Winding mechanism and submersible pump motor stator winding processing equipment

By designing the support part, winding part and stabilizer in the winding mechanism, the shaking problem of the stator during high-speed rotation is solved, and the copper wire is uniformly wound and stable winding on the stator is achieved, and the processing quality of the stator winding of the submersible pump motor is improved.

CN120150451BActive Publication Date: 2025-08-26ZHEJIANG JIASONG TECH CO LTD
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Patent Information

Application Number
CN202510630215.X
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-05-16
Publication Date
2025-08-26
Estimated Expiration
2045-05-16

AI Technical Summary

Technical Problem

The existing submersible pump motor stator winding processing equipment vibrates when rotating at high speed, causing the stator to shake, affecting the winding accuracy and product quality.

Method used

A winding mechanism is designed, including a support part, a winding part, a docking part and a stabilizer. Through the coordination of the adjusting part and the fixing part, the stator remains stable during the winding process, and the friction is reduced by using structures such as synchronous rotation shaft and extrusion spring to achieve uniform winding of the copper wire.

Benefits of technology

Effectively prevent the stator from shaking, ensure that the copper wire is evenly wound on the stator, improve the winding quality and stability, and avoid winding disorders.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention relates to the technical field of submersible pump motor stator winding processing equipment, and discloses a winding mechanism and submersible pump motor stator winding processing equipment, comprising an equipment box, a plurality of pulleys fixedly connected to the bottom of the equipment box, a winding box fixedly connected directly above the equipment box, and a fixed rod fixedly connected to one end of the winding box away from the equipment box. The present invention provides a synchronous rotating shaft on the winding rod. When the winding shaft rotates and drives the synchronous rotating shaft on the winding rod to rotate around the winding shaft, a synchronous toothed belt 1 on the synchronous rotating shaft engages with a fixed gear, and the synchronous toothed belt 1 drives the synchronous rotating shaft to rotate. The rotation of the synchronous rotating shaft drives the synchronous toothed belt 2 to rotate. Therefore, the synchronous gear at one end of the synchronous toothed belt 2 remains relatively stationary with the fixed gear, thereby ensuring that the fixed head is not affected by the rotation of the winding shaft. Such an arrangement is conducive to ensuring that the stator body at one end of the fixed head remains stable.
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Description

Technical Field

[0001] The invention relates to the technical field of submersible pump motor stator winding processing equipment, in particular to a winding mechanism and submersible pump motor stator winding processing equipment. Background Art

[0002] The stator is a key component in a motor. The rotation of the rotor is achieved through electromagnetic induction transmission between the stator and rotor. Copper wire for electromagnetic induction needs to be wound around the stator. Therefore, whether the copper wire is wound around the stator in accordance with the requirements directly affects the stability of the motor.

[0003] The existing submersible pump motor stator winding processing equipment can basically meet people's usage requirements. However, the existing winding drum vibrates while rotating at high speed, causing the stator to shake during the winding process. Since the stator winding precision requirements are extremely strict, a slight shake will cause the winding to be disordered, reducing the product quality of the stator winding. Summary of the Invention

[0004] The object of the present invention is to provide a winding mechanism and a submersible pump motor stator winding processing device to solve the problems raised in the above background technology.

[0005] To solve the above technical problems, the present invention is achieved through the following technical solutions:

[0006] The present invention relates to a winding mechanism and a submersible pump motor stator winding processing device, comprising an equipment box, a plurality of pulleys fixedly connected to the bottom of the equipment box, a winding box fixedly connected directly above the equipment box, a fixing rod fixedly connected to one end of the winding box away from the equipment box, and a wire clamp fixedly connected to the other end of the fixing rod away from the winding box.

[0007] A submersible pump motor stator winding processing device with a winding mechanism includes a support portion, which is mounted on an equipment box and is used to support the installation and fixation of the stator to be wound. The support portion is also used to adjust the angle of the stator to be wound, and further includes:

[0008] A winding part, which is installed inside the winding box and is used for installing copper wire; and

[0009] The docking part is installed at the end of the winding part away from the interior of the winding box. The docking part cooperates with the support part, so that the stator to be wound on the docking part and the support part is stably installed, and then the copper wire is evenly wound on the stator by cooperating with the rotation of the winding part;

[0010] The winding portion is also used to keep the docking portion stationary, thereby ensuring stable winding of the stator between the docking portion and the supporting portion.

[0011] Furthermore, the support portion includes:

[0012] An adjusting member is installed inside the equipment box and is used to provide power for the stator on the supporting part to move toward the docking part;

[0013] A fixing part is installed on the top of the adjusting part and is used to support and fix the stator;

[0014] The wire member is installed just above the adjusting member. The wire member cooperates with the winding action of the winding part so that the copper wire on the winding part is evenly wound inside the stator.

[0015] Furthermore, the adjusting part includes several fixed plates fixedly connected to the inner wall of the equipment box, one side of the fixed plate away from the side wall of the equipment box is fixedly connected to motor 1, the output end of motor 1 is fixedly connected to a screw rod, the middle part of the screw rod is rotatably connected to a moving block, the bottom of the moving block is fixedly connected to a connecting plate, and the bottom of the connecting plate is fixedly connected to motor 2.

[0016] Furthermore, the fixed member includes a plurality of rotating shafts rotatably connected to the moving block, the bottom of the rotating shaft is transmission-connected to a transmission belt 1, the end of the transmission belt 1 away from the rotating shaft is transmission-connected to the output end of the motor 2, the end of the rotating shaft away from the transmission belt 1 is mounted with a stator body, the middle of the rotating shaft is rotationally connected to a moving rod, one end of the moving rod is fixedly connected to a push rod, and the end of the push rod away from the connecting rod is fixedly connected to a fixed base;

[0017] Among them, the wire member includes several fixed columns fixedly connected to the top of the moving rod, one end of the fixed column is fixedly connected to the side guide plate, and the two ends of the side guide plate are set to be inclined. The inclined parts of the two ends of the side guide plate are used to guide the copper wire.

[0018] Furthermore, the winding portion includes:

[0019] The winding part is installed inside the winding box and is used to provide rotational force for winding the copper wire;

[0020] The stabilizer is installed at the end of the winding member away from the inside of the winding box. The stabilizer is used to ensure that the winding member rotates at high speed while ensuring that the stator is fixedly installed.

[0021] Furthermore, the winding component includes a motor three fixedly connected to the inner wall of the winding box, the output end of the motor three is transmission-connected to the winding belt, a plurality of winding shafts are rotationally passed through the side wall of the winding box, a wire outlet hole is opened at the axis of the winding shaft, the wire outlet hole is used to pass the copper wire, a transmission belt two is transmission-connected between the plurality of winding shafts, the transmission belt two realizes the synchronous rotation of the plurality of winding shafts, the end of the winding shaft away from the transmission belt two is fixedly connected to the winding rod, the internal rotation of the end of the winding shaft away from the winding rod is connected to the wire pulley, and one end of the winding rod is fixedly connected to the wire outlet rack.

[0022] Furthermore, the stabilizing member includes a fixed head rotatably connected to the end of the winding shaft away from the transmission belt 2, a synchronous rotating shaft is rotatably passed through the end of the winding rod away from the wire outlet frame, a plurality of fixed gears are fixedly connected to the side wall of the winding box, one end of the synchronous rotating shaft is engaged with a synchronous toothed belt, and the end of the synchronous toothed belt away from the synchronous rotating shaft is engaged with the fixed gear, the side wall of the fixed head close to the winding shaft is fixedly connected to the synchronous gear, and a synchronous toothed belt 2 is engaged on the synchronous gear, and the end of the synchronous toothed belt 2 away from the synchronous gear is engaged with one end of the synchronous rotating shaft.

[0023] Furthermore, the docking portion includes:

[0024] An auxiliary part is installed at the end of the fixed head away from the winding shaft, and is used to guide the copper wire;

[0025] The docking piece is installed inside the fixed head and is used to cooperate with the fixing piece to fix the stator body.

[0026] Furthermore, the auxiliary component includes an auxiliary base fixedly connected to an end of the fixed head away from the winding shaft, and both ends of the auxiliary base are fixedly connected to the wire clamp;

[0027] The docking member includes a sliding rod slidably connected to the interior of the fixed head, an end of the sliding rod away from the fixed head is fixedly connected to a support plate, and an extrusion spring is provided inside the fixed head.

[0028] The present invention has the following beneficial effects:

[0029] (1) The present invention provides a stabilizing member. Since the fixed head is rotatably connected to one end of the winding shaft, if there is no stabilizing and synchronizing effect of the stabilizing member, the friction between the winding shaft and the fixed head will drive the fixed head to rotate. In order to ensure that the fixed head and the stator body remain relatively stable, a synchronous rotating shaft is provided on the winding rod. When the winding shaft rotates and drives the synchronous rotating shaft on the winding rod to rotate around the winding shaft, the synchronous toothed belt 1 on the synchronous rotating shaft engages with the fixed gear. The synchronous toothed belt 1 drives the synchronous rotating shaft to rotate. The rotation of the synchronous rotating shaft drives the synchronous toothed belt 2 to rotate. Therefore, the synchronous gear at one end of the synchronous toothed belt 2 and the fixed gear remain relatively stationary, thereby ensuring that the fixed head is not affected by the rotation of the winding shaft. Such a setting is conducive to ensuring that the stator body at one end of the fixed head remains stable.

[0030] (2) In the present invention, the motor drives the screw to rotate, and the rotation of the screw drives the moving block to move. When the winding member is working, the winding member evenly winds the copper wire on the stator body by cooperating with the moving adjustment of the adjusting member. When the adjusting member drives the stator body to move toward the end away from the motor, the moving block drives the stator body on the rotating shaft away from the docking portion. At this time, since one end of the support plate is squeezed by the extrusion spring, when the stator body is away from the support plate, the extrusion spring pushes the support plate at one end of the sliding rod to always be close to the side wall of the stator body, thereby ensuring that the copper wire is continuously wound inside the stator body under the guidance of the wire clamp, ensuring that the device can continuously and stably wind the wire.

[0031] (3) In the present invention, when winding, the motor drives the moving block on the screw to move toward one end of the start-up motor. At this time, the moving block drives the stator body on the rotating shaft to move toward the end close to the docking portion. The end of the stator body close to the docking portion is squeezed by the back plate. The back plate is squeezed inward along the rotating shaft to squeeze the spring. At this time, the side wall of the stator body is tightly fitted with the side wall of the back plate. This arrangement is conducive to ensuring that the stator body is stably clamped between the back plate and the fixed base, ensuring that the stator body does not shake during winding, resulting in winding disorder.

[0032] (4) The present invention sets a winding part, passes the copper wire through the outlet hole inside the winding shaft, and then passes it out through the wire pulley. At this time, the copper wire is passed through the outlet frame and fixed by the wire clamp. The output end of the motor three rotates to drive the winding shaft at one end of the winding belt to rotate. The rotation of the winding shaft drives the transmission belt two to rotate. The rotation of the transmission belt two drives several winding shafts to rotate synchronously. The rotation of the winding shaft drives the outlet frame at one end of the winding rod to rotate. The rotation of the outlet frame drives the copper wire to be wound on the stator body.

[0033] Of course, any product implementing the present invention does not necessarily need to achieve all of the advantages described above at the same time. BRIEF DESCRIPTION OF THE DRAWINGS

[0034] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the following briefly introduces the drawings required for describing the embodiments. Obviously, the drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without creative work.

[0035] Figure 1 It is a schematic diagram of the overall structure of the present invention;

[0036] Figure 2 This is a schematic diagram of the support structure of the present invention;

[0037] Figure 3 This is a schematic diagram of the internal structure of the equipment box of the present invention;

[0038] Figure 4 This is a schematic diagram of the structure of the stabilizer of the present invention;

[0039] Figure 5 For the present invention Figure 4 A magnified view of middle A;

[0040] Figure 6 This is a structural diagram of the docking portion of the present invention;

[0041] Figure 7 This is a schematic diagram of the fixing structure of the present invention;

[0042] Figure 8 This is a schematic diagram of the structure of the stabilizer of the present invention;

[0043] Figure 9 For the present invention Figure 8 Magnified view of B.

[0044] In the accompanying drawings, the components represented by the reference numerals are as follows:

[0045] In the figure: 1. Equipment box; 11. Pulley; 2. Winding box; 21. Fixing rod; 22. Wire clamp; 3. Support part; 31. Adjusting part; 311. Fixing plate; 312. Motor 1; 313. Screw rod; 314. Moving block; 315. Connecting plate; 316. Motor 2; 32. Fixing part; 321. Rotating shaft; 322. Driving belt 1; 323. Stator body; 324. Moving rod; 325. Connecting rod; 326. Push rod; 327. Fixed base; 33. Wire guide; 331. Fixing column; 332. Side guide plate; 4. Winding part; 41. Winding Wire parts; 411, motor three; 412, winding belt; 413, winding shaft; 414, wire outlet hole; 415, transmission belt two; 416, winding rod; 417, wire pulley; 418, wire outlet rack; 42, stabilizer; 421, fixed head; 422, synchronous shaft; 423, fixed gear; 424, synchronous toothed belt one; 425, synchronous gear; 426, synchronous toothed belt two; 5, docking part; 51, auxiliary part; 511, auxiliary base; 512, wire clamp; 52, docking part; 521, sliding rod; 522, back plate; 523, extrusion spring. DETAILED DESCRIPTION

[0046] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0047] Example 1, please refer to Figure 1-Figure 7As shown, the present invention is a winding mechanism and a submersible pump motor stator winding processing equipment, comprising an equipment box 1, a plurality of pulleys 11 are fixedly connected to the bottom of the equipment box 1, a winding box 2 is fixedly connected directly above the equipment box 1, a fixing rod 21 is fixedly connected to the end of the winding box 2 away from the equipment box 1, and a wire clamp 22 is fixedly connected to the end of the fixing rod 21 away from the winding box 2.

[0048] A submersible pump motor stator winding processing device with a winding mechanism includes a support portion 3, which is installed on an equipment box 1. The support portion 3 is used to support the installation and fixation of the stator to be wound. The support portion 3 is also used to adjust the angle of the stator to be wound, and further includes:

[0049] The winding part 4 is installed inside the winding box 2 and is used for installing the copper wire; and

[0050] The docking part 5 is installed at the end of the winding part 4 away from the interior of the winding box 2. The docking part 5 cooperates with the support part 3, so that the docking part 5 and the stator to be wound on the support part 3 are stably installed, and then the copper wire is evenly wound on the stator by cooperating with the winding part 4 to rotate;

[0051] The winding portion 4 is also used to keep the docking portion 5 stationary, thereby ensuring stable winding of the stator between the docking portion 5 and the supporting portion 3 .

[0052] The support portion 3 includes:

[0053] An adjusting member 31 is installed inside the equipment box 1 and is used to provide power for the stator on the supporting portion 3 to move toward the docking portion 5;

[0054] The fixing member 32 is installed on the top of the adjusting member 31 and is used to support and fix the stator;

[0055] The wire member 33 is installed just above the adjusting member 31 . The wire member 33 cooperates with the winding action of the winding part 4 so that the copper wire on the winding part 4 is evenly wound inside the stator.

[0056] The adjusting member 31 includes several fixed plates 311 fixedly connected to the inner wall of the equipment box 1. A motor 1 312 is fixedly connected to one side of the fixed plate 311 away from the side wall of the equipment box 1. The output end of the motor 1 312 is fixedly connected to a screw rod 313. The middle part of the screw rod 313 is rotatably connected to a moving block 314. The bottom of the moving block 314 is fixedly connected to a connecting plate 315. The bottom of the connecting plate 315 is fixedly connected to a motor 2 316.

[0057] The fixing member 32 includes a plurality of rotating shafts 321 rotatably connected to the moving block 314. The bottom of the rotating shaft 321 is connected to a transmission belt 1 322. The end of the transmission belt 1 322 away from the rotating shaft 321 is connected to the output end of the motor 2 316. The end of the rotating shaft 321 away from the transmission belt 1 322 is installed with a stator body 323. The middle part of the rotating shaft 321 is rotatably connected to a moving rod 324. One end of the moving rod 324 is fixedly connected to a push rod 326. The end of the push rod 326 away from the connecting rod 325 is fixedly connected to a fixed base 327. The function of the component is that when the submersible pump motor stator winding processing equipment is used, the stator body 323 is first installed directly above the rotating shaft 321. At this time, the output end of the second motor 316 rotates to drive the rotating shaft 321 at one end of the transmission belt 1 322 to rotate and adjust the angle of the stator body 323, so that the winding part of the stator body 323 is aligned with the docking part 5. The push rod 326 then pushes the fixed base 327 to move toward the side wall of the stator body 323. This arrangement is conducive to ensuring that the stator body 323 remains stable during the winding process, thereby improving the winding quality of the stator body 323.

[0058] Among them, the wire member 33 includes several fixed columns 331 fixedly connected to the top of the moving rod 324, one end of the fixed column 331 is fixedly connected to the side guide plate 332, and the two ends of the side guide plate 332 are set to be inclined. The inclined parts at both ends of the side guide plate 332 are used to guide the copper wire.

[0059] Example 2 is distinguished from Example 1 in that: Figures 1-9 As shown, the winding portion 4 includes:

[0060] The winding member 41 is installed inside the winding box 2 and is used to provide rotational force for winding the copper wire;

[0061] The stabilizing member 42 is installed at one end of the winding member 41 away from the interior of the winding box 2. The stabilizing member 42 is used to ensure that the winding member 41 rotates at a high speed while ensuring that the stator is fixedly installed.

[0062] The winding member 41 includes a motor 3 411 fixedly connected to the inner wall of the winding box 2, the output end of the motor 3 411 is connected to the winding belt 412, the side wall of the winding box 2 is rotated through by a plurality of winding shafts 413, the axis of the winding shaft 413 is provided with a wire outlet hole 414, the wire outlet hole 414 is used to pass the copper wire, and the plurality of winding shafts 413 are connected to the transmission belt 2 415, and the transmission belt 2 415 realizes the synchronous rotation of the plurality of winding shafts 413, the end of the winding shaft 413 away from the transmission belt 2 415 is fixedly connected to the winding rod 416, the inner rotation of the end of the winding shaft 413 away from the winding rod 416 is connected to the wire wheel 417, and the winding rod 416 One end is fixedly connected to a wire outlet rack 418. The function of this component is to set the winding part 4, pass the copper wire through the wire outlet hole 414 inside the winding shaft 413, and then pass it out through the wire pulley 417. At this time, the copper wire is passed through the wire outlet rack 418 and fixedly clamped by the wire clamp 22. The output end of the motor three 411 rotates to drive the winding shaft 413 at one end of the winding belt 412 to rotate. The rotation of the winding shaft 413 drives the transmission belt 2 415 to rotate. The rotation of the transmission belt 2 415 drives several winding shafts 413 to rotate synchronously. The rotation of the winding shaft 413 drives the wire outlet rack 418 at one end of the winding rod 416 to rotate. The rotation of the wire outlet rack 418 drives the copper wire to be wound around the stator body 323.

[0063] The stabilizing member 42 includes a fixed head 421 rotatably connected to the winding shaft 413 away from one end of the transmission belt 2 415, and the winding rod 416 is rotatably passed through the end of the wire discharging rack 418. The side wall of the winding box 2 is fixedly connected to several fixed gears 423, and one end of the synchronous rotating shaft 422 is meshed with a synchronous toothed belt 1 424. The end of the synchronous toothed belt 1 424 away from the synchronous rotating shaft 422 is meshed with the fixed gear 423. The fixed head 421 is fixedly connected to the side wall of one end of the winding shaft 413, and a synchronous toothed belt 2 426 is meshed on the synchronous gear 425. The end of the synchronous toothed belt 2 426 away from the synchronous gear 425 is meshed with one end of the synchronous rotating shaft 422. The function of this component is to set the stabilizing member 42. Since the fixed head 421 is rotatably connected to one end of the winding shaft 413, if there is no stabilizing member 42, The friction force between the rotation of the winding shaft 413 and the fixed head 421 will drive the fixed head 421 to rotate. In order to ensure that the fixed head 421 and the stator body 323 remain relatively stable, a synchronous rotating shaft 422 is set on the winding rod 416. When the winding shaft 413 rotates and drives the synchronous rotating shaft 422 on the winding rod 416 to rotate around the winding shaft 413, the synchronous toothed belt 1 424 on the synchronous rotating shaft 422 engages with the fixed gear 423, and the synchronous toothed belt 1 424 drives the synchronous rotating shaft 422 to rotate. The rotation of the synchronous rotating shaft 422 drives the synchronous toothed belt 2 426 to rotate. Therefore, the synchronous gear 425 at one end of the synchronous toothed belt 2 426 and the fixed gear 423 remain relatively stationary, thereby ensuring that the fixed head 421 is not affected by the rotation of the winding shaft 413. This arrangement is conducive to ensuring that the stator body 323 at one end of the fixed head 421 remains stable.

[0064] The docking portion 5 includes:

[0065] An auxiliary member 51 is mounted on an end of the fixed head 421 away from the winding shaft 413 and is used to guide the copper wire;

[0066] The docking piece 52 is installed inside the fixing head 421 . The docking piece 52 is used to cooperate with the fixing piece 32 to fix the stator body 323 .

[0067] The auxiliary component 51 includes an auxiliary base 511 fixedly connected to the end of the fixed head 421 away from the winding shaft 413, and both ends of the auxiliary base 511 are fixedly connected to the wire clamp 512;

[0068] Among them, the docking member 52 includes a sliding rod 521 slidably connected to the inside of the fixed head 421, and the end of the sliding rod 521 away from the fixed head 421 is fixedly connected to a plate 522. An extrusion spring 523 is provided inside the fixed head 421. The function of this component is that the motor 312 drives the screw rod 313 to rotate, and the rotation of the screw rod 313 drives the moving block 314 to move. When the winding member 41 works, the winding member 41 evenly winds the copper wire on the stator body 323 under the movement and adjustment of the adjusting member 31. When the adjusting member 31 drives the stator body 323, the copper wire is evenly wound on the stator body 323. When the stator body 323 moves toward the end away from the motor 312, the moving block 314 drives the stator body 323 on the rotating shaft 321 away from the docking portion 5. At this time, due to the compression between one end of the abutment plate 522 and the extrusion spring 523, when the stator body 323 moves away from the abutment plate 522, the extrusion spring 523 pushes the abutment plate 522 at one end of the sliding rod 521 to always be close to the side wall of the stator body 323, thereby ensuring that the copper wire is continuously wound inside the stator body 323 under the guidance of the wire clamp 512, ensuring that the device can continue to wind stably.

[0069] A specific application of this embodiment is:

[0070] When the submersible pump motor stator winding processing equipment is used, the stator body 323 is first installed just above the rotating shaft 321. At this time, the output end of the motor 2 316 rotates to drive the rotating shaft 321 at one end of the transmission belt 1 322 to rotate and adjust the angle of the stator body 323 so that the winding part of the stator body 323 is aligned with the docking part 5. The push rod 326 then pushes the fixed base 327 to move toward the side wall of the stator body 323. This arrangement is conducive to ensuring that the stator body 323 remains stable during the winding process, thereby improving the winding quality of the stator body 323. By setting the winding part 4, the copper wire is passed through the internal outlet hole 414 of the winding shaft 413 and then passed out through the wire wheel 417. At this time, the copper wire is passed through the outlet frame 418 and fixedly clamped by the wire clamp 22. The output end of the motor 3 411 rotates to drive the winding shaft 413 at one end of the winding belt 412 to rotate. The rotation of the winding shaft 413 drives the transmission belt 2 415 to rotate. The rotation of the transmission belt 2 415 drives several winding shafts 413 to rotate synchronously. The rotation of the winding shaft 413 drives the outlet rack 418 at one end of the winding rod 416 to rotate. The outlet rack 418 rotates and drives the copper wire to be wound on the stator body 323. During winding, the motor 1 312 drives the moving block 314 on the screw rod 313 to move toward one end of the starting motor 1 312. At this time, the moving block 314 drives the stator body 323 on the rotating shaft 321 to move toward one end close to the docking portion 5. The end of the stator body 323 close to the docking portion 5 is squeezed against the abutment plate 522. The abutment plate 522 is squeezed and presses the extrusion spring 523 inward along the rotating shaft 321. At this time, the side wall of the stator body 323 is tightly fitted with the side wall of the abutment plate 522. This arrangement is conducive to ensuring that the stator body 323 is stably clamped between the abutment plate 522 and the fixed base 327, ensuring that the stator body 323 does not shake during winding, which leads to the phenomenon of winding disorder.

[0071] When the stator 323 is moved to the end away from the motor 312, the moving block 314 drives the stator 323 on the rotating shaft 321 to move away from the docking portion 5. At this time, due to the compression of the end of the support plate 522 and the extrusion spring 523, when the stator 323 is away from the support plate 522, the extrusion spring 523 pushes the support plate 522 at one end of the sliding rod 521 to always be close to the side wall of the stator body 323, thereby ensuring that the copper wire is continuously wound around the stator body 323 under the guiding action of the wire clamp 512, ensuring that the device is continuously and stably wound. By setting the stabilizing member 42, the fixed head 421 is connected to the winding shaft by rotation. When the cam 421 is in the closed position, the cam 422 is in the closed position, and the cam 423 is in the closed position, so that the cam 423 is not in the closed position.

[0072] The preferred embodiments of the present invention disclosed above are intended only to help illustrate the present invention. These preferred embodiments do not exhaustively describe all details, nor do they limit the present invention to the specific embodiments described. Obviously, many modifications and variations are possible based on the content of this specification. These embodiments are selected and described in detail in this specification to better explain the principles and practical applications of the present invention, thereby enabling those skilled in the art to better understand and utilize the present invention. The present invention is limited only by the claims and their full scope and equivalents.

Claims

1. A submersible pump motor stator winding processing device, comprising an equipment box, a plurality of pulleys fixedly connected to the bottom of the equipment box, a winding box fixedly connected directly above the equipment box, a fixing rod fixedly connected to the end of the winding box away from the equipment box, and a wire clamp fixedly connected to the end of the fixing rod away from the winding box; It also includes a support portion, which is installed on the equipment box and is used to support the installation and fixation of the stator to be wound. The support portion is also used to adjust the angle of the stator to be wound, and is characterized in that: Also includes: A winding part, which is installed inside the winding box and is used for installing copper wire; as well as The docking part is installed at the end of the winding part away from the interior of the winding box. The docking part cooperates with the support part to ensure that the stator to be wound on the docking part and the support part is stably installed, and then the copper wire is evenly wound on the stator by cooperating with the rotation of the winding part; Wherein, the winding portion is also used to keep the docking portion stationary, thereby ensuring stable winding of the stator between the docking portion and the support portion; The support portion includes: An adjusting member, the adjusting member being installed inside the equipment box and being used to provide power for the stator on the supporting portion to move toward the docking portion; A fixing member, the fixing member is installed on the top of the adjusting member, and the fixing member is used to support and fix the stator; A wire member is installed just above the adjusting member and cooperates with the winding action of the winding portion to ensure that the copper wire on the winding portion is evenly wound inside the stator; The adjusting part includes several fixed plates fixedly connected to the inner wall of the equipment box, and a side of the fixed plate away from the side wall of the equipment box is fixedly connected to motor 1, the output end of motor 1 is fixedly connected to a screw rod, the middle part of the screw rod is rotatably connected to a moving block, the bottom of the moving block is fixedly connected to a connecting plate, and the bottom of the connecting plate is fixedly connected to motor 2.

2. The submersible pump motor stator winding processing equipment according to claim 1, characterized in that: The fixing member includes a plurality of rotating shafts rotatably connected to the moving block, the bottom of the rotating shaft is connected to a transmission belt 1, the end of the transmission belt 1 away from the rotating shaft is connected to the output end of the motor 2, the end of the rotating shaft away from the transmission belt 1 is installed with a stator body, the middle part of the rotating shaft is rotatably connected to a moving rod, one end of the moving rod is fixedly connected to a push rod, and the end of the push rod away from the connecting rod is fixedly connected to a fixed base; Among them, the wire guide includes several fixed columns fixedly connected to the top of the moving rod, one end of the fixed column is fixedly connected to the side guide plate, and the two ends of the side guide plate are set to be inclined. The inclined parts of the two ends of the side guide plate are used to guide the copper wire.

3. The submersible pump motor stator winding processing equipment according to claim 2, characterized in that: The winding portion includes: A winding member is installed inside the winding box and is used to provide a rotational force for winding the copper wire; A stabilizing member is installed at one end of the winding member away from the interior of the winding box. The stabilizing member is used to ensure that the winding member rotates at high speed while ensuring that the stator is fixedly installed.

4. The submersible pump motor stator winding processing equipment according to claim 3, characterized in that: The winding member includes a motor three fixedly connected to the inner wall of the winding box, the output end of the motor three is transmission-connected to the winding belt, the side wall of the winding box is rotationally penetrated by a plurality of winding shafts, the axis of the winding shaft is provided with an outlet hole, the outlet hole is used to pass the copper wire, a transmission belt two is transmission-connected between the plurality of winding shafts, the transmission belt two realizes the synchronous rotation of the plurality of winding shafts, the end of the winding shaft away from the transmission belt two is fixedly connected to the winding rod, the internal rotation of the end of the winding shaft away from the winding rod is connected to the wire pulley, and one end of the winding rod is fixedly connected to the outlet rack.

5. The submersible pump motor stator winding processing equipment according to claim 4, characterized in that: The stabilizing member includes a fixed head rotatably connected to the end of the winding shaft away from the transmission belt 2, the end of the winding rod away from the wire outlet frame rotates and passes through a synchronous rotating shaft, the side wall of the winding box is fixedly connected to a plurality of fixed gears, one end of the synchronous rotating shaft is engaged with a synchronous toothed belt, the end of the synchronous toothed belt away from the synchronous rotating shaft is engaged with the fixed gear, the side wall of the fixed head close to the winding shaft is fixedly connected to the synchronous gear, the synchronous gear is engaged with a synchronous toothed belt 2, and the end of the synchronous toothed belt 2 away from the synchronous gear is engaged with one end of the synchronous rotating shaft.

6. The submersible pump motor stator winding processing equipment according to claim 5, characterized in that: The docking portion includes: An auxiliary part, the auxiliary part is installed at one end of the fixed head away from the winding shaft, and the auxiliary part is used to guide the copper wire; The docking piece is installed inside the fixing head and is used to cooperate with the fixing piece to fix the stator body.

7. The submersible pump motor stator winding processing equipment according to claim 6, characterized in that: The auxiliary component includes an auxiliary base fixedly connected to an end of the fixed head away from the winding shaft, and both ends of the auxiliary base are fixedly connected to the wire clamp; The docking member includes a sliding rod slidably connected to the interior of the fixed head, an end of the sliding rod away from the fixed head is fixedly connected to a support plate, and an extrusion spring is provided inside the fixed head.

Citation Information

Patent Citations

  • Winding machine of internal stator

    CN102412674A