Stator side slotted vertical motor stator structure

Through the vertical motor stator structure with slotted on the stator side, the bracket hollow design and temperature sensor monitoring are adopted, combined with the coordination of the limit rod and the compression ring, the problems of blocked stator core falling off and temperature monitoring are solved, and the stable fixation and temperature control of the stator block are achieved to ensure magnetic field uniformity.

CN120357642AActive Publication Date: 2025-07-22DONGGUAN ANTE HARDWARE PLASTIC PROD CO LTD
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Patent Information

Application Number
CN202510865041.5
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-06-26
Publication Date
2025-07-22
Estimated Expiration
2045-06-26

AI Technical Summary

Technical Problem

The blocked stator core is prone to fall off under strong vibrations and is difficult to achieve temperature monitoring and maintenance.

Method used

The vertical motor stator structure with slotted stator side is adopted, including a fixing mechanism, a limiting mechanism and an adjustment mechanism. The stator block temperature is monitored through the hollow design of the bracket and the temperature sensor. Combined with the cooperation of the limiting rod and the compression ring, the stable fixation and temperature control of the stator block are ensured.

Benefits of technology

The stability of the stator block is improved, and it avoids falling off during vibration, ensuring that the temperature of the stator block is used within a safe range, and maintaining the uniformity of the magnetic field.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention belongs to the technical field of motors, and particularly relates to a stator-side-slotted vertical motor stator structure, which comprises a fixing mechanism, a stator side slot and a stator side slot, and is characterized in that the fixing mechanism is internally and uniformly provided with working parts; the bottom of the limiting mechanism is installed on the top of the fixing mechanism, the bottom of the limiting mechanism is connected with the inner wall of the fixing mechanism, the limiting mechanism is used for being matched with the fixing mechanism to fix the working part from the inner side of the working part, and the outer wall of the adjusting mechanism is rotationally connected with the inner wall of the pressing ring. The fixing mechanism is arranged, the bottom of the limiting mechanism and the top of the stator block are pressed tightly, the limiting mechanism and the bracket fix the interior, the upper portion and the lower portion of the stator block together, due to the fact that the bracket is hollow, air in the bracket can flow, and then heat of the stator block can be rapidly dissipated through the bracket; and the temperature of the surface of the stator block is monitored through the temperature sensor, so that the stator block can be used in a safe range.
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Description

Technical Field

[0001] The present invention belongs to the technical field of motors, and specifically relates to a stator structure of a vertical motor with slots on the stator side. Background Art

[0002] A segmented stator usually consists of multiple independent modules, which may be combined during manufacturing or assembly to form a complete stator.

[0003] Patent No. CN201336587Y discloses a segmented stator core structure. The core of this segmented stator is composed of multiple segmented stator cores. At both ends of the yoke of each segmented stator core, there are connection convex parts and connection concave parts. The connection convex parts and connection concave parts of two adjacent segmented stator cores are mutually engaged and finally spliced into a circular stator core. After forming a circle, the segmented core is fixed by a hoop. The hoop fixation uses the hoop to fix the segmented stator core into a circular stator core through friction. The connection strength between the segmented stator cores is relatively low.

[0004] However, in the case of relatively strong vibration, it is easy for the segmented stator cores to fall off from each other, and it is difficult to monitor the temperature of the segmented stator, and maintenance of the stator cannot be achieved when the temperature is too high. Summary of the Invention

[0005] In view of the deficiencies of the prior art, the technical solution adopted by the present invention to solve its technical problems is: a stator structure of a vertical motor with slots on the stator side, including: A fixing mechanism, with working components uniformly arranged inside the fixing mechanism; A limiting mechanism, the bottom of the limiting mechanism is installed on the top of the fixing mechanism, and the bottom of the limiting mechanism is connected to the inner wall of the fixing mechanism. The limiting mechanism is used to cooperate with the fixing mechanism to fix from the inside of the working components; An adjusting mechanism, the outer wall of the adjusting mechanism is rotatably connected to the inner wall of the pressing ring. The adjusting mechanism includes: a connecting block, the outer wall of the connecting block is rotatably connected to the inner wall of the pressing ring; a pressing component, the outer wall of the pressing component is rotatably connected to the inner wall of the connecting block. The pressing component is used to assist the fixing mechanism to fix the outside of the working components; a limiting rod, the top of the limiting rod is slidably connected to the bottom of the connecting block. The limiting rod is used to engage with the outer wall of the working components. The limiting ring is stuck in the limiting groove on the limiting rod, so that the limiting ring and the limiting rod together fix the outside of the stator block. By adjusting the position of the limiting rod and the cooperation of the pressing component, stator blocks of different lengths can be fixed inside the bracket, and still keep the stator block limited by forces in the up-down and inside-out directions, further improving the stability of the stator block during use.

[0006] Further, the fixing mechanism includes: Bracket, with evenly distributed card slots on the surface of the bracket, and the working component is inserted into the bracket through the card slots; temperature sensor, the temperature sensor is in contact with the surface of the working component, and the temperature sensor is installed on the inner wall of the bracket; the fixing mechanism further includes: connecting ring, the outer wall of the connecting ring is slidably connected to the inner wall of the bracket, the inner wall of the connecting ring is evenly provided with screw rods, the bottom of the screw rods is threadedly connected with nuts, the top of the screw rods is connected to the bottom of the limiting mechanism, so that the nut drives the connecting ring to move upward and contact the bottom of the card slot of the bracket to fix the connecting ring. During the process of the nut moving along the screw rod, the bottom of the limiting mechanism and the top of the stator block are pressed against each other, so that the limiting mechanism and the bracket fix the inside of the stator block up and down together to keep the position of the stator block and prevent the stator block from shaking and shifting during use, thereby affecting the use of the motor. The temperature of the surface of the stator block is monitored by the temperature sensor to ensure that the stator block is used within a safe range.

[0007] Further, the working component includes: Stator block, the stator block is inserted into the card slot of the bracket, and a winding slot is provided on the outer wall of the stator block; first vertical slot, the first vertical slot is opened on the outside of the stator block, and the first vertical slot is used for the pressing component to catch; second vertical slot, the second vertical slot is opened on the inside of the stator block, and the second vertical slot is used for the limiting mechanism to fix the stator block from the inside.

[0008] Further, the limiting mechanism includes: Pressing ring, the pressing ring is installed on the top of the screw rod, the pressing ring is used to press the stator block from above, and evenly distributed installation slots are opened on the top of the pressing ring, and the surface of the bottom of the pressing ring in contact with the stator block has a large frictional force; Fixed frame, the top of the fixed frame is connected to the inside of the pressing ring, the bottom of the fixed frame is connected to the inside of the bracket, and the outer surface of the fixed frame is stuck in the second vertical slot; the adjusting mechanism further includes: limiting slot, the limiting slot is opened on the outside of the limiting rod, and a limiting ring is arranged in the limiting slot; rotating shaft, one end of the rotating shaft is rotatably connected to the inner wall of the connecting block, the other end of the rotating shaft is connected to the pressing component, a sliding slot is opened inside the connecting block, a sliding block is slidably connected inside the sliding slot, the bottom of the sliding block is connected to the top of the limiting rod, and the pressing component is inserted into the inside of the sliding block, so that the stator block is more firmly stuck in the card slot. After the stator block is inserted into the card slot, the second vertical slot of the stator block contacts the fixed frame and the fixed frame is stuck in the second vertical slot to keep the stator block from moving back and forth in the bracket, which can ensure the adjustable position of the stator block while also ensuring its stability in all directions, and prevent misalignment between the separated stator blocks due to frictional vibration during use, affecting the uniformity of the magnetic field.

[0009] Further, the pressing assembly includes: A rotating rod, the outer wall of the rotating rod is rotatably connected to the inner wall of the connecting block, and the end of the rotating rod is clamped to the bottom of the connecting block; the pressing assembly further includes: a snap ring, the snap rings are uniformly arranged on the inner wall of the rotating rod, an elastic rod is installed on the outer wall of the rotating shaft, the outer wall of the elastic rod is wrapped by the inner wall of the snap ring, the end of the elastic rod away from the rotating shaft is inserted into the slider, stretching the elastic rod, and making the hook at its end insert into the slider and the connecting block to fix the position of the limiting rod. Then, the rotating rod is buckled, so that the snap ring at the bottom of the rotating rod presses the elastic rod, keeping the elastic rod in a straightened state, reducing the relative friction between the elastic rod and the connecting block, maintaining the long-term use of the elastic rod, and being able to adjust the relative positions of stator blocks of different lengths during installation, maintaining the fixation of the outside of the stator block, and further strengthening the stability of the stator block.

[0010] The beneficial effects of the present invention are as follows: By setting a fixing mechanism, the bottom of the limiting mechanism is pressed against the top of the stator block, so that the limiting mechanism and the bracket fix the inside of the stator block up and down together, keeping the position of the stator block, and preventing the stator block from shaking and shifting during use, thereby affecting the use of the motor. Due to the hollow setting of the bracket, the air in the bracket can flow, so that the heat of the stator block can quickly dissipate through the bracket. Then, the temperature sensor monitors the temperature on the surface of the stator block to ensure that the stator block is used within a safe range.

[0011] By setting an adjusting mechanism, the limiting ring is stuck in the limiting groove on the limiting rod, so that the limiting ring and the limiting rod fix the outside of the stator block together. By adjusting the position of the limiting rod in cooperation with the pressing assembly, stator blocks of different lengths can be fixed inside the bracket, and still keep the stator block limited by forces in the up-down and inside-out directions, further improving the stability of the stator block during use.

[0012] By setting a limiting mechanism, the pressing ring is closely attached to the top of the stator block, and the connecting ring is closely attached to the bottom of the bracket, so that the stator block is more firmly stuck in the card slot. After the stator block is inserted into the card slot, the second vertical slot of the stator block contacts the fixed frame, and the fixed frame is stuck in the second vertical slot, keeping the stator block from moving back and forth in the bracket. It can ensure the adjustable position of the stator block while ensuring its stability in all directions, and prevent misalignment between the separated stator blocks due to frictional vibration during use, affecting the uniformity of the magnetic field.

[0013] By providing a pressing assembly, the position of the limiting rod is fixed. Subsequently, the rotating rod is buckled, so that the buckle ring at the bottom of the rotating rod presses the elastic rod, keeping the elastic rod in a straightened state, reducing the relative friction between the elastic rod and the connecting block, maintaining the long-term use of the elastic rod, and being able to adjust the relative positions of stator blocks of different lengths during installation, maintaining the fixation of the outside of the stator blocks, and further strengthening the stability of the stator blocks. BRIEF DESCRIPTION OF THE DRAWINGS

[0014] Figure 1 is a schematic structural diagram of the present invention; Figure 2 is a bottom view of the present invention; Figure 3 is a schematic structural diagram of the working components of the present invention; Figure 4 is a schematic structural diagram of the fixing mechanism of the present invention; Figure 5 is a sectional view of the fixing mechanism of the present invention; Figure 6 is a schematic structural diagram of the limiting mechanism of the present invention; Figure 7 is a schematic structural diagram of the adjusting mechanism of the present invention; Figure 8 is a partial schematic structural diagram of the adjusting mechanism of the present invention; Figure 9 is a schematic structural diagram of the pressing assembly of the present invention.

[0015] In the figures: 1, fixing mechanism; 101, bracket; 102, card slot; 103, temperature sensor; 104, screw; 105, connecting ring; 106, nut; 2, working components; 201, stator block; 202, first vertical slot; 203, winding slot; 204, second vertical slot; 3, limiting mechanism; 301, pressing ring; 302, installation slot; 303, fixing frame; 4, adjusting mechanism; 401, connecting block; 402, pressing assembly; 4021, rotating rod; 4022, elastic rod; 4023, buckle ring; 403, limiting rod; 404, limiting slot; 405, rotating shaft; 406, limiting ring; 407, slider; 408, sliding slot. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0016] The present invention will be further described in detail below in conjunction with the drawings and specific embodiments. The embodiments of the present invention are given for purposes of illustration and description, and are not intended to be exhaustive or to limit the present invention to the disclosed form. Many modifications and variations will be obvious to those of ordinary skill in the art. The embodiments are selected and described in order to better illustrate the principles of the present invention and its practical applications, and to enable those of ordinary skill in the art to understand the present invention and thus design various embodiments with various modifications suitable for specific purposes.

[0017] Example 1. Please refer to Figures 1-7 , the present invention provides a technical solution: the stator structure of a vertical motor with slots on the stator side is described as follows.

[0018] It includes: a fixing mechanism 1, and working components 2 are uniformly arranged inside the fixing mechanism 1; a limiting mechanism 3, the bottom of the limiting mechanism 3 is installed on the top of the fixing mechanism 1, the bottom of the limiting mechanism 3 is connected to the inner wall of the fixing mechanism 1, and the limiting mechanism 3 is used to cooperate with the fixing mechanism 1 to fix from the inner side of the working component 2; an adjusting mechanism 4, the outer wall of the adjusting mechanism 4 is rotatably connected to the inner wall of the pressing ring 301.

[0019] During installation, the staff inserts the stator block 201 into the fixing mechanism 1, so that the stator block 201 is clamped to the outer wall of the limiting mechanism 3. Then, the fixing mechanism 1 is tightened, so that the fixing mechanism 1 and the limiting mechanism 3 clamp the upper and lower ends of the stator block 201. The adjusting mechanism 4 remains in contact with the outer side of the stator block 201. After installation, the stator block 201 remains coaxial on the fixing mechanism 1, maintaining the stability of the stator block 201 during use.

[0020] The fixing mechanism 1 includes: a bracket 101, the bracket 101 is made of non-magnetic material and is hollow inside, which reduces the weight of the equipment and provides space for installing the temperature sensor 103 at the same time. In the present invention, all materials in contact with the stator block 201 are non-magnetic materials. The surface of the bracket 101 is uniformly provided with card slots 102, and the shape of the inner wall of the card slots 102 conforms to the outer wall of the stator block 201. The working component 2 is inserted into the bracket 101 through the card slots 102; a temperature sensor 103, the temperature sensor 103 is in contact with the surface of the working component 2, and the temperature sensor 103 is installed on the inner wall of the bracket 101. The fixing mechanism 1 further includes: a connecting ring 105, the outer wall of the connecting ring 105 is slidably connected to the inner wall of the bracket 101, the inner wall of the connecting ring 105 is uniformly provided with screw rods 104, the bottom of the screw rods 104 is threadedly connected with nuts 106, and the top of the screw rods 104 is connected to the bottom of the limiting mechanism 3.

[0021] During installation, first insert the stator block 201 into the slot 102 of the bracket 101 so that each stator block 201 contacts the temperature sensor 103. Then tighten the nut 106, which drives the connecting ring 105 to move upward and contact the bottom of the slot 102 of the bracket 101 to fix the connecting ring 105. During the process of the nut 106 moving along the screw 104, the bottom of the limiting mechanism 3 is pressed against the top of the stator block 201, so that the limiting mechanism 3 and the bracket 101 fix the inside of the stator block 201 up and down, maintaining the position of the stator block 201 and preventing the stator block 201 from shaking and shifting during use, which may affect the operation of the motor. Due to the hollow design of the bracket 101, the air inside the bracket 101 can flow, enabling the heat of the stator block 201 to quickly dissipate through the bracket 101. Then, the temperature sensor 103 monitors the temperature on the surface of the stator block 201 to ensure that the stator block 201 is used within a safe range.

[0022] The working component 2 includes: a stator block 201, which is inserted into the slot 102 of the bracket 101, and a winding groove 203 is formed on the outer wall of the stator block 201; a first vertical groove 202, which is formed on the outside of the stator block 201 and is used for the clamping component 402 to be stuck; a second vertical groove 204, which is formed on the inside of the stator block 201 and is used for the limiting mechanism 3 to fix the stator block 201 from the inside.

[0023] The limiting mechanism 3 includes: a pressing ring 301, which is installed on the top of the screw 104 and is used to press the stator block 201 from above. The surface of the bottom of the pressing ring 301 in contact with the stator block 201 has a large frictional force, and mounting grooves 302 are evenly formed on the top of the pressing ring 301; a fixing frame 303, the top of which is connected to the inside of the pressing ring 301, the bottom of which is connected to the inside of the bracket 101, and the outer surface of which is stuck in the second vertical groove 204. The fixing frame 303 is detachable and is installed after winding to keep the stator block 201 clamped in all directions.

[0024] During the process of tightening the nut 106, the connecting ring 105 and the pressing ring 301 gradually approach each other driven by the screw rod 104, causing the pressing ring 301 to closely adhere to the top of the stator block 201 and the connecting ring 105 to closely adhere to the bottom of the bracket 101, making the stator block 201 more firmly stuck in the card slot 102. After the stator block 201 is inserted into the card slot 102, the second vertical slot 204 of the stator block 201 contacts the fixed frame 303 and the fixed frame 303 is stuck in the second vertical slot 204, keeping the stator block 201 from moving back and forth within the bracket 101. It can ensure the adjustable position of the stator block 201 while also ensuring its stability in all directions, avoiding misalignment between the separated stator blocks 201 due to frictional vibration during use, which affects the uniformity of the magnetic field.

[0025] The adjustment mechanism 4 includes: a connecting block 401, the outer wall of the connecting block 401 is rotatably connected to the inner wall of the pressing ring 301; a pressing component 402, the outer wall of the pressing component 402 is rotatably connected to the inner wall of the connecting block 401, and the pressing component 402 is used to assist the fixing mechanism 1 in fixing the outside of the working component 2; a limiting rod 403, the top of the limiting rod 403 is slidably connected to the bottom of the connecting block 401, and the limiting rod 403 is used to engage with the outer wall of the working component 2; the adjustment mechanism 4 further includes: a limiting groove 404, the position of the limiting groove 404 is opened in the middle of the stator block 201, the limiting groove 404 is opened on the outside of the limiting rod 403, and a limiting ring 406 is arranged in the limiting groove 404. The limiting ring 406 is a strap with relatively low elasticity. After the stator block 201 is installed, the limiting ring 406 is stuck in the limiting groove 404 to make the stator block 201 more stable; a rotating shaft 405, one end of the rotating shaft 405 is rotatably connected to the inner wall of the connecting block 401, the other end of the rotating shaft 405 is connected to the pressing component 402, a sliding groove 408 is opened inside the connecting block 401, a sliding block 407 is slidably connected inside the sliding groove 408, and holes adapted to the pressing component 402 are opened on both the sliding block 407 and the connecting block 401, so that the pressing component 402 can fix the sliding block 407, thereby fixing the limiting rod 403. The bottom of the sliding block 407 is connected to the top of the limiting rod 403, and the pressing component 402 is inserted inside the sliding block 407.

[0026] After installing the stator block 201, manually drive the limit rod 403 to slide within the connection block 401. After the limit rod 403 is stuck in the first vertical groove 202, fix the pressing component 402. Subsequently, snap the limit ring 406 into the limit groove 404 on the limit rod 403. Together with the limit rod 403, the outer side of the stator block 201 is fixed. By adjusting the position of the limit rod 403 in cooperation with the pressing component 402, stator blocks 201 of different lengths can be fixed inside the bracket 101, and still maintain the force that limits the stator block 201 both vertically and horizontally, further improving the stability of the stator block 201 during use.

[0027] Example 2, please refer to Figures 1-9 , the present invention provides a technical solution: on the basis of Example 1, the pressing component 402 includes: A rotating rod 4021, the outer wall of the rotating rod 4021 is rotatably connected to the inner wall of the connection block 401. The bottom of the rotating rod 4021 is an arc surface, and the end of the rotating rod 4021 is clamped with the bottom of the connection block 401; the pressing component 402 further includes: a snap ring 4023, the snap ring 4023 is evenly arranged on the inner wall of the rotating rod 4021. An elastic rod 4022 is installed on the outer wall of the rotating shaft 405. A groove with the same shape as the elastic rod 4022 is provided at the top of the connection block 401. The outer wall of the elastic rod 4022 is wrapped by the inner wall of the snap ring 4023. The end of the elastic rod 4022 away from the rotating shaft 405 is inserted into the inside of the slider 407. The material of the elastic rod 4022 has elasticity and wear resistance. A hook is provided at the end of the elastic rod 4022, and the hook is inserted into the slider 407 and the connection block 401, so that the slider 407 and the connection block 401 are fixed to each other.

[0028] After installing the stator block 201, the limit rod 403 is stuck in the first vertical groove 202. At this time, the position of the slider 407 is the same as that of the limit rod 403. At this time, the rotating rod 4021 is opened, the elastic rod 4022 is stretched, and the hook at its end is inserted into the slider 407 and the connection block 401 to fix the position of the limit rod 403. Subsequently, the rotating rod 4021 is snapped shut, so that the snap ring 4023 at the bottom of the rotating rod 4021 presses the elastic rod 4022, keeping the elastic rod 4022 in a straightened state, reducing the relative friction between the elastic rod 4022 and the connection block 401, maintaining the long-term use of the elastic rod 4022, and being able to adjust the relative position of stator blocks 201 of different lengths during installation, maintaining the fixation of the outside of the stator block 201, and further strengthening the stability of the stator block 201.

[0029] The specific working process is as follows: During installation, first insert the stator block 201 into the slot 102 so that each stator block 201 contacts the temperature sensor 103. Then tighten the nut 106, which drives the connecting ring 105 to move upward and contact the bottom of the slot 102 of the bracket 101 to fix the connecting ring 105. During the process of the nut 106 moving along the screw rod 104, the bottom of the limiting mechanism 3 is pressed against the top of the stator block 201, so that the limiting mechanism 3 and the bracket 101 fix the inside of the stator block 201 up and down. Manually drive the limiting rod 403 to slide in the connecting block 401. After the limiting rod 403 is stuck in the first vertical slot 202, fix the pressing component 402. Then, snap the limiting ring 406 into the limiting slot 404 on the limiting rod 403, so that the limiting ring 406 and the limiting rod 403 fix the outside of the stator block 201 together. By adjusting the position of the limiting rod 403 and the cooperation of the pressing component 402, stator blocks 201 of different lengths can be fixed inside the bracket 101, and still keep the stator block 201 limited in the up and down and inside and outside directions. During the process of tightening the nut 106, the connecting ring 105 and the pressing ring 301 gradually approach each other driven by the screw rod 104, so that the pressing ring 301 is in close contact with the top of the stator block 201, and the connecting ring 105 is in close contact with the bottom of the bracket 101, making the stator block 201 more firmly stuck in the slot 102. After the stator block 201 is inserted into the slot 102, the second vertical slot 204 of the stator block 201 contacts the fixing frame 303 and the fixing frame 303 is stuck in the second vertical slot 204 to keep the stator block 201 from moving back and forth in the bracket 101. It can ensure the adjustable position of the stator block 201 while also ensuring its stability in all directions. After the installation is completed, the stator block 201 is coaxial on the fixing mechanism 1 to maintain the stability of the stator block 201 during use.

[0030] Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art and related fields without creative efforts shall fall within the protection scope of the present invention. The structures, devices, and operation methods not specifically described and explained in the present invention shall be implemented according to the conventional means in the art without special instructions and limitations.

Claims

1. The stator structure of a vertical motor with slots on the stator side, characterized in that: Including: A fixing mechanism (1), inside which working components (2) are evenly arranged; A limiting mechanism (3), the bottom of which is installed on the top of the fixing mechanism (1), the bottom of the limiting mechanism (3) is connected to the inner wall of the fixing mechanism (1), and the limiting mechanism (3) is used to cooperate with the fixing mechanism (1) to fix from the inside of the working component (2); An adjusting mechanism (4), the outer wall of which is rotatably connected to the inner wall of a pressing ring (301), and the adjusting mechanism (4) includes: A connecting block (401), the outer wall of which is rotatably connected to the inner wall of the pressing ring (301); A pressing component (402), the outer wall of which is rotatably connected to the inner wall of the connecting block (401), and the pressing component (402) is used to assist the fixing mechanism (1) to fix the outside of the working component (2); A limiting rod (403), the top of which is slidably connected to the bottom of the connecting block (401), and the limiting rod (403) is used to be clamped with the outer wall of the working component (2).

2. The stator structure of the vertical motor with stator side slots according to claim 1, characterized in that: The fixing mechanism (1) includes: A bracket (101), on the surface of which clamping grooves (102) are evenly opened, and the working component (2) is inserted into the bracket (101) through the clamping grooves (102); A temperature sensor (103), which is in contact with the surface of the working component (2) and is installed on the inner wall of the bracket (101).

3. The vertical motor stator structure with stator side slots according to claim 2, wherein: The fixing mechanism (1) further includes: A connecting ring (105), the outer wall of which is slidably connected to the inner wall of the bracket (101), on the inner wall of the connecting ring (105), screws (104) are evenly arranged, the bottom of the screw (104) is threadedly connected with a nut (106), and the top of the screw (104) is connected to the bottom of the limiting mechanism (3).

4. The stator structure of the vertical motor with slots on the stator side according to claim 3, characterized in that: The working component (2) includes: A stator block (201), which is inserted into the clamping groove (102) of the bracket (101), and a winding groove (203) is opened on the outer wall of the stator block (201); A first vertical groove (202), which is opened on the outside of the stator block (201) and is used for the pressing component (402) to be stuck; A second vertical groove (204), which is opened on the inside of the stator block (201) and is used for the limiting mechanism (3) to fix the stator block (201) from the inside.

5. The stator structure of the vertical motor with stator side slots according to claim 4, characterized in that: The limiting mechanism (3) includes: A pressing ring (301), which is installed on the top of the screw (104) and is used to press the stator block (201) from above, and mounting grooves (302) are evenly opened on the top of the pressing ring (301); A fixed frame (303), the top of the fixed frame (303) is connected to the inner side of the pressing ring (301), the bottom of the fixed frame (303) is connected to the inner side of the bracket (101), and the outer surface of the fixed frame (303) is stuck in the second vertical groove (204).

6. The stator structure of a vertical motor with stator side slots according to claim 5, characterized in that: The adjusting mechanism (4) further includes: A limiting groove (404), the limiting groove (404) is opened on the outer side of the limiting rod (403), and a limiting ring (406) is arranged in the limiting groove (404); A rotating shaft (405), one end of the rotating shaft (405) is rotatably connected to the inner wall of the connecting block (401), the other end of the rotating shaft (405) is connected to the pressing component (402), a sliding groove (408) is opened inside the connecting block (401), a slider (407) is slidably connected inside the sliding groove (408), the bottom of the slider (407) is connected to the top of the limiting rod (403), and the pressing component (402) is inserted into the inside of the slider (407).

7. The stator structure of the vertical motor with stator side slotted according to claim 6, characterized in that: The pressing component (402) includes: A rotating rod (4021), the outer wall of the rotating rod (4021) is rotatably connected to the inner wall of the connecting block (401), and the end of the rotating rod (4021) is clamped to the bottom of the connecting block (401).

8. The stator structure of the vertical motor with stator side slotting according to claim 7, characterized in that: The pressing component (402) further includes: A snap ring (4023), the snap rings (4023) are uniformly arranged on the inner wall of the rotating rod (4021), an elastic rod (4022) is installed on the outer wall of the rotating shaft (405), the outer wall of the elastic rod (4022) is wrapped by the inner wall of the snap ring (4023), and the end of the elastic rod (4022) away from the rotating shaft (405) is inserted into the inside of the slider (407).

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