Quick-release motor convenient to overhaul and process
By designing a quick-disassembly motor and using snap-and-plate structures, the problem of complete removal of existing motors during maintenance is solved, rapid disassembly and installation is achieved, and maintenance efficiency and flexibility are improved.
Patent Information
- Application Number
- CN202510194163.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-21
- Publication Date
- 2025-05-30
AI Technical Summary
The existing motor needs to be completely removed during maintenance, resulting in large installation and disassembly work, time-consuming and labor-intensive, and affecting maintenance efficiency.
A quick-removal motor is designed, using snap and pressure plate structure, and the motor can be quickly disassembled and installed through simple pulling and extrusion actions, reducing the dependence on bolts.
The disassembly and installation process is simplified, allowing precise positioning of maintenance parts, saving a lot of time and energy, reducing the intensity of physical labor and fatigue risks, and improving the flexibility and adaptability of maintenance work.
Smart Images

Figure CN120074088A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of motors, and particularly to a quick-disassembly motor facilitating maintenance and repair. Background Art
[0002] A motor refers to an electromagnetic device that realizes the conversion or transmission of electrical energy based on the law of electromagnetic induction. It is represented by the letter M in a circuit, and its main function is to generate a driving torque and serve as a power source for electrical appliances or various machines. A generator is represented by the letter G in a circuit, and its main function is to convert mechanical energy into electrical energy. Currently, the most common method is to use heat energy, water energy, etc. to drive the rotor of the generator to generate electricity.
[0003] Currently, during the assembly of existing motors, most components are fixed by bolts. When maintaining and repairing the motor, the entire motor needs to be disassembled. However, since most current motors are fixed by bolts, the workload of installation and disassembly increases, which is time-consuming and laborious, affecting the maintenance efficiency of the staff. Summary of the Invention
[0004] In view of the problems existing in the above-mentioned existing quick-disassembly motor facilitating maintenance and repair, the present invention is proposed.
[0005] Therefore, the present invention provides a quick-disassembly motor facilitating maintenance and repair, aiming to solve the problem that when maintaining and repairing the motor, the entire motor needs to be disassembled, but since most current motors are fixed by bolts, the workload of installation and disassembly increases, which is time-consuming and laborious, affecting the maintenance efficiency of the staff.
[0006] To solve the above technical problems, the present invention provides the following technical solutions: a motor unit, including a motor body, a buckle arranged on the motor body, a pressing plate arranged inside the buckle, a motor component arranged inside the motor body, and an output component arranged on the motor component;
[0007] A fixing and disassembly unit, including a connection component arranged at one end of the motor body, and a fixing component arranged inside the connection component, and the fixing component is rotationally connected to the output component;
[0008] A heat dissipation and disassembly unit, including a linkage component arranged at the other end of the motor body, and the linkage component cooperates with the fixing component.
[0009] As a preferred embodiment of the quick - detachable motor facilitating maintenance and repair according to the present invention, wherein: the connection assembly includes a first fixed clamping plate disposed at one end of the motor body, a sealing groove disposed inside the first fixed clamping plate, and an L - shaped clamping block disposed inside the first fixed clamping plate, and the L - shaped clamping block is slidably connected to the buckle.
[0010] As a preferred embodiment of the quick - detachable motor facilitating maintenance and repair according to the present invention, wherein: a moving groove is provided inside the first fixed clamping plate, a sliding groove is provided inside the moving groove, and both the moving groove and the sliding groove are slidably connected to the pressing plate.
[0011] As a preferred embodiment of the quick - detachable motor facilitating maintenance and repair according to the present invention, wherein: a spring groove is provided inside the first fixed clamping plate, and the spring groove is connected to the fixing assembly.
[0012] As a preferred embodiment of the quick - detachable motor facilitating maintenance and repair according to the present invention, wherein: the fixing assembly includes a moving ring slidably disposed inside the first fixed clamping plate, a rotating shaft disposed at one end of the moving ring, and a fixed clamping strip rotatably disposed on the rotating shaft, and the fixed clamping strip is slidably connected to the sliding groove and the moving groove.
[0013] As a preferred embodiment of the quick - detachable motor facilitating maintenance and repair according to the present invention, wherein: a return spring is provided on the outer diameter of the moving ring, and the return spring is connected to the spring groove.
[0014] As a preferred embodiment of the quick - detachable motor facilitating maintenance and repair according to the present invention, wherein: a limiting moving shaft is provided on the outer diameter of the fixed clamping strip, and the limiting moving shaft is slidably connected to the sliding groove.
[0015] As a preferred embodiment of the quick - detachable motor facilitating maintenance and repair according to the present invention, wherein: a fixed block is provided on the outer diameter of the first fixed clamping plate, and the fixed block is connected to the motor body.
[0016] As a preferred embodiment of the quick - detachable motor facilitating maintenance and repair according to the present invention, wherein: the linkage assembly includes a heat dissipation member disposed at the other end of the motor body, a connection card shell disposed on the heat dissipation member, a connection ring disposed on the connection card shell, and a second fixed clamping plate disposed on the connection ring, and the second fixed clamping plate cooperates with the fixed clamping strip.
[0017] As a preferred embodiment of the quick - detachable motor facilitating maintenance and repair according to the present invention, wherein: the other end of the second fixed clamping plate is slidably connected to the pressing plate, and both the second fixed clamping plate and the pressing plate are snap - connected to the fixed clamping strip.
[0018] Advantages of the present invention: By simplifying the disassembly and installation processes, maintenance personnel can quickly separate the connection component from the motor body and release the fixation of the linkage component. During installation, snap fixation can also be rapidly completed without the need for repeated adjustments as in the case of tightening bolts. Moreover, it allows for precise positioning of the repair area, enabling targeted local repair based on the location of the motor problem, thus avoiding the situation in traditional repairs where the entire motor has to be completely removed due to the inability to precisely locate the problem, saving a great deal of time and effort. At the same time, the operation is smooth, without the need to use complex tools for cumbersome operations on numerous bolts. Maintenance personnel only need to perform simple pulling and squeezing actions to complete disassembly and installation, greatly reducing the physical labor intensity and the risk of fatigue and injury caused by long-term high-intensity labor. Whether it is a minor local repair or a major overhaul, it can be easily handled, enhancing the flexibility and adaptability of the repair work and also reducing the risk of damaging motor components due to improper disassembly, ensuring the integrity of the motor during disassembly and installation, which is conducive to improving the reliability of equipment maintenance and extending the service life of the motor. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the following will briefly introduce the drawings required for description in the embodiments. Obviously, the following-described drawings are only some embodiments of the present invention. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings.
[0020] Figure 1 FIG. is a schematic diagram of the overall structure of the quick-disassembly motor for easy maintenance and repair of the present invention.
[0021] Figure 2 FIG. is a schematic side view structure diagram of the quick-disassembly motor for easy maintenance and repair of the present invention.
[0022] Figure 3 FIG. is a schematic diagram of the internal structure of the quick-disassembly motor for easy maintenance and repair of the present invention.
[0023] Figure 4 FIG. is of the quick-disassembly motor for easy maintenance and repair of the present invention Figure 3 magnified structure diagram at position A.
[0024] Figure 5 FIG. is a schematic diagram of the internal sectional structure of the quick-disassembly motor for easy maintenance and repair of the present invention.
[0025] Figure 6 FIG. is of the quick-disassembly motor for easy maintenance and repair of the present invention Figure 5 magnified structure diagram at position B.
[0026] Figure 7 FIG. is a schematic sectional structure diagram of the quick-disassembly motor for easy maintenance and repair of the present invention.
[0027] Figure 8 For the quick - detachable motor of the present invention that is convenient for maintenance and repair Figure 7 Schematic diagram of the enlarged structure at C.
[0028] Figure 9 Explosion structure schematic diagram of the quick - detachable motor of the present invention that is convenient for maintenance and repair.
[0029] Figure 10 Fixed structure schematic diagram of the quick - detachable motor of the present invention that is convenient for maintenance and repair.
[0030] Explanation of reference numerals: 100, motor unit; 101, motor body; 102, buckle; 103, pressing plate; 104, motor component; 105, output component; 200, fixed - removal unit; 201, connection assembly; 2011, first fixed clamping plate; 2012, L - shaped clamping block; 2013, sealing groove; 2014, moving groove; 2015, sliding groove; 2016, spring groove; 202, fixing component; 2021, moving ring; 2022, return spring; 2023, rotating shaft; 2024, fixed clamping strip; 2025, limiting moving shaft; 2026, fixed block; 300, heat - dissipation removal unit; 301, linkage assembly; 3011, heat - dissipation component; 3012, connecting shell; 3013, connecting ring; 3014, second fixed clamping plate. Detailed implementation manners
[0031] To make the above - mentioned objects, features, and advantages of the present invention more obvious and understandable, the following will describe the detailed implementation manners of the present invention with reference to the drawings in the specification.
[0032] Example 1, referring to Figure 1 - Figure 4 , which is the first embodiment of the present invention, provides a quick - detachable motor that is convenient for maintenance and repair. This device includes: a motor unit 100, a fixed - removal unit 200, and a heat - dissipation removal unit 300.
[0033] Among them, the motor unit 100 includes a motor body 101, a buckle 102 arranged on the motor body 101, a pressing plate 103 arranged inside the buckle 102, a motor component 104 arranged inside the motor body 101, and an output component 105 arranged on the motor component 104. When performing maintenance and inspection on the motor, the operator squeezes the fixing component 202, so that the fixing component 202 can slide off the pressing plate 103, thereby releasing the overall fixation of the motor body 101. And then by rotating the connection assembly 201, the buckle 102 is also released from the limitation, thus completing the overall removal of the motor, and then the motor is repaired and maintained;
[0034] The fixed removal unit 200 includes a connection component 201 provided at one end of the motor body 101, and a fixing component 202 provided inside the connection component 201. The fixing component 202 is rotatably connected to the output member 105. When overhauling the whole motor, the operator squeezes the fixing component 202 on the connection component 201, causing the fixing component 202 to move to one side. As a result, the fixing strip 2024 inside the fixing component 202 slides off the pressure plate 103, and the limit on the pressure plate 103 is released. Thus, the motor body 101 can be quickly disassembled. When squeezing the fixing component 202, the connection component 201 limits and assists the movement of the fixing component 202. When overhauling the motor, as long as the fixing component 202 is squeezed, the connection component 201 and the fixing component 202 are simultaneously released from the top of the motor body 101, so that the output end of the motor body 101 can be opened, and the output end of the motor body 101 can be overhauled. Targeted local repairs can be carried out according to the point where the motor problem occurs, avoiding the situation in traditional repairs where the entire motor has to be removed due to inability to accurately locate, saving a lot of time and effort. At the same time, the operation is smooth, and there is no need to use complex tools for cumbersome operations on numerous bolts;
[0035] The heat dissipation removal unit 300 includes a linkage component 301 provided at the other end of the motor body 101, and the linkage component 301 cooperates with the fixing component 202. After disassembling the connection component 201 and the fixing component 202 at the output end of the motor body 101, when it is found that further disassembly and repair are needed, since the operator squeezes the fixing component 202, the fixing component 202 releases the simultaneous limit on the pressure plate 103 and the linkage component 301. When the fixing component 202 and the connection component 201 are removed, the linkage component 301 is also released, allowing the linkage component 301 to slide out from the inside of the motor body 101, thus completing the disassembly and repair of the whole motor body 101. This enables maintenance personnel to quickly separate the connection component 201 from the motor body 101 and release the fixing of the fixing component 202. During installation, snap fixation can also be quickly completed without the need for repeated adjustment like when screwing bolts, and it allows for accurate positioning of the repair location.
[0036] During use, when overhauling the entire motor, the operator squeezes the fixing component 202 on the connecting component 201, causing the fixing component 202 to move to one side. As a result, the fixing bar 2024 inside the fixing component 202 slides off the pressure plate 103, and the limit on the pressure plate 103 is released. This allows for the quick disassembly of the motor body 101. When squeezing the fixing component 202, the connecting component 201 restricts and assists the movement of the fixing component 202. When overhauling the motor, as long as the fixing component 202 is squeezed, the connecting component 201 and the fixing component 202 are simultaneously disengaged from the top of the motor body 101, enabling the output end of the motor body 101 to be opened for overhaul. Targeted local repairs can be carried out based on the location of the motor problem, avoiding the situation in traditional repairs where the entire motor has to be removed due to the inability to accurately locate the problem, saving a large amount of time and effort. At the same time, the operation process does not require the use of complex tools for cumbersome operations on numerous bolts. After disassembling the connecting component 201 and the fixing component 202 at the output end of the motor body 101, if further disassembly and repair are required, since the operator squeezes the fixing component 202 to release the simultaneous limit on the pressure plate 103 and the linkage component 301, when removing the fixing component 202 and the connecting component 201, the linkage component 301 is also released from fixation, allowing the linkage component 301 to slide out from the inside of the motor body 101, thus completing the overall disassembly and repair of the motor body 101. This enables maintenance personnel to quickly separate the connecting component 201 from the motor body 101 and release the fixation of the fixing component 202. During installation, snap fixation can be quickly completed without the need for repeated adjustments like when tightening bolts, and it allows for accurate positioning of the repair location.
[0037] Example 2, refer to Figure 1 - Figure 8, which is the second embodiment of the present invention. The difference between this embodiment and the first embodiment is as follows: The connecting component 201 includes a fixed clamping plate 2011 disposed at one end of the motor body 101, a sealing groove 2013 disposed inside the fixed clamping plate 2011, and an L-shaped clamping block 2012 disposed inside the fixed clamping plate 2011. The L-shaped clamping block 2012 is slidably connected to the buckle 102. A moving groove 2014 is provided inside the fixed clamping plate 2011, and a sliding groove 2015 is provided inside the moving groove 2014. Both the moving groove 2014 and the sliding groove 2015 are slidably connected to the pressing plate 103. A spring groove 2016 is provided inside the fixed clamping plate 2011, and the spring groove 2016 is connected to the fixing component 202. When disassembling and repairing the motor body 101, the operator moves the moving ring 2021, causing the moving ring 2021 to drive the rotating shaft 2023 to move inside the spring groove 2016. During the movement of the moving ring 2021, the return spring 2022 is compressed. While the rotating shaft 2023 rotates and moves inside the moving groove 2014, the limiting moving shaft 2025 also rotates and moves inside the sliding groove 2015, causing the entire fixing strip 2024 to start adjusting its position. It starts to rotate and is dragged from the pressing plate 103 and the linkage component 301, thereby completing the limiting and fixing of the pressing plate 103 and the linkage component 301. And after the fixing strip 2024 detaches from the pressing plate 103 and the linkage component 301, the fixing component 202 and the connecting component 201 can be directly disassembled from the top of the motor body 101, so that the output end of the motor body 101 can be overhauled.
[0038] Compared with Embodiment 1, further, the fixing component 202 includes a moving ring 2021 slidably disposed inside the first fixing clamping plate 2011, a rotating shaft 2023 disposed at one end of the moving ring 2021, and a fixing clamping bar 2024 rotatably disposed on the rotating shaft 2023. The sliding groove 2015 of the fixing clamping bar 2024 is slidably connected to the moving groove 2014. A return spring 2022 is disposed on the outer diameter of the moving ring 2021, and the return spring 2022 is connected to the spring groove 2016. A limiting moving shaft 2025 is disposed on the outer diameter of the fixing clamping bar 2024, and the limiting moving shaft 2025 is slidably connected to the sliding groove 2015. A fixing block 2026 is disposed on the outer diameter of the first fixing clamping plate 2011, and the fixing block 2026 is connected to the motor body 101. After the operator finishes the maintenance of the motor body 101, align the sealing groove 2013 on the connecting component 201 with the motor body 101, so that the sealing groove 2013 can be engaged with the outer diameter of the motor body 101 to limit the installation of the motor body 101. And after the sealing groove 2013 is engaged with the motor body 101, release the moving ring 2021 in the stretched state. Under the reaction force of the return spring 2022, the moving ring 2021 moves to the right. And while the moving ring 2021 is moving, the fixing clamping bar 2024 rotates and adjusts its position again inside the moving groove 2014, and is engaged with the pressing plate 103 and the linkage component 301, completing the rapid installation of the motor body 101. And during the process of the fixing clamping bar 2024 moving and engaging, the limiting moving shaft 2025 also rotates and moves inside the sliding groove 2015 to assist the fixing clamping bar 2024 in fixing the pressing plate 103 and the linkage component 301.
[0039] During the use process, when disassembling and repairing the motor body 101, the operator moves the moving ring 2021, so that the moving ring 2021 drives the rotating shaft 2023 to move inside the spring groove 2016. And during the movement of the moving ring 2021, the return spring 2022 is squeezed. While the rotating shaft 2023 rotates and moves inside the moving groove 2014, the limiting moving shaft 2025 also rotates and moves inside the sliding groove 2015, so that the whole fixing clamping bar 2024 starts to adjust its position, starts to rotate and drag from the pressing plate 103 and the linkage component 301, thereby completing the limiting and fixing of the pressing plate 103 and the linkage component 301. And after the fixing clamping bar 2024 falls off from the pressing plate 103 and the linkage component 301, the fixing component 202 and the connecting component 201 can be directly disassembled from the top of the motor body 101, so that the output end of the motor body 101 can be repaired.
[0040] After the operator completes the maintenance of the motor body 101, align the sealing groove 2013 on the connecting component 201 with the motor body 101, so that the sealing groove 2013 can be engaged with the outer diameter of the motor body 101 to limit the installation of the motor body 101. And after the sealing groove 2013 is engaged with the motor body 101, release the moving ring 2021 in the stretched state. Under the reaction force of the return spring 2022, the moving ring 2021 moves to the right. And while the moving ring 2021 is moving, the fixed clamping bar 2024 rotates and adjusts its position again inside the moving groove 2014 and is engaged with the pressure plate 103 and the linkage component 301 to complete the rapid installation of the motor body 101. And during the process of the fixed clamping bar 2024 moving and engaging, the limit moving shaft 2025 also rotates and moves inside the sliding groove 2015 to assist the fixed clamping bar 2024 in fixing the pressure plate 103 and the linkage component 301. The maintenance personnel only need to perform simple pulling and squeezing actions to complete disassembly and installation, which greatly reduces the labor intensity, reduces the risks of fatigue and injury caused by long-term high-intensity labor, and can easily handle both partial minor repairs and overall major repairs, enhancing the flexibility and adaptability of the maintenance work. It also reduces the risk of damaging motor components due to improper disassembly, ensuring the integrity of the motor during disassembly and installation.
[0041] The remaining structures are the same as those in Embodiment 1.
[0042] Embodiment 3, refer to Figure 1 - Figure 10, which is the third embodiment of the present invention. The difference between this embodiment and the second embodiment is as follows: The linkage component 301 includes a heat dissipation member 3011 disposed at the other end of the motor body 101, a connection card shell 3012 disposed on the heat dissipation member 3011, a connection ring 3013 disposed on the connection card shell 3012, and a second fixed clamping plate 3014 disposed on the connection ring 3013. The second fixed clamping plate 3014 cooperates with the fixed clamping strip 2024. The other end of the second fixed clamping plate 3014 is slidably connected to the pressing plate 103, and both the second fixed clamping plate 3014 and the pressing plate 103 are snap-connected to the fixed clamping strip 2024. After the moving fixing component 202 completes the operation on the connection component 201, the top of the motor body 101 is started to be repaired. If the whole motor body 101 needs to be disassembled, since the operator moves the fixing component 202 to disassemble the connection component 201 from the output end of the motor body 101, during the release process of the fixing component 202, the fixing of the second fixed clamping plate 3014 on the linkage component 301 is also released. It only needs to move the heat dissipation member 3011 to one side, so that the heat dissipation member 3011 directly slides out from the inside of the motor body 101 with the connection card shell 3012, so that the fixing component 202 and the connection component 201 are disassembled from the output end of the motor body 101, and the heat dissipation member 3011 is disassembled from the tail end of the motor body 101, so that the front and rear ends of the motor body 101 are both disassembled, and thus the whole motor body 101 is disassembled, so that the whole motor body 101 can be repaired. And after the repair is completed, only the heat dissipation member 3011 and the connection card shell 3012 need to be reinserted into the inner wall of the motor body 101 to make the second fixed clamping plate 3014 fit with the pressing plate 103, and then by releasing the fixing component 202, the connection component 201 is snapped onto the motor body 101, and the fixing component 202 re-limits and fixes the second fixed clamping plate 3014 and the pressing plate 103, thus completing the quick installation, so that quick disassembly and quick installation can be carried out.
[0043] During use, after the moving and fixing component 202 completes the operation on the connecting component 201, the maintenance of the top of the motor body 101 begins. If the entire motor body 101 needs to be disassembled, since the operator moves the fixing component 202 to disassemble the connecting component 201 from the output end of the motor body 101, during the release of the fixing component 202, the fixing of the fixing card plate two 3014 on the linkage component 301 is also released. This allows the heat dissipation component 3011 to be moved to one side, enabling the heat dissipation component 3011 to directly slide out of the interior of the motor body 101 with the connecting card shell 3012. As a result, the fixing component 202 and the connecting component 201 are disassembled from the output end of the motor body 101, and the heat dissipation component 3011 is disassembled from the tail end of the motor body 101. This enables the disassembly of both the front and rear ends of the motor body 101, and thus the entire motor body 101 is disassembled, allowing for the overall repair of the motor body 101. After the repair is completed, only the heat dissipation component 3011 and the connecting card shell 3012 need to be reinserted into the inner wall of the motor body 101, causing the fixing card plate two 3014 to fit against the pressure plate 103. Then, by releasing the fixing component 202, the connecting component 201 is snapped onto the motor body 101, and the fixing component 202 re-limits and fixes the fixing card plate two 3014 and the pressure plate 103, thus completing the rapid installation. This enables rapid disassembly and rapid installation. By simplifying the disassembly and installation processes, maintenance personnel can quickly separate the connecting component 201 from the motor body 101 and release the fixing of the linkage component 301. During installation, the snap fixing can also be quickly completed without the need for repeated adjustments like when tightening bolts. Additionally, it allows for precise positioning of the repair location, enabling targeted local repair based on the problem point of the motor body 101, avoiding the situation in traditional repairs where the entire motor has to be removed due to inability to precisely locate the problem, saving a significant amount of time and effort.
[0044] The remaining structure is the same as that of Embodiment 2.
[0045] It should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention and are not restrictive. Although the present invention has been described in detail with reference to the preferred embodiments, those of ordinary skill in the art should understand that the technical solutions of the present invention can be modified or equivalently replaced without departing from the spirit and scope of the technical solutions of the present invention, and they should all be covered within the scope of the claims of the present invention.
Claims
1. A quick-disassembly motor that is easy to repair, characterized in that: include: A motor unit (100) comprises a motor body (101), a buckle (102) arranged on the motor body (101), a pressure plate (103) arranged inside the buckle (102), a motor component (104) arranged inside the motor body (101), and an output component (105) arranged on the motor component (104); A fixing and removal unit (200) comprises a connecting component (201) arranged at one end of the motor body (101), and a fixing component (202) arranged inside the connecting component (201), wherein the fixing component (202) is rotatably connected to the output member (105); The heat dissipation removal unit (300) comprises a linkage assembly (301) arranged at the other end of the motor body (101), and the linkage assembly (301) cooperates with the fixing assembly (202).
2. The quick-disassembly motor for easy maintenance according to claim 1 is characterized in that: The connecting assembly (201) comprises a fixed card plate (2011) arranged at one end of the motor body (101), a sealing groove (2013) arranged inside the fixed card plate (2011), and an L-shaped card block (2012) arranged inside the fixed card plate (2011), and the L-shaped card block (2012) is slidably connected to the buckle (102).
3. The quick-disassembly motor for easy maintenance according to claim 2 is characterized in that: A movable groove (2014) is provided inside the fixed clamping plate (2011), a sliding groove (2015) is provided inside the movable groove (2014), and both the movable groove (2014) and the sliding groove (2015) are slidably connected to the pressing plate (103).
4. The quick-disassembly motor for easy maintenance according to claim 3 is characterized in that: A spring groove (2016) is provided inside the first fixing clamp plate (2011), and the spring groove (2016) is connected to the fixing assembly (202).
5. The quick-disassembly motor for easy maintenance according to claim 4 is characterized in that: The fixing assembly (202) comprises a moving ring (2021) slidably arranged inside the fixing clamping plate (2011), a rotating shaft (2023) arranged at one end of the moving ring (2021), and a fixing clip (2024) rotatably arranged on the rotating shaft (2023), wherein the fixing clip (2024) is slidably connected to the sliding groove (2015) and the moving groove (2014).
6. The quick-disassembly motor for easy maintenance according to claim 5, characterized in that: The outer diameter of the movable ring (2021) is provided with a return spring (2022), and the return spring (2022) is connected to the spring groove (2016).
7. The quick-disassembly motor for easy maintenance according to claim 6, characterized in that: The outer diameter of the fixed clamping strip (2024) is provided with a limited movable shaft (2025), and the limited movable shaft (2025) is slidably connected to the sliding groove (2015).
8. The quick-disassembly motor for easy maintenance according to claim 7, characterized in that: A fixing block (2026) is provided on the outer diameter of the first fixing clamping plate (2011), and the fixing block (2026) is connected to the motor body (101).
9. The quick-disassembly motor for easy maintenance according to claim 8, characterized in that: The linkage assembly (301) comprises a heat sink (3011) arranged at the other end of the motor body (101), a connecting card shell (3012) arranged on the heat sink (3011), a connecting ring (3013) arranged on the connecting card shell (3012), and a second fixing card plate (3014) arranged on the connecting ring (3013), wherein the second fixing card plate (3014) cooperates with the fixing card strip (2024).
10. The quick-disassembly motor for easy maintenance according to claim 9, characterized in that: The other end of the second fixed clamping plate (3014) is slidably connected to the pressing plate (103), and the second fixed clamping plate (3014) and the pressing plate (103) are both snap-connected to the fixed clamping strip (2024).