therefore, all changes falling within the meaning and scope of the equivalent elements of the claims are intended to be encompassed within the present invention. Any reference signs in the claims should not be regarded as limiting the claims involved.

Claims

1. A motor winding installation device, comprising an installation workbench (1), characterized in that: A bearing (8) is arranged at the top of the installation workbench (1), a device plate (2) is arranged at the top of the bearing (8), a clamping structure (3) is arranged on the left side of the device plate (2), a heat dissipation structure (6) is arranged on the inner side of the device plate (2), and a mounting structure (7) is arranged on the right side of the device plate (2); The clamping structure (3) comprises a support plate (301), a forward and reverse motor (302) is installed on the inner side of the support plate (301), a flip ring (303) is provided at the output end of the forward and reverse motor (302), a rotating ring (304) is clamped on the inner side of the flip ring (303), and a magnetic attraction rod (306) is clamped on the top of the flip ring (303), a magnetic attraction groove (305) is provided on the outer wall of the rotating ring (304), and a cylinder (307) is installed on the inner side of the rotating ring (304), an arc frame (308) is provided at the output end of the cylinder (307), and a rubber strip (309) is connected to the inner wall of the arc frame (308); The heat dissipation structure (6) comprises a blower (601), one side of the blower (601) is provided with an air inlet slot (602), a first air outlet hood (603) is fixed to the outer wall of the equipment plate (2), a ventilation pipe (605) is engaged with the inner side of the first air outlet hood (603), and a first ventilation net (604) is arranged on the outer wall of the first air outlet hood (603), a wind shield ring (606) is connected to the end of the ventilation pipe (605), and a limiting tube (607) is arranged at the front end of the ventilation pipe (605), a second air outlet hood (608) is nested inside the limiting tube (607), a second ventilation net (610) is arranged at the front end of the second air outlet hood (608), and a moving block (609) is arranged on the outer wall of the second air outlet hood (608); The mounting structure (7) comprises an adjusting groove (701), an extension frame (702) is movably arranged inside the adjusting groove (701), and a movable groove (704) is provided at the bottom of the adjusting groove (701), a movable block (703) is arranged at the end of the extension frame (702), and a threaded rod (706) is arranged on the right side of the extension frame (702), a placement plate (705) is arranged above the extension frame (702), a handle (707) is connected to the end of the threaded rod (706), a clamping plate (708) is arranged at the top of the placement plate (705), and a first mounting block (709) is connected to one side of the clamping plate (708).

2. A motor winding installation device according to claim 1, characterized in that: A winding placement frame (10) is arranged at the top of the installation workbench (1), and second installation blocks (9) are connected to both sides of the equipment plate (2). The inner sides of the arc frame (308) and the rubber strip (309) are engaged with the stator core (4), and the inner side of the stator core (4) is provided with a winding groove (5). The equipment plate (2) and the installation workbench (1) are rotatably connected via a bearing (8), and the equipment plate (2) and the installation workbench (1) are fixedly installed via the second installation block (9) and bolts.

3. A motor winding installation device according to claim 1, characterized in that: The support plate (301) is welded to the outer wall of the equipment plate (2), and a mounting groove matching the forward and reverse motor (302) is provided on the inner side of the support plate (301), the forward and reverse motor (302) and the flip ring (303) are movably connected via a rotating shaft, a slider is provided on the outer wall of the rotating ring (304), a sliding groove is provided on the inner wall of the flip ring (303), and the rotating ring (304) and the flip ring (303) are rotatably connected via the slider and the sliding groove.

4. A motor winding installation device according to claim 1, characterized in that: The cylinder (307) and the rotating ring (304) are fixedly installed through the installation groove, and the number of the cylinder (307), the arc frame (308) and the rubber strip (309) is two, the two arc frames (308) are snap-connected with the stator core (4), the magnetic attraction rod (306) and the rotating ring (304) are snap-connected through the flip ring (303) and the magnetic attraction groove (305), and the number of the magnetic attraction groove (305) is four.

5. The motor winding installation device according to claim 1, characterized in that: The blower (601) and the equipment plate (2) are fixedly installed via the installation groove, the wind shield ring (606) is snap-connected with the first air outlet cover (603), and a magnetic attraction block (611) is provided on the inner wall of the wind shield ring (606), and the wind shield ring (606) and the equipment plate (2) are magnetically fixed via the magnetic attraction block (611).

6. A motor winding installation device according to claim 1, characterized in that: The first air outlet cover (603) is provided with a through groove matching the ventilation pipe (605) and the limiting pipe (607), and the outer side of the through groove is connected to the limiting sleeve, and the ventilation pipe (605) and the limiting pipe (607) are snap-connected with the limiting sleeve.

7. The motor winding installation device according to claim 1, characterized in that: The inner wall of the position limiting tube (607) is provided with a movable groove, and the second air outlet cover (608) is movably connected to the position limiting tube (607) via a movable block (609) and the movable groove.

8. The motor winding installation device according to claim 1, characterized in that: The inner sides of the adjusting groove (701) and the placing plate (705) are both provided with movable grooves (704), and the upper and lower ends of the stretching frame (702) are slidably connected to the movable grooves (704) via movable blocks (703).

9. The motor winding installation device according to claim 1, characterized in that: The threaded rod (706) penetrates the inner side of the adjustment groove (701), and the threaded rod (706) is movably connected to the mounting workbench (1) via threads, and the clamping plate (708) and the placement plate (705) are fixedly mounted via a first mounting block (709) and bolts, and the number of the clamping plates (708) is two.

Citation Information

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