Disassembly system for motor hot disassembly equipment

By designing a stator disassembly system that adapts to different sizes of motors, and utilizing a cylinder-driven lifting seat and sliding ring structure, the problem of existing devices being unable to adapt to stators of different sizes has been solved. This has enabled an efficient and stable stator disassembly and cooling process, reducing operational difficulty and risk.

CN224154110UActive Publication Date: 2026-04-21BECOME A BUSINESS MANAGEMENT (GUANGDONG) CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
BECOME A BUSINESS MANAGEMENT (GUANGDONG) CO LTD
Filing Date
2025-04-29
Publication Date
2026-04-21

AI Technical Summary

Technical Problem

Existing motor stator disassembly devices cannot adapt to motor stators of different sizes, resulting in low pushing plate efficiency or failure to complete the disassembly task. Furthermore, uneven force is easily generated during the disassembly process, leading to stator deformation or damage.

Method used

A disassembly system for a motor thermal disassembly device was designed, including an electrical control box, a thermal disassembly fixture body, a disassembly head, and a fixing component. The system uses a cylinder-driven lifting seat, a sliding ring, and a hinge plate structure to accommodate stators of different sizes. The workpiece is stably fixed by a heating plate and an arc-shaped clamping seat, ensuring the stability and accuracy of the disassembly process.

Benefits of technology

It improves disassembly efficiency, reduces disassembly difficulties caused by stator wobbling and sliding, ensures the integrity and safety of the stator during disassembly, and reduces the labor intensity and safety risks for operators.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a dismantling system for motor hot dismantling equipment, which relates to the technical field of motor hot dismantling equipment and comprises an electric cabinet, the upper end of the electric cabinet is fixedly connected with a hot dismantling tool body, the upper end of the hot dismantling tool body is fixedly connected with a fixing plate in an embedded manner, the upper end of the fixing plate is provided with a first cylinder, and the telescopic end of the first cylinder is provided with a dismantling head. A movable tray is slidably connected to the bottom end in the hot disassembly tool body, a hot disassembly table is installed at the upper end of the movable tray, fixing bases are symmetrically connected to the bottom end of the hot disassembly tool body in a threaded mode, second air cylinders are installed at one ends of the fixing bases, and the telescopic ends of the second air cylinders penetrate through the fixing bases and are provided with arc-shaped clamping bases. By the adoption of the structure, the device can adapt to workpieces of different sizes, the universality and applicability of the device are improved, the stator can be stably fixed, disassembly difficulty caused by shaking or sliding of the stator is avoided, disassembly time can be shortened, and work efficiency is improved.
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Description

Technical Field

[0001] This utility model belongs to the technical field of motor thermal disassembly equipment, and specifically relates to a disassembly system for motor thermal disassembly equipment. Background Technology

[0002] Electronic thermal disassembly is a method of removing components or parts from electronic devices by heating them during the repair, recycling, or reuse of electronic equipment. It primarily utilizes the principle of thermal expansion. When components or parts in electronic equipment are heated, the bonding force between the component or part and the substrate or surrounding materials weakens due to the difference in their coefficients of thermal expansion, making removal easier. During repair, it may be necessary to replace damaged components or parts. Thermal disassembly makes it easier to remove damaged components or parts from electronic equipment for replacement or repair.

[0003] Announcement No. "CN206004493U" discloses a motor stator disassembly fixture, comprising a base and a push plate. The base has a baffle at one end and a stator receiving groove at the other end, with a retaining ring near the center to prevent movement of the motor housing. The push plate is located within a groove formed between the baffle and the retaining ring. A lead screw extending beyond the baffle is connected to the push plate via a bearing. The baffle has an internally threaded hole that mates with the lead screw. The motor housing is placed in the groove near the retaining ring, and the lead screw is rotated, causing the push plate to press against the stator and continue moving forward, pushing the stator out of the motor housing and into the stator receiving groove, thus completing the stator disassembly. This motor stator disassembly fixture ensures more even force distribution during stator disassembly, preventing stator damage.

[0004] Although the above-mentioned utility model makes the force more even during stator disassembly and avoids stator damage, the fixed size of the push plate makes it impossible to effectively contact and cooperate with motor stators of various sizes. For motor stators of larger or smaller sizes, the push plate cannot provide sufficient support and pushing force, resulting in low efficiency of the push plate or failure to complete the disassembly task. Moreover, when the contact area between the push plate and the motor stator is insufficient, uneven force will be generated during the disassembly process, resulting in stator deformation, damage or incomplete disassembly. Utility Model Content

[0005] In response to the problems mentioned in the background art, the purpose of this utility model is to provide a disassembly system for motor thermal disassembly equipment, so as to solve the problems that due to the fixed size of the push plate, it is impossible to effectively contact and cooperate with motor stators of various sizes. For motor stators of large or small size, the push plate cannot provide sufficient support and pushing force, resulting in low efficiency of the push plate or failure to complete the disassembly task. Moreover, when the contact area between the push plate and the motor stator is insufficient, uneven force will be generated during the disassembly process, resulting in stator deformation, damage or incomplete disassembly.

[0006] The above-mentioned technical objective of this utility model is achieved through the following technical solution:

[0007] The dismantling system for motor hot dismantling equipment includes an electrical control box. A hot dismantling fixture body is fixedly connected to the upper end of the electrical control box. A safety door is symmetrically hinged to one end of the hot dismantling fixture body. An air duct is symmetrically fixedly connected to the other end of the hot dismantling fixture body. An exhaust device is fixedly connected to the other end of the air duct. A fixing plate is embedded and fixedly connected to the upper end of the hot dismantling fixture body. A first cylinder is installed on the upper end of the fixing plate. The telescopic end of the first cylinder extends into the interior of the hot dismantling fixture body and is equipped with a dismantling head. A fixing component is installed inside the hot dismantling fixture body.

[0008] The disassembly head includes a lifting seat, a mounting seat, a fifth cylinder, a fixed rod, a push seat, sliding rings, a hinge plate, a top block, and a limit block. The lifting seat is fixedly connected to the telescopic end of the first cylinder. The mounting seat is fixedly connected to the bottom of the lifting seat. The fifth cylinder is symmetrically mounted on the mounting seat. The fixed rod is embedded and fixedly connected to the center of the mounting seat. The limit block is fixedly connected to the other end of the fixed rod. The push seat is slidably sleeved on the outside of the fixed rod. The telescopic end of the fifth cylinder passes through the mounting seat and is fixedly connected to the push seat. Three sliding rings are sleeved on the outside of the fixed rod, and the three sliding rings are arranged in an upper, middle, and lower position. On the fixed rod, the sliding ring of the upper half of the fixed rod is fixedly connected to the bottom end of the push seat, and the sliding ring of the lower half of the fixed rod is fixedly connected to the upper end of the limit block. The two sliding rings in the upper half and middle of the fixed rod are slidably set with the fixed rod. The outer side of the sliding ring is symmetrically hinged with hinge plates at equal distances, and the other end of the hinge plate is hinged with a top block. It can adapt to workpieces of different sizes, improve the versatility and applicability of the device, and can stably fix the stator, avoiding disassembly difficulties caused by stator shaking or sliding, which helps to reduce disassembly time and improve work efficiency.

[0009] As a preferred technical solution, the fixing component includes a fixing seat, a second cylinder, a heating plate, and an arc-shaped clamping seat. The fixing seat is symmetrically threaded to the bottom of the hot-disassembly fixture body. The second cylinder is installed at one end of the fixing seat. The telescopic end of the second cylinder passes through the fixing seat and is fixedly connected to the heating plate. The arc-shaped clamping seat is fixedly connected to the other end of the heating plate. Guide rods are symmetrically fixedly connected to the heating plate near the second cylinder. Guide holes are symmetrically opened at one end of the fixing seat. The guide rods and guide holes are slidably connected. The cooperation between the guide rods and guide holes can ensure the precise position of the arc-shaped clamping seat during the movement process, prevent the arc-shaped clamping seat from shifting or shaking during the movement, thereby improving the clamping stability.

[0010] As a preferred technical solution, a movable tray is slidably connected to the bottom of the hot disassembly fixture body, and a hot disassembly platform is installed on the top of the movable tray. Sliding blocks are symmetrically fixedly connected to the bottom of the hot disassembly fixture body, and sliding grooves are symmetrically opened at the bottom of the movable tray. The sliding blocks and sliding grooves are slidably connected. Through the movable tray, the operator can easily move the workpiece from the outside to the inside of the equipment without performing complicated handling or adjustment work, thereby simplifying the operation process.

[0011] As a preferred technical solution, a third cylinder is symmetrically installed at the bottom of the fixed plate. The extension end of the third cylinder is fixedly connected to a lifting platform. A fourth cylinder is symmetrically installed at the top of the lifting platform. The extension end of the fourth cylinder is fixedly connected to a movable seat. The movable seat and the top of the lifting platform are slidably connected. Placement plates are fixedly connected to the opposite ends of the movable seat. This can prevent the stator from deforming or cracking due to thermal expansion and contraction during the cooling process, thereby maintaining the integrity of the stator structure. It also reduces manual disassembly and intervention during the cooling process, reducing the labor intensity and safety risks for operators.

[0012] As a preferred technical solution, the bottom end of the fixed plate is symmetrically fixedly connected with limit rods, and the other end of the limit rods is fixedly connected to the bottom end of the hot disassembly fixture body. The upper end of the lifting platform is symmetrically opened with limit holes, and the limit rods and limit holes are slidably connected. The limit rods play a key guiding and limiting role in the lifting process of the lifting platform. By limiting the limit rods on the outside, it can be ensured that the lifting platform moves along the predetermined trajectory during the lifting process, preventing it from deviating or shaking.

[0013] As a preferred technical solution, guide blocks are symmetrically fixedly connected to the upper end of the lifting platform, and guide grooves are symmetrically opened at the bottom end of the moving seat. The guide blocks and guide grooves are slidably connected. The guide blocks provide a clear moving path for the moving seat, ensuring the accuracy of the moving seat during the movement process, helping to reduce deviations and shaking during the movement process, and improving the overall stability.

[0014] As a preferred technical solution, a control panel and a display are installed at one end of the hot disassembly fixture body. The control panel includes a console, a start button, a reset button, and an emergency stop button. The console is installed at one end of the hot disassembly fixture body, and the start button, reset button, and emergency stop button are respectively installed on the upper part of the console. This allows for convenient control of various functions of the equipment, such as starting, stopping, and adjusting parameters, thereby simplifying the operation process.

[0015] In summary, the present invention has the following main advantages:

[0016] First, in this utility model, the workpiece is placed on the hot disassembly table, the first cylinder is activated to control the lifting seat to drive the mounting seat to descend, so that the fixing rod and the top block descend into the stator. Then, the fifth cylinder is activated to control the pushing seat to slide on the outside of the fixing rod. The pushing seat drives the sliding ring to descend, and at the same time, the hinge plate deforms, and the top block moves to fit against the inner wall of the stator. The disassembly head is controlled to drive the stator to rise. This can adapt to workpieces of different sizes, improve the versatility and applicability of the device, and can stably fix the stator, avoiding disassembly difficulties caused by stator shaking or sliding, which helps to reduce disassembly time and improve work efficiency.

[0017] Secondly, in this utility model, the workpiece is placed on the hot disassembly table, and the moving tray is pushed in. Then, the second cylinder is activated to control the heating plate to move the arc-shaped clamping seat. At the same time, the heating plate drives the guide rod to slide inside the guide hole. The arc-shaped clamping seat clamps and fixes the workpiece on the hot disassembly table. Then, the first cylinder is activated to control the disassembly head to descend and disassemble the workpiece through the disassembly head. It can stably clamp the workpiece to be disassembled and ensure that the workpiece will not be displaced or fall off during heating and disassembly. This greatly improves the accuracy and efficiency of disassembly and reduces the risk of disassembly failure or workpiece damage due to improper operation.

[0018] Third, in this utility model, the first cylinder is activated to control the disassembly head to descend, and the disassembly head pulls the stator. After the stator is raised to a suitable height, the third cylinder is activated to control the lifting platform to rise. Then, the fourth cylinder is activated to push the moving seat to move and merge the placement plate. Then, the disassembly head is controlled to disconnect from the stator, so that the stator is placed on the placement plate for cooling. This can prevent the stator from deforming or cracking due to thermal expansion and contraction during the cooling process, thus maintaining the integrity of the stator structure. Moreover, it reduces manual disassembly and cooling intervention, and reduces the labor intensity and safety risks of operators. Attached Figure Description

[0019] Figure 1 This is a three-dimensional structural schematic diagram of the present invention;

[0020] Figure 2 This is a schematic diagram of the internal three-dimensional structure of the hot-disassembly tooling body of this utility model;

[0021] Figure 3 This is the utility model Figure 2 Enlarged view of part A;

[0022] Figure 4 This is the utility model Figure 2 Enlarged view of part B;

[0023] Figure 5 This is the utility model Figure 2 Enlarged view of part C;

[0024] Figure 6 This is the utility model Figure 2 Enlarged view of part D;

[0025] Figure 7 This is a three-dimensional structural diagram of the disassembly head of this utility model.

[0026] Reference numerals: 1. Main body of the hot disassembly fixture; 2. Exhaust equipment; 3. Air duct; 4. Electrical control box; 5. Safety door; 6. Control panel; 61. Control console; 62. Start button; 63. Reset button; 64. Emergency stop button; 7. Display; 8. Sliding block; 9. Sliding groove; 10. Moving tray; 11. Hot disassembly table; 12. First cylinder; 13. Disassembly head; 131. Lifting seat; 132. Mounting seat; 133. Fifth cylinder; 134. Fixing rod; 135. 136. Push seat; 137. Sliding ring; 138. Hinge plate; 139. Top block; 130. Limiting block; 14. Fixed seat; 15. Second cylinder; 16. Guide rod; 17. Guide hole; 18. Heating plate; 19. Arc-shaped clamping seat; 20. Third cylinder; 21. Lifting platform; 22. Limiting rod; 23. Limiting hole; 24. Fourth cylinder; 25. Moving seat; 26. Guide groove; 27. Guide block; 28. Placement plate; 29. ​​Fixed plate; 30. Fixed assembly. Detailed Implementation

[0027] Example

[0028] refer to Figures 1 to 7 The dismantling system for the motor hot dismantling equipment in this embodiment includes an electrical control box 4. A hot dismantling fixture body 1 is fixedly connected to the upper end of the electrical control box 4. A safety door 5 is symmetrically hinged to one end of the hot dismantling fixture body 1. An air duct 3 is symmetrically fixedly connected to the other end of the hot dismantling fixture body 1. An exhaust device 2 is fixedly connected to the other end of the air duct 3. A fixing plate 29 is embedded and fixedly connected to the upper end of the hot dismantling fixture body 1. A first cylinder 12 is installed on the upper end of the fixing plate 29. The telescopic end of the first cylinder 12 extends into the interior of the hot dismantling fixture body 1 and is equipped with a dismantling head 13. A fixing component 30 is installed inside the hot dismantling fixture body 1.

[0029] The disassembly head 13 includes a lifting seat 131, a mounting seat 132, a fifth cylinder 133, a fixing rod 134, a push seat 135, sliding rings 136, a hinge plate 137, a top block 138, and a limiting block 139. The lifting seat 131 is fixedly connected to the telescopic end of the first cylinder 12. The mounting seat 132 is fixedly connected to the bottom of the lifting seat 131. The fifth cylinder 133 is symmetrically mounted on the mounting seat 132. The fixing rod 134 is embedded and fixedly connected to the center of the mounting seat 132. The limiting block 139 is fixedly connected to the other end of the fixing rod 134. The push seat 135 is slidably sleeved on the outside of the fixing rod 134. The telescopic end of the fifth cylinder 133 passes through the mounting seat 132 and is fixedly connected to the push seat 135. Three sliding rings 136 are sleeved on the outside of the fixing rod 134. The three sliding rings 136 are arranged in an upper, middle, and lower position on the fixing rod 134. The upper half of the fixing rod 134 slides... The moving ring 136 is fixedly connected to the bottom end of the push seat 135. The sliding ring 136 of the lower half of the fixed rod 134 is fixedly connected to the upper end of the limit block 139. The two sliding rings 136 of the upper half and middle of the fixed rod 134 are slidably set with the fixed rod 134. The outer side of the sliding ring 136 is symmetrically hinged with hinge plates 137 at equal distances. The other end of the hinge plate 137 is hinged with a top block 138. The workpiece is placed on the hot disassembly table 11. The first cylinder 12 is started to control the lifting seat 131 to drive the mounting seat 132 to descend, so that the fixed rod 134 and the top block 138 descend into the stator. Then the fifth cylinder 133 is started to control the push seat 135 to slide on the outside of the fixed rod 134. The push seat 135 drives the sliding ring 136 to descend. At the same time, the hinge plate 137 deforms and the top block 138 moves to fit against the inner wall of the stator. The disassembly head 13 is controlled to drive the stator to rise.

[0030] refer to Figure 4The fixing assembly 30 includes a fixing base 14, a second cylinder 15, a heating plate 18, and an arc-shaped clamping seat 19. The fixing base 14 is symmetrically threaded to the bottom of the heat disassembly fixture body 1. The second cylinder 15 is mounted on one end of the fixing base 14. The telescopic end of the second cylinder 15 passes through the fixing base 14 and is fixedly connected to the heating plate 18. The arc-shaped clamping seat 19 is fixedly connected to the other end of the heating plate 18. Guide rods 16 are symmetrically fixedly connected to the end of the heating plate 18 near the second cylinder 15. Guide holes 17 are symmetrically opened on one end of the fixing base 14. The guide rods 16 and guide holes 17 are slidably connected. The heating plate 18 contains specially designed heating coils made of copper tubing wound into a ring shape. When a high-frequency alternating current passes through the heating coils, an alternating magnetic field is generated around the coils. The workpiece is placed in this alternating magnetic field. In the process, an induced electromotive force is generated inside the workpiece shell, which in turn forms an induced current. This induced current flows in a vortex shape inside the metal. During the flow of the vortex inside the workpiece shell, Joule heat is generated due to the resistance of the metal itself. As the vortex is continuously generated and Joule heat is accumulated, the temperature of the workpiece shell gradually increases, achieving the purpose of heating. The workpiece is placed on the heat dismantling platform 11, and the tray is pushed in. Then, the second cylinder 15 is activated to control the heating plate 18 to move the arc-shaped clamping seat 19. The arc-shaped clamping seat 19 clamps and fixes the workpiece on the heat dismantling platform 11. Then, the first cylinder 12 is activated to control the dismantling head 13 to descend and dismantle the workpiece through the dismantling head 13. When the heating plate 18 moves, the heating plate 18 drives the guide rod 16 to slide inside the guide hole 17.

[0031] refer to Figure 5 The bottom of the hot disassembly fixture body 1 is slidably connected to a movable tray 10. A hot disassembly table 11 is installed on the upper end of the movable tray 10. Sliding blocks 8 are symmetrically fixedly connected to the bottom of the hot disassembly fixture body 1. Sliding grooves 9 are symmetrically opened at the bottom of the movable tray 10. The sliding blocks 8 and the sliding grooves 9 are slidably connected. When the workpiece is placed on the hot disassembly table 11 and the movable tray 10 is pushed into the hot disassembly fixture body 1, the movable tray 10 drives the sliding grooves 9 to slide outside the sliding blocks 8.

[0032] refer to Figures 2 to 3A third cylinder 20 is symmetrically installed at the bottom of the fixed plate 29. The extension end of the third cylinder 20 is fixedly connected to the lifting platform 21. A fourth cylinder 24 is symmetrically installed at the upper end of the lifting platform 21. The extension end of the fourth cylinder 24 is fixedly connected to the movable seat 25. The movable seat 25 and the upper end of the lifting platform 21 are slidably connected. Placement plates 28 are fixedly connected to the opposite ends of the movable seat 25. The disassembly head 13 is controlled to descend, and the disassembly head 13 pulls the stator. After the stator is raised to a suitable height, the third cylinder 20 is started to control the lifting platform 21 to rise. Then the fourth cylinder 24 is started to push the movable seat 25 to move and merge the placement plates 28. Then the disassembly head 13 is controlled to disconnect from the stator, so that the stator is placed on the placement plate 28.

[0033] refer to Figure 3 The bottom end of the fixed plate 29 is symmetrically fixedly connected to the limit rod 22, and the other end of the limit rod 22 is fixedly connected to the bottom end of the hot disassembly fixture body 1. The upper end of the lifting platform 21 is symmetrically provided with limit holes 23. The limit rod 22 and the limit hole 23 are slidably connected. When the lifting platform 21 is raised or lowered, the lifting platform 21 drives the limit hole 23 to slide outside the limit rod 22.

[0034] refer to Figure 3 The upper end of the lifting platform 21 is symmetrically fixedly connected with guide blocks 27, and the bottom end of the movable seat 25 is symmetrically provided with guide grooves 26. The guide blocks 27 and the guide grooves 26 are slidably connected. When the movable seat 25 moves, the movable seat 25 drives the guide grooves 26 to slide outside the guide blocks 27.

[0035] refer to Figure 6 The hot disassembly fixture body 1 is equipped with a control panel 6 and a display 7 at one end. The control panel 6 includes a console 61, a start button 62, a reset button 63, and an emergency stop button 64. The console 61 is installed at one end of the hot disassembly fixture body 1. The start button 62, reset button 63, and emergency stop button 64 are respectively installed on the upper end of the console 61. The hot disassembly fixture body 1 can be started by using the start button 62. The internal parts of the hot disassembly fixture body 1 can be reset by using the reset button 63. The hot disassembly fixture body 1 can be stopped in an emergency by using the emergency stop button 64.

[0036] Operating principle and advantages: First, the workpiece is placed on the heat dismantling table 11, and the moving tray 10 is pushed in. Then, the second cylinder 15 is activated to control the heating plate 18 to move the arc-shaped clamping seat 19. At the same time, the heating plate 18 drives the guide rod 16 to slide inside the guide hole 17. The arc-shaped clamping seat 19 clamps and fixes the workpiece on the heat dismantling table 11. The heating plate 18 is activated to heat the workpiece. Then, the first cylinder 12 is activated to control the lifting seat 131 to lower the mounting seat 132, so that the fixing rod 134 and the top block 138 descend into the stator. Then, the fifth cylinder 133 is activated to control the pushing seat 135 to move the fixing rod. 134 slides outward, pushing seat 135 to drive sliding ring 136 to descend, while hinge plate 137 deforms, top block 138 moves to fit against the inner wall of stator, then controls disassembly head 13 to drive stator to rise, and after the stator is raised to a suitable height, the third cylinder 20 is activated to control lifting platform 21 to rise, then the fourth cylinder 24 is activated to push moving seat 25 to drive placement plate 28 to move and merge, then controls disassembly head 13 to end connection with stator, so that stator is placed on placement plate 28, allowing the housing and stator to cool, after the time is up, indicating that processing is complete, and the housing and stator can be taken out;

[0037] This invention can adapt to workpieces of different sizes, improving the versatility and applicability of the device. It can also stably fix the stator, avoiding disassembly difficulties caused by stator shaking or sliding, thus helping to reduce disassembly time and improve work efficiency.

Claims

1. A disassembling system for a motor hot stripping apparatus, comprising an electric control box (4), characterized in that: The upper end of the electrical control box (4) is fixedly connected to the hot disassembly fixture body (1). One end of the hot disassembly fixture body (1) is symmetrically hinged with a safety door (5). The other end of the hot disassembly fixture body (1) is symmetrically fixedly connected with an air duct (3). The other end of the air duct (3) is fixedly connected with an exhaust device (2). The upper end of the hot disassembly fixture body (1) is embedded with a fixing plate (29). The upper end of the fixing plate (29) is equipped with a first cylinder (12). The telescopic end of the first cylinder (12) extends into the interior of the hot disassembly fixture body (1) and is equipped with a disassembly head (13). The interior of the hot disassembly fixture body (1) is equipped with a fixing component (30). The disassembly head (13) includes a lifting seat (131), a mounting seat (132), a fifth cylinder (133), a fixing rod (134), a push seat (135), a sliding ring (136), a hinge plate (137), a top block (138), and a limiting block (139). The first cylinder (12) is fixedly connected to the lifting seat (131) at its telescopic end. The bottom of the lifting seat (131) is fixedly connected to the mounting seat (132). The fifth cylinder (133) is symmetrically mounted on the mounting seat (132). The fixing rod (134) is embedded and fixedly connected to the center of the mounting seat (132). The other end of the fixing rod (134) is fixedly connected to the limiting block (139). The push seat (135) is slidably sleeved on the outside of the fixing rod (134). The fifth cylinder... (133) The telescopic end passes through the mounting base (132) and is fixedly connected to the push base (135). Three sliding rings (136) are sleeved on the outside of the fixed rod (134). The three sliding rings (136) are arranged on the fixed rod (134) in an upper, middle and lower position. The sliding ring (136) of the upper half of the fixed rod (134) is fixedly connected to the bottom end of the push base (135). The sliding ring (136) of the lower half of the fixed rod (134) is fixedly connected to the upper end of the limiting block (139). The two sliding rings (136) of the upper half and middle part of the fixed rod (134) are slidably set with the fixed rod (134). The sliding ring (136) is symmetrically hinged at equal distances on the outside of the sliding ring (136). The other end of the hinge plate (137) is hinged to a top block (138).

2. The disassembly system for a motor hot-strip machine of claim 1, wherein: The fixing component (30) includes a fixing seat (14), a second cylinder (15), a heating plate (18), and an arc-shaped clamping seat (19). The fixing seat (14) is symmetrically threaded to the bottom of the hot disassembly fixture body (1). The second cylinder (15) is installed at one end of the fixing seat (14). The extension end of the second cylinder (15) passes through the fixing seat (14) and is fixedly connected to the heating plate (18). The arc-shaped clamping seat (19) is fixedly connected to the other end of the heating plate (18). The guide rod (16) is symmetrically fixedly connected to the end of the heating plate (18) near the second cylinder (15). The guide hole (17) is symmetrically opened at one end of the fixing seat (14). The guide rod (16) and the guide hole (17) are slidably connected.

3. The de-assembly system for a motor hot-strip machine of claim 1, wherein: The hot disassembly fixture body (1) has a movable tray (10) slidably connected to its bottom. A hot disassembly table (11) is installed on the upper end of the movable tray (10). Sliding blocks (8) are symmetrically fixedly connected to the bottom of the hot disassembly fixture body (1). Sliding grooves (9) are symmetrically opened at the bottom of the movable tray (10). The sliding blocks (8) and the sliding grooves (9) are slidably connected.

4. The de-assembly system for a motor hot-strip machine of claim 1, wherein: A third cylinder (20) is symmetrically installed at the bottom of the fixed plate (29). A lifting platform (21) is fixedly connected to the telescopic end of the third cylinder (20). A fourth cylinder (24) is symmetrically installed at the upper end of the lifting platform (21). A movable seat (25) is fixedly connected to the telescopic end of the fourth cylinder (24). The movable seat (25) is slidably connected to the upper end of the lifting platform (21). A placement plate (28) is fixedly connected to the opposite ends of the movable seat (25).

5. The disassembly system for a motor hot-strip machine of claim 4, wherein: The bottom end of the fixed plate (29) is symmetrically fixedly connected with a limiting rod (22), and the other end of the limiting rod (22) is fixedly connected to the bottom end of the hot disassembly fixture body (1). The upper end of the lifting platform (21) is symmetrically provided with limiting holes (23), and the limiting rod (22) and the limiting hole (23) are slidably connected.

6. The disassembly system for a motor hot-strip machine of claim 5, wherein: The upper end of the lifting platform (21) is symmetrically fixed with guide blocks (27), and the bottom end of the movable seat (25) is symmetrically provided with guide grooves (26). The guide blocks (27) and guide grooves (26) are slidably connected.

7. The de-assembly system for a motor hot de-assembly apparatus of claim 1, wherein: The hot disassembly fixture body (1) is equipped with a control panel (6) and a display (7) at one end. The control panel (6) includes a console (61), a start button (62), a reset button (63) and an emergency stop button (64). The hot disassembly fixture body (1) is equipped with a console (61) at one end. The console (61) is equipped with a start button (62), a reset button (63) and an emergency stop button (64) at the upper end.

Citation Information

Patent Citations

  • Motor stator dismantling tool

    CN206004493U