Production equipment for reinforcing rings for motor commutators

By designing the production equipment for reinforcement rings for motor commutator, the paint impregnation system and auxiliary winding system are used to achieve complete impregnation of alkali-free glass yarn, which solves the problem of incomplete penetration caused by fine weaving, and improves the strength and high temperature resistance of the product.

CN114156713BActive Publication Date: 2025-05-06李恒良
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Patent Information

Application Number
CN202111428516.2
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2021-11-29
Publication Date
2025-05-06
Estimated Expiration
2041-11-29

AI Technical Summary

Technical Problem

Due to the fine weaving of alkali-free glass yarn, it cannot penetrate completely into the resin mother liquor, affecting the strength of the reinforcement ring and high temperature resistance.

Method used

A production equipment for reinforcement rings for motor commutators is designed, including a paint immersion system and an auxiliary winding system. The micropores in the glass yarn are expanded through the transmission cone needle roller to facilitate the penetration of resin mother liquor, and the auxiliary winding system is closely attached and winding to ensure complete impregnation.

Benefits of technology

The complete impregnation of alkali-free glass yarn in the resin mother liquor is achieved, the strength and high temperature resistance of the reinforcement ring are improved, and the wrinkle problems that may occur in the product are avoided.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention relates to the field of motors, and in particular to a production device for a reinforcing ring for a motor commutator. The technical problem is: the alkali-free glass yarn is woven from glass fibers, which are finely woven and cannot be completely penetrated in the resin mother liquid, but can only penetrate on the surface, which will affect the strength and high temperature resistance of the product. The technical solution is: a production device for a reinforcing ring for a motor commutator, including a frame and a paint tank, etc.; the upper side of the frame is connected to a paint tank. The present invention designs a paint dipping system, which enables the alkali-free glass yarn to expand its holes while being immersed in the resin mother liquid, so that the resin mother liquid can completely penetrate the alkali-free glass yarn; and designs an auxiliary winding system, which enables the alkali-free glass yarn soaked in the resin mother liquid to be tightly attached to the paint dipping system and stuck, so that the paint dipping system can wind up the alkali-free glass yarn soaked in the resin mother liquid.
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Description

Technical Field

[0001] The invention relates to the field of motors, and in particular to a production device for a reinforcing ring for a motor commutator. Background Art

[0002] The commutator is a key component in the manufacture of motors, and the reinforcement ring is an important component of the commutator, which plays a decisive role in the quality of the commutator. The alkali-free glass yarn is the raw material for making the insulating material reinforcement ring;

[0003] In order to make a reinforcing ring with tensile strength and high temperature resistance, the alkali-free glass yarn needs to be immersed in the resin mother liquor to make it completely soaked. In the prior art, the alkali-free glass yarn is directly placed in the resin mother liquor for penetration. Since the alkali-free glass yarn is woven from glass fibers with fine weaving, it cannot be completely penetrated in the resin mother liquor and can only penetrate on the surface, which will affect the strength and high temperature resistance of the product. Summary of the invention

[0004] In order to overcome the shortcomings that alkali-free glass yarn is woven from glass fibers, has a dense weave, cannot fully penetrate in the resin mother solution, and can only penetrate on the surface, which affects the strength and high temperature resistance of the product, the present invention provides a production equipment for a reinforcing ring for a motor commutator.

[0005] The technical solution is: a production equipment for a reinforcement ring for a motor commutator, including a frame, a paint tank, a paint dipping system and an auxiliary winding system; the upper side of the frame is connected to a paint tank; the rear side of the frame is connected to a paint dipping system; the upper side of the paint tank is connected to the paint dipping system; the paint dipping system is used to allow the resin mother liquid to completely penetrate the alkali-free glass yarn; the auxiliary winding system is connected to the upper right side of the frame; the auxiliary winding system is used to assist in winding up the soaked alkali-free glass yarn.

[0006] In addition, it is particularly preferred that the paint dipping system includes a first support plate, a feeding roller, a first limiting circular plate, a sensor bracket, an inductive detector, a first transmission wheel, a first motor, a second transmission wheel, a double-layer transmission wheel, a transmission cone needle roller, a second support plate, a receiving roller, a second motor, a second limiting circular plate, a first electric push rod, a first arc-shaped fixed block, a first arc-shaped scribing and a clamping and transporting assembly; the first support plate is fixedly connected to the left rear side of the frame; the feeding roller is rotatably connected to the upper front side of the first support plate; the rear of the feeding roller is fixedly connected to the first limiting circular plate, and the first limiting circular plate is located in front of the first support plate; the sensor bracket is fixedly connected to the upper front side of the first support plate, and the sensor bracket is located above the feeding roller; the inductive detector is fixedly connected to the front side of the sensor bracket; the rear of the feeding roller is fixedly connected to the first transmission wheel, and the first transmission wheel is located behind the first support plate; the rear of the frame is fixedly connected to the first motor; the first The motor is fixedly connected to the second transmission wheel through the output shaft; a transmission cone needle roller is rotatably connected to the upper and middle part of the paint tank; a double-layer transmission wheel is fixedly connected to the rear part of the outer surface of the transmission cone needle roller; the outer ring surface of the first transmission wheel is transmission-connected to the double-layer transmission wheel through a belt; the outer ring surface of the second transmission wheel is transmission-connected to the double-layer transmission wheel through a belt; a second support plate is fixedly connected to the right part of the rear side of the frame; a receiving roller is rotatably connected to the middle of the second support plate; a second motor is fixedly connected to the rear side of the second support plate; the receiving roller is fixedly connected to the output shaft of the second motor; a second limiting circular plate is fixedly connected to the rear part of the outer surface of the receiving roller, and the second limiting circular plate is located in front of the second support plate; a first electric push rod is fixedly connected to the rear side of the second limiting circular plate; the first electric push rod is fixedly connected to the first arc-shaped fixed block through the telescopic part; a first arc-shaped scribing piece is fixedly connected to the front side of the first arc-shaped fixed block; the first arc-shaped scribing piece is plugged into the second limiting circular plate; a clamping and handling assembly is connected to the upper side of the paint tank.

[0007] In addition, it is particularly preferred that the clamping and handling assembly includes a first mounting bracket, a slide bracket, a first electric slide rail, a first fixed block, a limit plate, a slide plate, a slide column, a first transmission plate, a second electric push rod, a cone needle block, a cone hole block, a scraper, a second mounting bracket and a driven cone needle roller; a first mounting bracket is fixedly connected to the upper front and upper rear of the paint tank; a slide bracket is fixedly connected to the upper sides of the two first mounting brackets; the first electric slide rail is fixedly connected to the upper side of the slide bracket; the first electric slide rail is connected to the first fixed block through a slider; the limit plate is fixedly connected to the upper side of the first fixed block; a slide plate is slidably connected to the front of the limit plate; the limit A sliding plate is slidably connected to the rear part of the plate; a sliding column is fixedly connected to the lower parts of the two sliding plates; a first transmission plate is fixedly connected to the opposite sides of the two sliding columns; a second electric push rod is fixedly connected to the lower parts of the opposite sides of the two first transmission plates; the two second electric push rods are fixedly connected to a cone needle block through the telescopic part; a cone hole block is fixedly connected to the lower parts of the opposite sides of the two first transmission plates, and the cone hole block is located below the cone needle block; a scraper is fixedly connected to the upper right part of the paint tank; a second mounting bracket is fixedly connected to the left part and the right part of the inner wall of the slide bracket; the two second mounting brackets are rotatably connected to a driven cone needle roller through the two support plates on the lower side.

[0008] In addition, it is particularly preferred that the slide slot bracket has two limiting slots, and the two slide posts slide in the two limiting slots.

[0009] In addition, it is particularly preferred that a plurality of cone needles are provided on the cone needle block for passing through the alkali-free glass yarn and fixing it to prevent the alkali-free glass yarn from falling off during movement.

[0010] In addition, it is particularly preferred that a plurality of cone needles are provided on the outer surfaces of the driving cone needle roller and the driven cone needle roller for enlarging the tiny micropores in the alkali-free glass yarn to facilitate the penetration of the resin mother liquid.

[0011] In addition, it is particularly preferred that the auxiliary winding system includes a second electric slide rail, a second fixed block, a first mounting plate, a third mounting bracket, a third support plate, a third electric slide rail, a third fixed block, a fixed bracket, a first spring column, a pressure strip, a third electric push rod, a first slider, a second mounting plate, a first rotating shaft, a third limiting circular plate and a smoothing component; the second electric slide rail is fixedly connected to the upper part of the second support plate; the second electric slide rail is fixedly connected to the second fixed block through the slider; the first mounting plate is fixedly connected to the front side of the second fixed block; the third mounting bracket is fixedly connected to the third support plate on the upper right side of the frame; the third mounting bracket is fixedly connected to the third support plate on the front side; the third electric slide rail is fixedly connected to the upper rear side of the third support plate ; The third electric slide rail is fixedly connected to the third fixed block through a slider; a fixed bracket is fixedly connected to the rear side of the third fixed block; the left side of the fixed bracket is fixedly connected to the first mounting plate; three first spring columns are equidistantly connected to the lower side of the first mounting plate; a pressure strip is fixedly connected to the lower side of the three first spring columns; the third electric push rod is fixedly connected to the upper side of the first mounting plate; the third electric push rod is fixedly connected to the first slider through the telescopic part; the second mounting plate is fixedly connected to the lower side of the first slider; a first rotating shaft passes through the middle of the second mounting plate and is rotatably connected to it; a third limiting circular plate is fixedly connected to the outer surface of the first rotating shaft; a smoothing component is connected to the second mounting plate; the third limiting circular plate is connected to the smoothing component; the front side of the second support plate is connected to the smoothing component.

[0012] In addition, it is particularly preferred that the smoothing assembly includes a fourth electric push rod, a first push block, a second spring column, a first mounting block, a first driven roller, a third mounting plate, a fifth electric push rod, a second push block, a third spring column, a second mounting block, a second driven roller, a sixth electric push rod, a second arc-shaped fixed block, and a second arc-shaped scribing sheet; the fourth electric push rod is fixedly connected to the upper side of the second mounting plate; the fourth electric push rod is fixedly connected to the first push block through a telescopic portion; three second spring columns are equidistantly connected to the upper side of the first push block; the first mounting block is fixedly connected to the upper side of the three second spring columns; the first mounting block is rotatably connected to the first driven roller through a support plate; the A third mounting plate is fixedly connected to the front side of the second support plate, and the third mounting plate is located below the second electric slide rail; a fifth electric push rod is fixedly connected to the upper side of the third mounting plate; the fifth electric push rod is fixedly connected to the second push block through a telescopic portion; three third spring columns are equidistantly connected to the upper side of the second push block; the second mounting block is fixedly connected to the upper side of the three third spring columns; the second mounting block is rotatably connected to the second driven roller through the support plate; a sixth electric push rod is fixedly connected to the front side of the third limiting circular plate; the sixth electric push rod is fixedly connected to the second arc-shaped fixed block through a telescopic portion; a second arc-shaped scriber is fixedly connected to the rear side of the second arc-shaped fixed block; the second arc-shaped scriber is plugged into the third limiting circular plate.

[0013] In addition, it is particularly preferred that it also includes a clamping system; the clamping system is connected to the upper side of the third mounting bracket; the clamping system includes a fourth mounting bracket, a fifth mounting bracket, a third motor, a second transmission plate, a third transmission plate, a fourth transmission plate, a second rotating shaft, a fifth transmission plate, an arc pressure plate and a second sliding block; the fourth mounting bracket is fixedly connected to the upper side of the third mounting bracket; the fifth mounting bracket is fixedly connected to the left portion of the rear side of the fourth mounting bracket; the third motor is fixedly connected to the rear side of the fifth mounting bracket; the third motor passes through the fifth mounting bracket through the output shaft and is rotatably connected to it; the third motor passes through the output shaft A second transmission plate is fixedly connected to the output; the right part of the second transmission plate is rotatably connected to the third transmission plate through a rotating shaft; the third transmission plate is rotatably connected to the fourth transmission plate through a rotating shaft; the second rotating shaft is fixedly connected to the upper part of the fourth transmission plate; the outer surface of the second rotating shaft is rotatably connected to the fourth mounting bracket; a fifth transmission plate is fixedly connected to the front and rear parts of the outer surface of the second rotating shaft; an arc-shaped pressure plate is rotatably connected to the upper part between the two fifth transmission plates; a second sliding block is slidably connected to the front and rear sliding blocks of the arc-shaped pressure plate; the two second sliding blocks are rotatably connected to the fourth mounting bracket through the rotating shaft at the opposite sides.

[0014] Compared with the prior art, the advantages of the present invention are as follows: (i) the present invention designs a dipping system, which realizes that when the alkali-free glass yarn is immersed in the resin mother liquid, the pores are expanded at the same time, so that the resin mother liquid can completely penetrate the alkali-free glass yarn;

[0015] (ii) The auxiliary winding system of the present invention is designed to make the alkali-free glass yarn soaked in the resin mother liquid close to the varnish dipping system and clamp it, so that the varnish dipping system can easily wind up the alkali-free glass yarn soaked in the resin mother liquid;

[0016] (III) The present invention designs a compacting system to compact the end of the alkali-free glass yarn, thereby preventing the end of the alkali-free glass yarn from wrinkling and affecting product quality. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] Figure 1 It is a first three-dimensional structural schematic diagram of the production equipment for the reinforcing ring for the motor commutator of the present invention;

[0018] Figure 2 It is a second three-dimensional structural schematic diagram of the production equipment for the reinforcing ring for the motor commutator of the present invention;

[0019] Figure 3 It is a third three-dimensional structural schematic diagram of the production equipment for the reinforcing ring for the motor commutator of the present invention;

[0020] Figure 4 It is a three-dimensional structural schematic diagram of a varnish dipping system of a production equipment for a reinforcing ring for a motor commutator of the present invention;

[0021] Figure 5 It is a schematic diagram of a first partial three-dimensional structure of a varnish dipping system of a production equipment for a reinforcing ring for a motor commutator of the present invention;

[0022] Figure 6 A second partial three-dimensional structural schematic diagram of a varnish dipping system of a production device for a reinforcing ring for a motor commutator of the present invention;

[0023] Figure 7 A third partial three-dimensional structural schematic diagram of a varnish dipping system of a production equipment for a reinforcing ring for a motor commutator of the present invention;

[0024] Figure 8 A fourth partial three-dimensional structural schematic diagram of a varnish dipping system of a production device for a reinforcing ring for a motor commutator of the present invention;

[0025] Fig. 9 It is an enlarged view of the A area of ​​the production equipment for the reinforcing ring for the motor commutator of the present invention;

[0026] Fig.10 It is an enlarged view of the B area of ​​the production equipment for the reinforcing ring for the motor commutator of the present invention;

[0027] Fig.11 It is a three-dimensional structural schematic diagram of an auxiliary winding system of a production device for a reinforcing ring for a motor commutator of the present invention;

[0028] Fig.12 It is a schematic diagram of a first partial three-dimensional structure of an auxiliary winding system of a production device for a reinforcing ring for a motor commutator of the present invention;

[0029] Fig.13It is a second partial three-dimensional structural schematic diagram of the auxiliary winding system of the production equipment for the reinforcing ring for the motor commutator of the present invention;

[0030] Fig.14 A third partial three-dimensional structural schematic diagram of the auxiliary winding system of the production equipment for the reinforcing ring for the motor commutator of the present invention;

[0031] Fig.15 It is a first three-dimensional structural schematic diagram of a clamping system of a production device for a reinforcing ring for a motor commutator of the present invention;

[0032] Fig.16 A second three-dimensional structural schematic diagram of a clamping system of a production device for a reinforcing ring for a motor commutator according to the present invention;

[0033] Fig.17 It is a three-dimensional structural schematic diagram of another state of the clamping system of the production equipment of the reinforcement ring for the motor commutator of the present invention.

[0034] In the figure: 1, frame, 2, paint tank, 3, paint dipping system, 4, auxiliary winding system, 5, clamping system, 301, first support plate, 302, feeding roller, 303, first limiting circular plate, 304, sensor bracket, 305, induction detector, 306, first transmission wheel, 307, first motor, 308, second transmission wheel, 309, double-layer transmission wheel, 310, transmission cone needle roller, 311, second support plate, 312, winding roller, 313, second motor, 314, second limiting circular plate, 315, first electric push rod , 316, first arc-shaped fixed block, 317, first arc-shaped scriber, 318, first mounting bracket, 319, slide bracket, 320, first electric slide rail, 321, first fixed block, 322, limit plate, 323, slide plate, 324, slide column, 325, first transmission plate, 326, second electric push rod, 327, cone needle block, 328, cone hole block, 329, scraper, 330, second mounting bracket, 331, driven cone needle roller, 401, second electric slide rail, 402, second fixed block, 403, first mounting plate, 4 04, the third mounting bracket, 405, the third support plate, 406, the third electric slide rail, 407, the third fixing block, 408, the fixing bracket, 409, the first spring column, 410, the pressure strip, 411, the third electric push rod, 412, the first slider, 413, the second mounting plate, 414, the first rotating shaft, 415, the third limiting circular plate, 416, the fourth electric push rod, 417, the first push block, 418, the second spring column, 419, the first mounting block, 420, the first driven roller, 421, the third mounting plate, 422, the fifth electric push rod, A movable push rod, 423, a second push block, 424, a third spring column, 425, a second mounting block, 426, a second driven roller, 427, a sixth electric push rod, 428, a second arc-shaped fixed block, 429, a second arc-shaped scribing sheet, 501, a fourth mounting bracket, 502, a fifth mounting bracket, 503, a third motor, 504, a second transmission plate, 505, a third transmission plate, 506, a fourth transmission plate, 507, a second rotating shaft, 508, a fifth transmission plate, 509, an arc-shaped pressure plate, 510, a second slider, 319a, a limiting groove. DETAILED DESCRIPTION

[0035] In order to make the purpose, technical scheme and advantages of the present invention clearer, the present invention is further described in detail below in conjunction with specific embodiments and with reference to the accompanying drawings. It should be understood that these descriptions are only exemplary and are not intended to limit the scope of the present invention. In addition, in the following description, the description of well-known structures and technologies is omitted to avoid unnecessary confusion of the concept of the present invention.

[0036] Example 1

[0037] A production device for reinforcing rings for motor commutators, such as Figure 1-14As shown, it includes a frame 1, a paint tank 2, a paint dipping system 3 and an auxiliary winding system 4; the paint tank 2 is connected to the upper side of the frame 1; the paint dipping system 3 is connected to the rear side of the frame 1; the upper side of the paint tank 2 is connected to the paint dipping system 3; the auxiliary winding system 4 is connected to the upper right side of the frame 1.

[0038] When in use, first place the production equipment of the reinforcement ring for the motor commutator at the required position, place the frame 1 in a stable position, first the operator loads the material, places the alkali-free glass yarn on the varnish dipping system 3, and places the end of the alkali-free glass yarn on the clamping and transporting assembly of the varnish dipping system 3, controls the clamping and transporting assembly to clamp it, then the clamping and transporting assembly clamps the alkali-free glass yarn and pulls it into the paint tank 2, so that the alkali-free glass yarn is soaked in the resin mother liquor in the paint tank 2, and then the alkali-free glass yarn is pulled to the side of the auxiliary winding system 4, and the auxiliary winding system 4 presses the pulled alkali-free glass yarn against the receiving roller 312 on the varnish dipping system 3, and the varnish dipping system 3 winds up the alkali-free glass yarn soaked in the resin mother liquor, thereby achieving complete soaking of the alkali-free glass yarn in the resin mother liquor and wrinkle-free winding.

[0039] Example 2

[0040] On the basis of Example 1, Figure 1-14As shown, the varnish dipping system 3 includes a first support plate 301, a feeding roller 302, a first limiting circular plate 303, a sensor bracket 304, an induction detector 305, a first transmission wheel 306, a first motor 307, a second transmission wheel 308, a double-layer transmission wheel 309, a transmission cone needle roller 310, a second support plate 311, a receiving roller 312, a second motor 313, a second limiting circular plate 314, a first electric push rod 315, a first arc-shaped fixed block 316, a first arc-shaped scribing 317 and a clamping and transporting assembly; the first support plate 3 is connected to the left rear side of the frame 1 with bolts. 01; the upper front part of the first support plate 301 is rotatably connected to the feeding roller 302; the rear part of the feeding roller 302 is fixedly connected to the first limiting circular plate 303, and the first limiting circular plate 303 is located in front of the first support plate 301; the upper front part of the first support plate 301 is bolted to the sensor bracket 304, and the sensor bracket 304 is located above the feeding roller 302; the front side of the sensor bracket 304 is bolted to the induction detector 305; the rear part of the feeding roller 302 is fixedly connected to the first transmission wheel 306, and the first transmission wheel 306 is located behind the first support plate 301; the rear part of the frame 1 is fixedly connected to the first Motor 307; the first motor 307 is fixedly connected to the second transmission wheel 308 through the output shaft; the upper part of the paint tank 2 is rotatably connected to the transmission cone needle roller 310; the rear part of the outer surface of the transmission cone needle roller 310 is fixedly connected to the double-layer transmission wheel 309; the outer ring surface of the first transmission wheel 306 is transmission-connected to the double-layer transmission wheel 309 through a belt; the outer ring surface of the second transmission wheel 308 is transmission-connected to the double-layer transmission wheel 309 through a belt; the second support plate 311 is bolted to the right part of the rear side of the frame 1; the middle part of the second support plate 311 is rotatably connected to the receiving roller 312; the rear side of the second support plate 311 is bolted to the It is connected to a second motor 313; the receiving roller 312 is fixedly connected to the output shaft of the second motor 313; the rear part of the outer surface of the receiving roller 312 is fixedly connected to a second limiting circular plate 314, and the second limiting circular plate 314 is located in front of the second support plate 311; the rear side of the second limiting circular plate 314 is fixedly connected to a first electric push rod 315; the first electric push rod 315 is fixedly connected to a first arc-shaped fixed block 316 through a telescopic part; the front side of the first arc-shaped fixed block 316 is fixedly connected to a first arc-shaped scriber 317; the first arc-shaped scriber 317 is plugged into the second limiting circular plate 314; a clamping and transporting assembly is connected to the upper side of the paint tank 2.

[0041] The clamping and handling assembly includes a first mounting bracket 318, a slide bracket 319, a first electric slide rail 320, a first fixed block 321, a limit plate 322, a slide plate 323, a slide column 324, a first transmission plate 325, a second electric push rod 326, a cone needle block 327, a cone hole block 328, a scraper 329, a second mounting bracket 330 and a driven cone needle roller 331; a first mounting bracket 318 is bolted to the upper front and upper rear of the paint tank 2; the upper sides of the two first mounting brackets 318 are bolted to the slide bracket 319; the upper side of the slide bracket 319 is bolted to the first electric slide rail 320; the first electric slide rail 320 is connected to the first fixed block 321 through a slider; the upper side of the first fixed block 321 is fixedly connected to the limit plate 322; the front of the limit plate 322 is slidably connected to a slide plate 323; a slide plate 323 is slidably connected to the rear of the limit plate 322; a sliding column 324 is fixedly connected to the lower part of the two slide plates 323; a first transmission plate 325 is fixedly connected to the opposite sides of the two sliding columns 324; a second electric push rod 326 is fixedly connected to the lower part of the opposite sides of the two first transmission plates 325; the two second electric push rods 326 are fixedly connected to a cone needle block 327 through the telescopic part; a cone hole block 328 is fixedly connected to the lower part of the opposite sides of the two first transmission plates 325, and the cone hole block 328 is located below the cone needle block 327; a scraper 329 is bolted to the right part of the upper side of the paint tank 2; a second mounting bracket 330 is fixedly connected to the left part and the right part of the inner wall of the slide bracket 319; the two second mounting brackets 330 are rotatably connected to a driven cone needle roller 331 through two support plates on the lower side.

[0042] The slide bracket 319 has two limiting grooves 319 a, and the two slide posts 324 slide in the two limiting grooves 319 a.

[0043] A plurality of cone needles are provided on the cone needle block 327 for passing through the alkali-free glass yarn and fixing it to prevent the alkali-free glass yarn from falling off during movement.

[0044] The outer surfaces of the driving cone needle roller 310 and the driven cone needle roller 331 are provided with a plurality of cone needles for enlarging the tiny micropores in the alkali-free glass yarn to facilitate the penetration of the resin mother liquid.

[0045] First, the operator loads the material, places the alkali-free glass yarn on the loading roller 302, and places the traction end of the alkali-free glass yarn between the two cone needle blocks 327 and the two cone hole blocks 328 on the clamping and handling assembly, reserving a small part of the alkali-free glass yarn to hang on the right side of the cone needle block 327 and the cone hole block 328, controls the two second electric push rods 326 to be pushed out, drives the two cone needle blocks 327 to descend, cooperates with the cone hole blocks 328 to clamp the alkali-free glass yarn, controls the first motor 307 to rotate, and the first motor 307 rotates counterclockwise based on the view from the back to the front, and the output shaft of the first motor 307 drives the second transmission wheel 308 to rotate, the second transmission wheel 308 drives the double-layer transmission wheel 309 to rotate, the double-layer transmission wheel 309 drives the transmission cone needle roller 310 to rotate, and the double-layer transmission wheel 309 drives the first transmission wheel 306 rotates, the first transmission wheel 306 drives the first limiting circular plate 303 connected to the feeding roller 302 to rotate together, and at the same time controls the first electric slide rail 320 to drive the first fixed block 321, the limiting plate 322, the slide plate 323, the slide column 324, the first transmission plate 325, the second electric push rod 326, the cone needle block 327, the cone hole block 328 and the clamped alkali-free glass yarn to move to the right through the slider, the first motor 307 rotates counterclockwise, drives the feeding roller 302 to rotate counterclockwise, releases the alkali-free glass yarn, the first electric slide rail 320 drives the cone needle block 327 and the cone hole block 328 to clamp the alkali-free glass yarn and move it to the right through the slider, and by controlling the rotation speed of the first motor 307 and the speed of movement of the slider on the first electric slide rail 320, the alkali-free glass yarn is pulled out in a taut state;

[0046] The first electric slide rail 320 drives the limiting plate 322 connected to the first fixed block 321 to move through the slider, the limiting plate 322 drives the two slide plates 323 to move, the slide plate 323 drives the sliding column 324 to move, the sliding column 324 slides in the limiting groove 319a, and the sliding column 324 drives the second electric push rod 326, the cone needle block 327 and the cone hole block 328 connected to the first transmission plate 325 to move together. When the first electric slide rail 320 drives the sliding column 324 to move to the left inclined groove in the limiting groove 319a through the slider, the sliding column 324 is affected by the limiting groove 319a. When the sliding column 324 moves downward along the track of the slide groove, the sliding plate 323 is driven to slide downward in the limit plate 322, and the alkali-free glass yarn clamped by the first transmission plate 325, the second electric push rod 326, the cone needle block 327 and the cone hole block 328 is driven to move downward together. When the sliding column 324 passes through the left inclined groove of the limit groove 319a and reaches the horizontal groove of the limit groove 319a, the sliding column 324 drives the sliding plate 323 to slide downward in the limit plate 322. When the sliding column 324 moves to the horizontal groove of the limit groove 319a, the sliding plate 323 stops sliding.

[0047] The sliding column 324 passes through the left end of the transverse groove of the limiting groove 319a to the middle of the transverse groove of the limiting groove 319a, and the sliding column 324 drives the alkali-free glass yarn clamped by the cone needle block 327 and the cone hole block 328 to pass under the driven cone needle roller 331 on the left and move to the top of the driving cone needle roller 310. When the alkali-free glass yarn passes under the driven cone needle roller 331, the alkali-free glass yarn touches the cone needle on the driven cone needle roller 331, driving the driven cone needle roller 331 to rotate. While the driven cone needle roller 331 rotates, the tiny holes on the alkali-free glass yarn are enlarged through the cone needle, which is convenient for the paint tank 2 to be filled with paint. The resin mother liquid penetrates the alkali-free glass yarn, and then moves to the top of the transmission cone needle roller 310, the first motor 307 drives the transmission cone needle roller 310 to rotate, and the transmission cone needle roller 310 transmits the alkali-free glass yarn to move, and at the same time, the tiny holes on the alkali-free glass yarn are enlarged by the cone needle, so that the resin mother liquid in the paint tank 2 penetrates the alkali-free glass yarn, and the sliding column 324 passes through the middle of the horizontal groove of the limiting groove 319a to the right end of the horizontal groove of the limiting groove 319a, and the sliding column 324 drives the alkali-free glass yarn clamped by the cone needle block 327 and the cone hole block 328 to reach the right driven cone needle roller 331 When passing under the driven cone needle roller 331 on the right, the alkali-free glass yarn touches the cone needles on the driven cone needle roller 331, driving the driven cone needle roller 331 to rotate. While the driven cone needle roller 331 rotates, the tiny holes on the alkali-free glass yarn are enlarged through the cone needles, so as to facilitate the penetration of the resin mother liquid in the paint tank 2 into the alkali-free glass yarn. The sliding column 324 passes through the right inclined groove of the limiting groove 319a to reach the upper right horizontal groove of the limiting groove 319a. The sliding column 324 drives the sliding plate 323 to slide upward in the limiting plate 322. When the sliding column 324 moves to the right side of the limiting groove 319a After the upper horizontal groove, the slide plate 323 stops sliding, and the slide column 324 drives the alkali-free glass yarn clamped by the cone needle block 327 and the cone hole block 328 to move. The alkali-free glass yarn touches the scraper 329, and the scraper 329 removes the resin mother liquor adhering to the alkali-free glass yarn. When the slide column 324 moves to the rightmost end of the upper right horizontal groove of the limiting groove 319a, the first motor 307 and the slider on the first electric slide rail 320 are controlled to stop moving at the same time, thereby realizing the enlargement of the tiny holes on the alkali-free glass yarn through the cone, which facilitates the penetration of the resin mother liquor in the paint tank 2 into the alkali-free glass yarn.

[0048] The auxiliary winding system 4 includes a second electric slide rail 401, a second fixed block 402, a first mounting plate 403, a third mounting bracket 404, a third support plate 405, a third electric slide rail 406, a third fixed block 407, a fixed bracket 408, a first spring column 409, a pressure strip 410, a third electric push rod 411, a first slider 412, a second mounting plate 413, a first rotating shaft 414, a third limiting circular plate 415 and a smoothing component; the second support plate 311 is bolted to the second electric slide rail 401 on the upper part; the second electric slide rail 401 is bolted to the second fixed block 402 through the slider; the second fixed block 402 is bolted to the first mounting plate 403 on the front side; the third mounting bracket 404 is bolted to the right side of the upper side of the frame 1; the third mounting bracket 404 is bolted to the third support plate 405 on the front side; the third electric slide rail is bolted to the upper rear side of the third support plate 405 406; the third electric slide rail 406 is connected to the third fixed block 407 through the slider bolt; the third fixed block 407 is bolted to the fixed bracket 408 on the rear side; the left side of the fixed bracket 408 is bolted to the first mounting plate 403; three first spring columns 409 are equidistantly connected to the lower side of the first mounting plate 403; the lower sides of the three first spring columns 409 are fixedly connected to the pressure strip 410; the upper side of the first mounting plate 403 is fixedly connected to the third electric push rod 411; the third electric push rod 411 is fixedly connected to the first slider 412 through the telescopic part; the lower side of the first slider 412 is fixedly connected to the second mounting plate 413; the middle part of the second mounting plate 413 is penetrated by the first rotating shaft 414 and is rotatably connected thereto; the outer surface of the first rotating shaft 414 is fixedly connected to the third limiting circular plate 415; the second mounting plate 413 is connected to a smoothing assembly; the third limiting circular plate 415 is connected to the smoothing assembly; the front side of the second support plate 311 is connected to the smoothing assembly.

[0049] The smoothing assembly includes a fourth electric push rod 416, a first push block 417, a second spring column 418, a first mounting block 419, a first driven roller 420, a third mounting plate 421, a fifth electric push rod 422, a second push block 423, a third spring column 424, a second mounting block 425, a second driven roller 426, a sixth electric push rod 427, a second arc-shaped fixed block 428 and a second arc-shaped scribing piece 429; the fourth electric push rod 416 is fixedly connected to the upper side of the second mounting plate 413; the fourth electric push rod 416 is fixedly connected to the first push block 417 through a telescopic portion; three second spring columns 418 are equidistantly connected to the upper side of the first push block 417; the first mounting block 419 is fixedly connected to the upper side of the three second spring columns 418; the first mounting block 419 is rotatably connected to the first driven roller 420 through a support plate; the second support A third mounting plate 421 is fixedly connected to the front side of the support plate 311, and the third mounting plate 421 is located below the second electric slide rail 401; a fifth electric push rod 422 is fixedly connected to the upper side of the third mounting plate 421; the fifth electric push rod 422 is fixedly connected to the second push block 423 through a telescopic portion; three third spring columns 424 are equidistantly connected to the upper side of the second push block 423; a second mounting block 425 is fixedly connected to the upper side of the three third spring columns 424; the second mounting block 425 is rotatably connected to the second driven roller 426 through the support plate; a sixth electric push rod 427 is fixedly connected to the front side of the third limiting circular plate 415; the sixth electric push rod 427 is fixedly connected to the second arc-shaped fixed block 428 through a telescopic portion; a second arc-shaped scriber 429 is fixedly connected to the rear side of the second arc-shaped fixed block 428; the second arc-shaped scriber 429 is plugged into the third limiting circular plate 415.

[0050] When the slider on the first electric slide rail 320 stops moving, the second electric slide rail 401 and the third electric slide rail 406 are controlled to drive the second fixed block 402 and the third fixed block 407 to move through the slider, thereby driving the first mounting plate 403, the fixed bracket 408 and the components connected to the first mounting plate 403 to move downward. When the first rotating shaft 414 descends to be concentric with the receiving roller 312, the slider on the second electric slide rail 401 and the slider on the third electric slide rail 406 are controlled to stop moving. At this time, the pressure strip 410 connected to the first spring column 409 touches the The outer surface of the receiving roller 312 forces the three first spring columns 409 to compress, and then controls the third electric push rod 411 to contract, driving the first slider 412 to slide in the slide groove of the first mounting plate 403. The first slider 412 drives the second mounting plate 413, the first rotating shaft 414, the third limiting circular plate 415, the fourth electric push rod 416, the first push block 417, the second spring column 418, the first mounting block 419 and the first driven roller 420 to move backward. At this time, the first rotating shaft 414 is inserted into the groove of the receiving roller 312, and the third limiting circular plate 415 touches the front side of the receiving roller 312.

[0051] The fourth electric push rod 416 and the fifth electric push rod 422 are controlled to retract at the same time. The fourth electric push rod 416 retracts to drive the first push block 417, the second spring column 418, the first mounting block 419 and the first driven roller 420 to move. The fifth electric push rod 422 retracts to drive the second push block 423, the third spring column 424, the second mounting block 425 and the second driven roller 426 to move together. The first driven roller 420 and the second driven roller 426 will touch the alkali-free glass yarn hanging on the right side of the cone needle block 327 and the cone hole block 328 during movement. The alkali-free glass yarn hanging down on the right side of the needle block 327 and the tapered hole block 328 is pushed by the first driven roller 420 and the second driven roller 426. During the process of the first driven roller 420 and the second driven roller 426 pushing, the receiving roller 312 forces the first driven roller 420 and the second driven roller 426 to rotate, and compresses the second spring column 418 connected to the first driven roller 420 and the third spring column 424 connected to the second driven roller 426, so that the first driven roller 420 and the second driven roller 426 finally press the alkali-free glass yarn against the The outer surface of the receiving roller 312 is then controlled to contract at the same time by controlling the first electric push rod 315 and the sixth electric push rod 427 to contract at the same time. The contraction of the first electric push rod 315 drives the first arc-shaped scriber 317 connected to the first arc-shaped fixed block 316 to pass through the second limiting circular plate 314, and the alkali-free glass yarn close to the rear of the outer surface of the receiving roller 312 is clamped. The contraction of the sixth electric push rod 427 drives the second arc-shaped scriber 429 connected to the second arc-shaped fixed block 428 to pass through the third limiting circular plate 415, and the alkali-free glass yarn close to the front of the outer surface of the receiving roller 312 is clamped. The glass yarn is stuck, and the fourth electric push rod 416 and the fifth electric push rod 422 are controlled to be pushed out at the same time, driving the parts connected by the fourth electric push rod 416 and the fifth electric push rod 422 to reset. Since the alkali-free glass yarn is soaked in the resin mother liquid and has a certain viscosity, the alkali-free glass yarn is still closely attached to the outer surface of the receiving roller 312 after the first driven roller 420 and the second driven roller 426 leave. Then, the two second electric push rods 326 are controlled to retreat, driving the two cone needle blocks 327 to rise, and releasing the alkali-free glass yarn clamped by the cone needle block 327 and the cone hole block 328;

[0052] At the same time, the first motor 307 is controlled to rotate counterclockwise and the second motor 313 is controlled to rotate clockwise. The first motor 307 rotates counterclockwise, the feeding roller 302 spreads the alkali-free glass yarn, and the second motor 313 rotates clockwise. The second motor 313 drives the receiving roller 312, the second limiting circular plate 314, the first electric push rod 315, the first arc-shaped fixed block 316, the first arc-shaped scribing piece 317, the first rotating shaft 414, the third limiting circular plate 415, the sixth electric push rod 427, the second arc-shaped fixed block 428 and the second arc-shaped scribing piece 429 to rotate together, and the receiving roller 312 rolls up the alkali-free glass yarn soaked in the resin mother liquid. When the receiving roller 312 rolls up the alkali-free glass yarn soaked in the resin mother liquid for three or more turns, the first electric push rod 315 and the sixth electric push rod 427 are controlled to rotate. The six electric push rods 427 are pushed out at the same time, the first electric push rod 315 drives the first arc-shaped scriber 317 connected to the first arc-shaped fixed block 316 to pass through the second limiting circular plate 314 and leave the alkali-free glass yarn interlayer, the sixth electric push rod 427 drives the second arc-shaped scriber 429 connected to the second arc-shaped fixed block 428 to pass through the third limiting circular plate 415 and leave the alkali-free glass yarn interlayer, during the winding process of the receiving roller 312, the pressure strip 410 is always pressed on the alkali-free glass yarn, so that the alkali-free glass yarn is wound more tightly and will not cause wrinkles due to looseness, when the receiving roller 312 is about to complete the winding of the alkali-free glass yarn, the first motor 307 and the second motor 313 are controlled to stop rotating, and the first electric slide rail 320 is controlled to drive the first fixed block 321, The limiting plate 322, the sliding plate 323, the sliding column 324, the first transmission plate 325, the second electric push rod 326, the cone needle block 327 and the cone hole block 328 move to the left, and the sliding column 324 drives the cone needle block 327 and the cone hole block 328 to move to the left along the trajectory of the limiting groove 319a. The sliding column 324 starts to move to the left from the rightmost end of the upper right transverse groove of the limiting groove 319a, passes through the right inclined groove of the limiting groove 319a, the middle transverse groove of the limiting groove 319a, and the left inclined groove of the limiting groove 319a to reach the leftmost end of the upper left transverse groove of the limiting groove 319a, controls the slider on the first electric slide rail 320 to stop moving, and controls the first motor 307 to rotate counterclockwise and the second motor 313 to rotate clockwise, so that the alkali-free glass yarn soaked in resin mother liquor continues to be wound up. When the induction detector 305 detects that there is no material on the outer surface of the feeding roller 302, the first motor 307 and the second motor 313 are controlled to stop rotating, and then the two second electric push rods 326 are controlled to be pushed out to drive the two cone needle blocks 327 to descend and clamp the end of the alkali-free glass yarn. At the same time, the first motor 307 is controlled to rotate counterclockwise, the second motor 313 is controlled to rotate clockwise, and the slider on the first electric slide rail 320 is controlled to move. The first electric slide rail 320 drives the parts connected to the slide column 324 and the clamped end of the alkali-free glass yarn to move to the right through the slider. The slide column 324 drives the clamped end of the alkali-free glass yarn, so that the last part of the alkali-free glass yarn can also enter the paint tank 2 in a taut state. The two driven cone needle rollers 331 and the transmission cone needle roller 310 expand the hole of the alkali-free glass yarn.In order to facilitate the complete infiltration of the resin mother liquid into the alkali-free glass yarn, when the slide column 324 moves to the rightmost end of the upper horizontal groove on the right side of the limit groove 319a, the first motor 307 and the slider on the first electric slide rail 320 are controlled to stop running, and the second motor 313 continues to rotate clockwise to reel in the alkali-free glass yarn. When the end of the alkali-free glass yarn is reeled toward the arc-shaped pressing plate 509, the second motor 313 is controlled to stop rotating, and the operator removes the reeled alkali-free glass yarn and the receiving roller 312 together, and smoothes the end of the alkali-free glass yarn to avoid wrinkles in the subsequent process, so that the auxiliary varnishing system 3 can make the fully impregnated alkali-free glass yarn close to the varnishing system 3 and get stuck, so that the varnishing system 3 can reel in the alkali-free glass yarn impregnated with the resin mother liquid. When reeling in the alkali-free glass yarn, the alkali-free glass yarn can be prevented from sagging and causing wrinkles at the initial and final stages of reeling.

[0053] Example 3

[0054] On the basis of Example 2, Figure 15-17 As shown, it also includes a clamping system 5; the clamping system 5 is connected to the upper side of the third mounting bracket 404; the clamping system 5 includes a fourth mounting bracket 501, a fifth mounting bracket 502, a third motor 503, a second transmission plate 504, a third transmission plate 505, a fourth transmission plate 506, a second rotating shaft 507, a fifth transmission plate 508, an arc-shaped pressing plate 509 and a second slider 510; the fourth mounting bracket 501 is bolted to the upper side of the third mounting bracket 404; the fifth mounting bracket 502 is fixedly connected to the left rear side of the fourth mounting bracket 501; the third motor 503 is bolted to the rear side of the fifth mounting bracket 502; the third motor 503 passes through the fifth mounting bracket 502 through the output shaft and is rotatably connected thereto; the third motor 5 03 is fixedly connected with the second transmission plate 504 through the output; the right part of the second transmission plate 504 is rotatably connected with the third transmission plate 505 through the rotating shaft; the third transmission plate 505 is rotatably connected with the fourth transmission plate 506 through the rotating shaft; the upper part of the fourth transmission plate 506 is fixedly connected with the second rotating shaft 507; the outer surface of the second rotating shaft 507 is rotatably connected with the fourth mounting bracket 501; a fifth transmission plate 508 is respectively fixedly connected to the front and rear parts of the outer surface of the second rotating shaft 507; an arc-shaped pressure plate 509 is rotatably connected to the upper part between the two fifth transmission plates 508; a second slider 510 is slidably connected to the front and rear slide grooves of the arc-shaped pressure plate 509; the two second sliders 510 are rotatably connected with the fourth mounting bracket 501 through the rotating shaft at the opposite sides.

[0055] When the end of the alkali-free glass yarn is rolled up toward the arc-shaped pressing plate 509 and the second motor 313 stops rotating, the third motor 503 is controlled to rotate, driving the second transmission plate 504 to rotate, and the second transmission plate 504 drives the fourth transmission plate 506, the second rotating shaft 507 and the fifth transmission plate 508 to swing around the second rotating shaft 507 through the third transmission plate 505, and the fifth transmission plate 508 drives the arc-shaped pressing plate 509 to move, so that the arc-shaped pressing plate 509 changes from a vertical state to a horizontal state under the restriction of the second slider 510, that is, Fig.17 Transformed into Fig.16 When the arc-shaped pressing plate 509 is in a horizontal state, the arc surface on the left side of the arc-shaped pressing plate 509 touches the end of the alkali-free glass yarn on the receiving roller 312, flattens the end of the alkali-free glass yarn, and prevents the end of the alkali-free glass yarn from being loosely attached when the receiving roller 312 normally rewinds the end of the alkali-free glass yarn in the absence of external force, thereby achieving the goal of flattening the end of the alkali-free glass yarn.

[0056] The technical principles of the embodiments of the present invention are described above in conjunction with specific embodiments. These descriptions are only for explaining the principles of the embodiments of the present invention and cannot be interpreted in any way as limiting the protection scope of the embodiments of the present invention. Based on the explanations herein, those skilled in the art can think of other specific implementation methods of the embodiments of the present invention without creative work, and these methods will fall within the protection scope of the embodiments of the present invention.

Claims

1. A production device for a reinforcing ring for a motor commutator, comprising a frame (1) and a paint tank (2); the paint tank (2) is connected to the upper side of the frame (1); the characteristics are: It also includes a paint dipping system (3) and an auxiliary winding system (4); the rear side of the frame (1) is connected to the paint dipping system (3); the upper side of the paint tank (2) is connected to the paint dipping system (3); the paint dipping system (3) is used to allow the resin mother liquid to completely penetrate the alkali-free glass yarn; the upper right side of the frame (1) is connected to the auxiliary winding system (4); the auxiliary winding system (4) is used to assist in winding the soaked alkali-free glass yarn; The varnish dipping system (3) comprises a first support plate (301), a feeding roller (302), a first limiting circular plate (303), a sensor bracket (304), an inductive detector (305), a first transmission wheel (306), a first motor (307), a second transmission wheel (308), a double-layer transmission wheel (309), a transmission cone needle roller (310), a second support plate (311), a receiving roller (312), a second motor (313), a second limiting circular plate (314), a first electric push rod (315), a first arc-shaped fixed block (316), a first arc-shaped scriber (317) and a clamping and transporting assembly; the left rear side of the frame (1) is fixedly connected to the first support plate The first support plate (301) comprises a first support plate (301); a first feeding roller (302) is rotatably connected to the upper front part of the first support plate (301); a first limiting circular plate (303) is fixedly connected to the rear part of the feeding roller (302), and the first limiting circular plate (303) is located in front of the first support plate (301); a sensor bracket (304) is fixedly connected to the upper front part of the first support plate (301), and the sensor bracket (304) is located above the feeding roller (302); an induction detector (305) is fixedly connected to the front side of the sensor bracket (304); a first transmission wheel (306) is fixedly connected to the rear part of the feeding roller (302), and the first transmission wheel (306) is located behind the first support plate (301); the rear part of the frame (1) is fixedly connected to the A first motor (307) is provided; the first motor (307) is fixedly connected to a second transmission wheel (308) via an output shaft; a transmission cone needle roller (310) is rotatably connected to the middle and upper part of the paint tank (2); a double-layer transmission wheel (309) is fixedly connected to the rear part of the outer surface of the transmission cone needle roller (310); the outer ring surface of the first transmission wheel (306) is transmission-connected to the double-layer transmission wheel (309) via a belt; the outer ring surface of the second transmission wheel (308) is transmission-connected to the double-layer transmission wheel (309) via a belt; a second support plate (311) is fixedly connected to the right part of the rear side of the frame (1); a receiving roller (312) is rotatably connected to the middle part of the second support plate (311); the rear side of the second support plate (311) is fixedly connected to the A second motor (313) is provided; a receiving roller (312) is fixedly connected to the output shaft of the second motor (313); a second limiting circular plate (314) is fixedly connected to the rear of the outer surface of the receiving roller (312), and the second limiting circular plate (314) is located in front of the second support plate (311); a first electric push rod (315) is fixedly connected to the rear side of the second limiting circular plate (314); the first electric push rod (315) is fixedly connected to a first arc-shaped fixed block (316) through a telescopic portion; a first arc-shaped scriber (317) is fixedly connected to the front side of the first arc-shaped fixed block (316); the first arc-shaped scriber (317) is plugged into the second limiting circular plate (314); a clamping and transporting assembly is connected to the upper side of the paint tank (2); The clamping and transporting assembly comprises a first mounting bracket (318), a slide bracket (319), a first electric slide rail (320), a first fixed block (321), a limit plate (322), a slide plate (323), a slide column (324), a first transmission plate (325), a second electric push rod (326), a cone needle block (327), a cone hole block (328), a scraper (329), a second mounting bracket (330) and a driven cone needle roller (331); a first mounting bracket (318) is fixedly connected to the upper front and upper rear of the paint tank (2); the upper sides of the two first mounting brackets (318) are fixedly connected to the slide brackets (319); the upper sides of the slide brackets (319) are fixedly connected to the first electric slide rail (320); the first electric slide rail (320) is connected to the first fixed block (321) through a slider; the upper side of the first fixed block (321) is fixedly connected to the limit plate (322); the front of the limit plate (322) is slidably connected to a A slide plate (323); a slide plate (323) is slidably connected to the rear of the limit plate (322); a slide column (324) is fixedly connected to the lower part of the two slide plates (323); a first transmission plate (325) is fixedly connected to the opposite sides of the two slide columns (324); a second electric push rod (326) is fixedly connected to the lower parts of the opposite sides of the two first transmission plates (325); the two second electric push rods (326) are fixedly connected to a cone needle block (327) through a telescopic portion; a cone hole block (328) is fixedly connected to the lower parts of the opposite sides of the two first transmission plates (325), and the cone hole block (328) is located below the cone needle block (327); a scraper (329) is fixedly connected to the upper right part of the paint tank (2); a second mounting bracket (330) is fixedly connected to the left part and the right part of the inner wall of the slide tank bracket (319); and the two second mounting brackets (330) are rotatably connected to a driven cone needle roller (331) through two support plates at the lower side.

2. The production equipment for a reinforcing ring for a motor commutator according to claim 1, characterized in that: The slide slot bracket (319) has two limit slots (319a), and the two slide posts (324) slide in the two limit slots (319a).

3. The production equipment for a reinforcing ring for a motor commutator according to claim 1, characterized in that: A plurality of cone needles are arranged on the cone needle block (327) and are used to penetrate the alkali-free glass yarn and fix it, thereby preventing the alkali-free glass yarn from falling off during movement.

4. The production equipment for a reinforcing ring for a motor commutator according to claim 1, characterized in that: A plurality of cone needles are arranged on the outer surfaces of the driving cone needle roller (310) and the driven cone needle roller (331) for enlarging the tiny micropores in the alkali-free glass yarn to facilitate the penetration of the resin mother liquid.

5. The production equipment for a reinforcing ring for a motor commutator according to claim 4, characterized in that: The auxiliary winding system (4) comprises a second electric slide rail (401), a second fixed block (402), a first mounting plate (403), a third mounting bracket (404), a third support plate (405), a third electric slide rail (406), a third fixed block (407), a fixed bracket (408), a first spring column (409), a pressure strip (410), a third electric push rod (411), a first slider (412), a second mounting plate (413), a first rotating shaft (414), and a third limit a circular plate (415) and a smoothing assembly; a second electric slide rail (401) is fixedly connected to the upper portion of the second support plate (311); the second electric slide rail (401) is fixedly connected to a second fixed block (402) via a slider; the front side of the second fixed block (402) is fixedly connected to a first mounting plate (403); a third mounting bracket (404) is fixedly connected to the right portion of the upper side of the frame (1); a third support plate (405) is fixedly connected to the front side of the third mounting bracket (404); and a third electric slide rail is fixedly connected to the upper portion of the rear side of the third support plate (405). (406); the third electric slide rail (406) is fixedly connected to the third fixed block (407) through the slider; the rear side of the third fixed block (407) is fixedly connected to the fixed bracket (408); the left side of the fixed bracket (408) is fixedly connected to the first mounting plate (403); three first spring columns (409) are equidistantly connected to the lower side of the first mounting plate (403); the lower side of the three first spring columns (409) is fixedly connected to a pressure strip (410); the upper side of the first mounting plate (403) is fixedly connected to the third electric push rod (411); The three electric push rods (411) are fixedly connected to the first slider (412) through the telescopic part; the lower side of the first slider (412) is fixedly connected to the second mounting plate (413); the middle of the second mounting plate (413) is penetrated by a first rotating shaft (414) and is rotatably connected thereto; the outer surface of the first rotating shaft (414) is fixedly connected to a third limiting circular plate (415); the second mounting plate (413) is connected to a smoothing component; the third limiting circular plate (415) is connected to the smoothing component; and the front side of the second support plate (311) is connected to the smoothing component.

6. The production equipment for a reinforcing ring for a motor commutator according to claim 5, characterized in that: The smoothing component includes a fourth electric push rod (416), a first push block (417), a second spring column (418), a first mounting block (419), a first driven roller (420), a third mounting plate (421), a fifth electric push rod (422), a second push block (423), a third spring column (424), a second mounting block (425), a second driven roller (426), a sixth electric push rod (427), a second arc-shaped fixed block (428) and a second arc-shaped scribing piece (429); the fourth electric push rod (416) is fixedly connected to the upper side of the second mounting plate (413); the fourth electric push rod (416) is fixedly connected to the first push block (417) through a telescopic portion; three second spring columns (418) are equidistantly connected to the upper side of the first push block (417); the first mounting block (419) is fixedly connected to the upper side of the three second spring columns (418); the first mounting block (419) is rotatably connected to the first driven roller (420) through a support plate; A third mounting plate (421) is fixedly connected to the front side of the second support plate (311), and the third mounting plate (421) is located below the second electric slide rail (401); a fifth electric push rod (422) is fixedly connected to the upper side of the third mounting plate (421); the fifth electric push rod (422) is fixedly connected to a second push block (423) via a telescopic portion; three third spring columns (424) are equidistantly connected to the upper side of the second push block (423); the upper sides of the three third spring columns (424) are fixedly connected to the second The second mounting block (425) is rotatably connected to the second driven roller (426) via the support plate; the front side of the third limiting circular plate (415) is fixedly connected to the sixth electric push rod (427); the sixth electric push rod (427) is fixedly connected to the second arc-shaped fixed block (428) via the telescopic portion; the rear side of the second arc-shaped fixed block (428) is fixedly connected to the second arc-shaped scriber (429); the second arc-shaped scriber (429) is plugged into the third limiting circular plate (415).

7. The production equipment for a reinforcing ring for a motor commutator according to claim 6, characterized in that: The device also includes a clamping system (5); the clamping system (5) is connected to the upper side of the third mounting bracket (404); the clamping system (5) includes a fourth mounting bracket (501), a fifth mounting bracket (502), a third motor (503), a second transmission plate (504), a third transmission plate (505), a fourth transmission plate (506), a second rotating shaft (507), a fifth transmission plate (508), an arc-shaped pressure plate (509) and a second sliding block (510); the fourth mounting bracket (501) is fixedly connected to the upper side of the third mounting bracket (404); the fifth mounting bracket (502) is fixedly connected to the left rear side of the fourth mounting bracket (501); the third motor (503) is fixedly connected to the rear side of the fifth mounting bracket (502); the third motor (503) passes through the fifth mounting bracket (502) through an output shaft and is rotationally connected thereto; the third motor (503) The second transmission plate (503) is fixedly connected to the second transmission plate (504) through the output; the right part of the second transmission plate (504) is rotatably connected to the third transmission plate (505) through the rotating shaft; the third transmission plate (505) is rotatably connected to the fourth transmission plate (506) through the rotating shaft; the upper part of the fourth transmission plate (506) is fixedly connected to the second rotating shaft (507); the outer surface of the second rotating shaft (507) is rotatably connected to the fourth mounting bracket (501); a fifth transmission plate (508) is fixedly connected to the front and rear parts of the outer surface of the second rotating shaft (507); an arc-shaped pressing plate (509) is rotatably connected to the upper part between the two fifth transmission plates (508); a second sliding block (510) is slidably connected to the front and rear sliding grooves of the arc-shaped pressing plate (509); the two second sliding blocks (510) are rotatably connected to the fourth mounting bracket (501) through the rotating shaft at the opposite sides.

Citation Information

Patent Citations

  • Kaolin fiberglass cloth impregnation apparatus

    CN109248832A