A glue coating device for micro motor production
By designing a gluing device for micro-motor production that includes automatic rotor clamping, exhaust and suction functions, the problems of inconvenient gluing operation and gas pollution in the existing technology are solved, and an efficient and environmentally friendly gluing process is achieved.
Patent Information
- Application Number
- CN202510498527.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-21
- Publication Date
- 2025-09-19
- Estimated Expiration
- 2045-04-21
AI Technical Summary
The existing gluing device in micro motor production requires repeated fixing and loosening of the motor, which is inconvenient and inefficient to operate. At the same time, the irritating gas generated during the gluing process pollutes the environment and endangers health.
A glue coating device for micromotor production was designed, consisting of a housing, an adsorption box, a fixing rod, a fixture, a glue removal device, and an exhaust device. The fixing device automatically clamps and releases the rotor, the exhaust device removes air from the glue, and the exhaust device absorbs and removes irritating gases.
The automatic fixing and loosening of the micro motor rotor is realized, which improves the gluing efficiency; the irritating gas generated during the gluing process is effectively removed, which protects the environment and the health of the operators.
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Figure CN120023074B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of motor production, and in particular to a gluing device for producing micro motors. Background Art
[0002] A motor is an electric motor or engine. Its working principle is that an energized coil rotates in a magnetic field, driving the starter rotor. The small gear on the rotor then rotates the engine flywheel. Micromotors are characterized by their small size, high precision, high torque, and low noise, making them widely used in a variety of electronic and electric products.
[0003] In the prior art, during the production of micromotors, a gluing device is required to apply glue to the rotor surface within the micromotor. This is often done by a drive mechanism driving the rotor to rotate, and a gluing brush applying glue to the rotor surface. While this method eliminates the need for manual gluing and offers high efficiency and effectiveness, it requires the motor to be secured before each application to allow the drive mechanism to drive the rotor. Once gluing is complete, the securing device must be released to remove the rotor, which is cumbersome and inefficient. Furthermore, the gluing device produces a pungent odor while applying glue to the micromotor. This odor evaporates into the air, potentially endangering health and polluting the air. Summary of the Invention
[0004] In view of the deficiencies of the prior art, the present invention solves the technical problems thereof by adopting the following technical solutions: a gluing device for micro-motor production, comprising a housing, an outer surface of the housing fixedly connected to an adsorption box, an inner surface of the housing slidably connected to a fixing rod, an outer surface of the fixing rod slidably connected to a fixture, an outer surface of the fixture fixedly connected to a glue removal device, an inner surface of the housing fixedly connected to an exhaust device, an inner surface of the housing fixedly connected to a motor, an output end of the motor fixedly connected to a fixing disk, an outer surface of the fixing disk fixedly connected to a plurality of fixing devices, and an inner surface of the housing fixedly connected to a connecting rod;
[0005] The fixing device includes a carrying box, the inner surface of the carrying box is rotatably connected to the first chuck, the inner surface of the carrying box is slidably connected to the sliding ring, the outer surface of the sliding ring is fixedly connected to the pull rod, the outer surface of the pull rod is rotatably connected to the guide wheel, the inner surface of the sliding ring is rotatably connected to the second chuck, the outer surface of the second chuck is fixedly connected to the straight rod, the outer surface of the straight rod is slidably connected to the rotating rod, the outer surface of the rotating rod is fixedly connected to the first bevel gear, the outer surface of the connecting rod is fixedly connected to the turntable, the outer surface of the turntable is provided with a special-shaped groove, and the outer surface of the turntable is fixedly connected to the second bevel gear.
[0006] Preferably, the outer surface of the first chuck is rotatably connected to the inner surface of the carrier box, the outer surface of the second chuck is rotatably connected to the inner surface of the sliding ring, the outer surface of the sliding ring is fixedly connected to the outer surface of the pull rod, and the outer surface of the guide wheel is slidably connected to the inner surface of the special-shaped groove. The guide wheel on the pull rod slides within the special-shaped groove. When the guide wheel rotates to the recessed position of the special-shaped groove, the pull rod pulls the sliding ring out of the carrier box, allowing the rotor to be placed in or removed from the carrier box. When the guide wheel rotates out of the recessed position of the special-shaped groove on the turntable, the pull rod pushes the sliding ring into the carrier box, thereby clamping and securing the rotor in the carrier box.
[0007] Preferably, the outer surface of the straight rod is fixedly connected to the outer surface of the second chuck, and the outer surface of the straight rod is slidably connected to the inner surface of the rotating rod, and the outer surface of the first helical gear is meshed with the outer surface of the second helical gear. The meshing of the first and second helical gears causes the rotating rod to rotate on the fixed plate, and the straight rod drives the second chuck to rotate within the sliding ring, thereby rotating the rotor clamped and fixed in the carrier box.
[0008] Preferably, the glue removal device includes a storage barrel, the inner surface of which is slidably connected to an extrusion disc, the inner surface of which is rotatably connected to a scraper assembly, the inner surface of which is fixedly connected to a first screw, the outer surface of which is fixedly connected to a glue discharge hose, the outer surface of which is fixedly connected to a telescopic rod, and the outer surface of which is provided with an exhaust device. The outer surface of the scraper assembly is rotatably connected to the inner surface of the extrusion disc, the inner surface of the scraper assembly is threadedly connected to the outer surface of the first screw, the outer surface of the extrusion disc is slidably connected to the inner surface of the storage barrel, and the end of the telescopic rod away from the extrusion disc is fixedly connected to the outer surface of the holder. During the downward pressure of the extrusion disc, the extrusion disc squeezes the glue in the storage barrel, and the glue is transported out through the glue discharge hose for gluing. The scraper assembly rotatably connected to its inner surface is threadedly connected to the first screw, thereby rotating within the extrusion disc.
[0009] Preferably, the exhaust device includes a vent pipe, the inner surface of which is fixedly connected to a breathable steel layer, the inner surface of which is slidably connected to an exhaust pipe, the outer surface of which is provided with a plurality of exhaust ports, the outer surface of which is fixedly connected to a first spring, the end of the first spring away from the exhaust pipe being fixedly connected to the inner surface of the vent pipe. The breathable steel layer only allows air to flow out, and the air in the glue enters the vent pipe through the breathable steel layer, pushing the vent pipe to slide upward, causing the exhaust ports on the vent pipe to leak out. At this time, the air in the vent pipe is discharged through the exhaust ports, and the first spring pushes the vent pipe to slide back into the vent pipe, so that the exhaust ports are no longer exposed outside the vent pipe, thereby preventing outside air from entering.
[0010] Preferably, the exhaust device includes a flow tube, a filter fixedly connected to the outer surface of the flow tube, a rotating shaft rotatably connected to the inner surface of the flow tube, a reverse air delivery wheel fixedly connected to the outer surface of the rotating shaft, and a centrifugal device fixedly connected to the outer surface of the rotating shaft. The rotating shaft drives the reverse air delivery wheel to rotate, drawing the irritating gas within the housing into the flow tube and transporting it to an adsorption box outside the housing, where the activated carbon in the adsorption box absorbs the generated odor.
[0011] Preferably, the centrifugal device includes a retaining ring, the outer surface of which is fixedly connected to a second screw, the outer surface of which is rotatably connected to a second spring, the outer surface of which is threadedly connected to a slider, and the outer surface of which is fixedly connected to a blade. The inner surface of the retaining ring is fixedly connected to the outer surface of the rotating shaft, the inner surface of the slider is threadedly connected to the outer surface of the second screw, the outer surface of the second spring is rotatably connected to the outer surface of the retaining ring, and the end of the second spring away from the retaining ring is fixedly connected to the outer surface of the slider. The centrifugal device rotates, causing the slider to slide on the outer surface of the second screw, and through the threaded connection between the slider and the second screw, the slider changes the angle of the fixedly connected blade. As the blade rotates in the circulation tube, wind force is further generated, thereby increasing the ventilation effect.
[0012] The beneficial effects of the present invention are as follows:
[0013] When the first and second chucks are engaged, the rotating shaft connected to the first helical gear rotates on the fixed plate, and the second chuck is driven to rotate on the sliding ring, thereby driving the rotor clamped and fixed by the first and second chucks to rotate, thereby coating the outer surface of the rotor in all directions. By using a plurality of fixing devices in cooperation with each other on the fixed plate, the rotor can be automatically locked or loosened, and there is no need to repeatedly fix and loosen the motor rotor when applying glue.
[0014] 2. The present invention is provided with an exhaust device. When the extrusion disk squeezes the glue in the storage barrel, the air in the glue enters the vent pipe through the breathable steel layer. Under the action of air pressure, the exhaust pipe is pushed to slide upward, so that the exhaust port on the exhaust pipe leaks out. At this time, the air in the vent pipe is discharged through the exhaust port. When the air in the storage barrel is exhausted, the exhaust pipe is pushed back into the vent pipe under the action of the first spring, so that the exhaust port is no longer exposed outside the vent pipe, preventing external air from entering and preventing air from being contained in the glue in the storage barrel. The glue mixed with air is transported out through the glue discharge pipe for glue brushing, thereby causing glue breakage during the glue brushing process, affecting the subsequent glue brushing effect.
[0015] 3. The present invention provides an air extraction device, and the rotating shaft drives the reverse air supply wheel to rotate, so as to extract the irritating gas in the shell into the circulation tube and transport it to the adsorption box outside the shell, where the odor is adsorbed by the activated carbon in the adsorption box. In addition, during the rotation of the rotating shaft, the centrifugal device is driven to rotate together, so that the slider slides on the second screw. The slider is threadedly connected to the second screw, and the slider drives the fixedly connected blade to change the angle. As the blade rotates in the circulation tube, wind force is further generated, thereby increasing the ventilation effect. Moreover, the rotating shaft, the reverse air supply wheel and the centrifugal device are on the same rotating shaft. Under the centrifugal force of the centrifugal device, the rotation of the reverse air supply wheel is accelerated, thereby improving the ventilation effect and saving energy.
[0016] 4. The present invention arranges a scraping assembly rotatably connected to the inner surface of the extrusion disk to rotate inside the extrusion disk through a threaded connection with the first screw during the downward movement of the extrusion disk. As the scraping assembly rotates, the glue in the storage barrel is stirred, making it easier to discharge air. The rotation of the scraping assembly can not only scrape off the glue on the outer surface of the breathable steel layer to prevent the breathable steel layer from being blocked by glue and preventing air from entering, but also stir the glue in the storage barrel to prevent it from solidifying. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Figure 1 It is a front view of the present invention;
[0018] Figure 2 is a cross-sectional view of the present invention;
[0019] Figure 3 It is a schematic structural diagram of the binder removal device of the present invention;
[0020] Figure 4 It is a schematic structural diagram of the exhaust device of the present invention;
[0021] Figure 5 It is a schematic diagram of the turntable structure of the present invention;
[0022] Figure 6 It is a schematic structural diagram of the fixing device of the present invention;
[0023] Figure 7 It is a schematic structural diagram of the air extraction device of the present invention;
[0024] Figure 8 It is a schematic structural diagram of the centrifugal device of the present invention.
[0025] In the figure: 1, housing; 2, adsorption box; 3, glue removal device; 301, storage barrel; 302, telescopic rod; 303, extrusion plate; 304, exhaust device; 3041, vent pipe; 3042, breathable steel layer; 3043, first spring; 3044, exhaust pipe; 3045, exhaust port; 305, scraping assembly; 306, first screw; 307, glue removal hose; 4, exhaust device; 401, circulation pipe; 402, rotating shaft; 403, reverse air delivery wheel; 404, filter; 405, centrifugal device; 4 051. Retaining ring; 4052. Second screw; 4053. Second spring; 4054. Slider; 4055. Blade; 5. Motor; 6. Fixed disk; 7. Fixing device; 701. Carrying box; 702. First chuck; 703. Sliding ring; 704. Second chuck; 705. Turning rod; 706. Straight rod; 707. First bevel gear; 708. Pull rod; 709. Guide wheel; 8. Connecting rod; 10. Fixed rod; 11. Turntable; 12. Special-shaped groove; 13. Second bevel gear; 14. Fixer. DETAILED DESCRIPTION
[0026] The present invention will be described in further detail below with reference to the accompanying drawings and specific embodiments. The embodiments of the present invention are provided for purposes of illustration and description and are not intended to be exhaustive or to limit the invention to the disclosed forms. Many modifications and variations will be apparent to those skilled in the art. The embodiments are chosen and described to better illustrate the principles of the invention and its practical application, and to enable those skilled in the art to understand the invention and design various embodiments with various modifications suitable for specific applications.
[0027] Example: See Figure 1 - Figure 8 The present invention provides a technical solution: a gluing device for micro-motor production, comprising a housing 1, an outer surface of the housing 1 fixedly connected to an adsorption box 2, an inner surface of the housing 1 slidably connected to a fixing rod 10, an outer surface of the fixing rod 10 slidably connected to a fixture 14, an outer surface of the fixture 14 fixedly connected to a binder removal device 3, an inner surface of the housing 1 fixedly connected to an exhaust device 4, an inner surface of the housing 1 fixedly connected to a motor 5, an output end of the motor 5 fixedly connected to a fixing disk 6, an outer surface of the fixing disk 6 fixedly connected to a plurality of fixing devices 7, and an inner surface of the housing 1 fixedly connected to a connecting rod 8;
[0028] The fixing device 7 includes a carrying box 701, the inner surface of the carrying box 701 is rotatably connected to the first chuck 702, the inner surface of the carrying box 701 is slidably connected to the sliding ring 703, the outer surface of the sliding ring 703 is fixedly connected to the pull rod 708, the outer surface of the pull rod 708 is rotatably connected to the guide wheel 709, the inner surface of the sliding ring 703 is rotatably connected to the second chuck 704, the outer surface of the second chuck 704 is fixedly connected to the straight rod 706, the outer surface of the straight rod 706 is slidably connected to the rotating rod 705, the outer surface of the rotating rod 705 is fixedly connected to the first bevel gear 707, the outer surface of the connecting rod 8 is fixedly connected to the turntable 11, the outer surface of the turntable 11 is provided with a special-shaped groove 12, and the outer surface of the turntable 11 is fixedly connected to the second bevel gear 13.
[0029] The outer surface of the first chuck 702 is rotatably connected to the inner surface of the carrier box 701, and the outer surface of the second chuck 704 is rotatably connected to the inner surface of the sliding ring 703. The outer surface of the sliding ring 703 is fixedly connected to the outer surface of the pull rod 708, and the outer surface of the guide wheel 709 is slidably connected to the inner surface of the special-shaped groove 12. The guide wheel 709, which is rotatably connected to the pull rod 708, slides on the inner surface of the special-shaped groove 12. When the guide wheel 709 rotates to the recessed position of the special-shaped groove 12 on the turntable 11, the pull rod 708 pulls the fixedly connected sliding ring 703 to move out of the carrier box 701, allowing the rotor to be placed in or removed from the carrier box 701. When the guide wheel 709 rotates out of the recessed position of the special-shaped groove 12, the pull rod 708 pushes the fixedly connected sliding ring 703 to move inward of the carrier box 701, thereby clamping and securing the rotor in the carrier box 701.
[0030] The outer surface of the straight rod 706 is fixedly connected to the outer surface of the second chuck 704. The outer surface of the straight rod 706 is slidably connected to the inner surface of the rotating rod 705. The outer surface of the first bevel gear 707 meshes with the outer surface of the second bevel gear 13. The meshing of the outer surfaces of the first bevel gear 707 and the second bevel gear 13 causes the rotating rod 705 to rotate on the outer surface of the fixed plate 6. The straight rod 706 drives the fixedly connected second chuck 704 to rotate on the inner surface of the sliding ring 703, thereby rotating the rotor clamped and fixed in the carrier 701.
[0031] The glue removal device 3 includes a storage barrel 301, the inner surface of which is slidably connected to a squeeze plate 303, the inner surface of which is rotatably connected to a scraping assembly 305, the inner surface of which is fixedly connected to a first screw 306, the outer surface of which is fixedly connected to a glue removal hose 307, the outer surface of which is fixedly connected to a telescopic rod 302, and the outer surface of which is provided with an exhaust device 304. The outer surface of the scraping assembly 305 is rotatably connected to the inner surface of the squeeze plate 303, the inner surface of the scraping assembly 305 is threadedly connected to the outer surface of the first screw 306, the outer surface of the squeeze plate 303 is slidably connected to the inner surface of the storage barrel 301, and the end of the telescopic rod 302 away from the squeeze plate 303 is fixedly connected to the outer surface of the holder 14. During the downward pressing of the extrusion plate 303, the extrusion plate 303 squeezes the glue in the storage barrel 301, and the glue is transported out through the glue discharge pipe 307 for brushing. The scraping component 305 rotatably connected to its inner surface is connected to the outer surface of the first screw 306 through a threaded connection, thereby rotating on the inner surface of the extrusion plate 303. Through the rotation of the scraping component 305, the glue on the outer surface of the breathable steel layer 3042 can be scraped off to prevent the breathable steel layer 3042 from being blocked so that air cannot enter, and the glue in the storage barrel 301 can be stirred.
[0032] The exhaust device 304 includes a ventilation pipe 3041, the inner surface of which is fixedly connected to a breathable steel layer 3042, the inner surface of which is slidably connected to an exhaust pipe 3044, the outer surface of which is provided with a plurality of exhaust ports 3045, the outer surface of which is fixedly connected to a first spring 3043, and the end of the first spring 3043 away from the exhaust pipe 3044 is fixedly connected to the inner surface of the ventilation pipe 3041. The breathable steel layer 3042 only allows air to flow out. The air in the glue enters the vent pipe 3041 through the breathable steel layer 3042, pushing the exhaust pipe 3044 to slide upward on the inner surface of the vent pipe 3041, causing the exhaust port 3045 opened on the exhaust pipe 3044 to leak out. At this time, the air in the vent pipe 3041 is discharged through the exhaust port 3045. Under the action of the first spring 3043, the fixedly connected exhaust pipe 3044 is pushed to slide back into the vent pipe 3041, so that the exhaust port 3045 is no longer exposed outside the vent pipe 3041, preventing external air from entering.
[0033] The exhaust device 4 includes a flow tube 401, a filter 404 fixedly connected to its outer surface, and a rotating shaft 402 rotatably connected to its inner surface. A reverse airflow wheel 403 is fixedly connected to the outer surface of the rotating shaft 402, and a centrifugal device 405 is fixedly connected to the outer surface of the rotating shaft 402. The rotating shaft 402 rotates the reverse airflow wheel 403, which is fixedly connected to the outer surface of the rotating shaft 402. This draws the irritating gas within the housing 1 into the flow tube 401 and transports it to the adsorption cartridge 2 fixedly connected to the outer surface of the housing 1, where the activated carbon inside the adsorption cartridge 2 absorbs the generated odor.
[0034] Centrifugal device 405 includes a snap ring 4051. A second screw 4052 is fixedly connected to the outer surface of snap ring 4051. A second spring 4053 is rotatably connected to the outer surface of snap ring 4051. A slider 4054 is threadedly connected to the outer surface of second screw 4052. A blade 4055 is fixedly connected to the outer surface of slider 4054. The inner surface of snap ring 4051 is fixedly connected to the outer surface of rotating shaft 402. The inner surface of slider 4054 is threadedly connected to the outer surface of second screw 4052. The outer surface of second spring 4053 is rotatably connected to the outer surface of snap ring 4051. The end of second spring 4053 away from snap ring 4051 is fixedly connected to the outer surface of slider 4054. The centrifugal device 405 rotates, causing the slider 4054 to slide on the outer surface of the second screw 4052, and through the threaded connection between the inner surface of the slider 4054 and the outer surface of the second screw 4052, the slider 4054 changes the angle of the fixedly connected blade 4055. As the blade 4055 rotates in the circulation tube 401, wind force is further generated, thereby increasing the ventilation effect.
[0035] Working principle:
[0036] When in use, the starting motor 5 drives the fixed disk 6 to rotate, and drives the multiple fixing devices 7 on the fixed disk 6 to rotate. When the fixing device 7 rotates, the guide wheel 709 on the pull rod 708 slides in the special-shaped groove 12. When the guide wheel 709 rotates to the recess of the special-shaped groove 12 on the turntable 11, the pull rod 708 pulls the sliding ring 703 and the second chuck 704 rotating on its inner surface to move outward. At this time, the rotor can be put in or taken out from the carrier box 701. When the guide wheel 709 rotates out of the recess of the special-shaped groove 12 on the turntable 11, the pull rod 708 pushes the sliding ring 703 to move again and approach the first chuck 702, so that the rotor in the carrier box 701 is clamped and fixed by the first chuck 702 and the second chuck 704, so that it cannot be loosened.
[0037] As the fixed plate 6 rotates, the first bevel gear 707 and the second bevel gear 13 engage, causing the rotating rod 705 fixedly connected to the first bevel gear 707 to rotate on the fixed plate 6. During the rotation of the rotating rod 705, the second chuck 704 is driven to rotate in the sliding ring 703 via the straight rod 706. The rotation of the second chuck 704 and the rotation of the first chuck 702 in the carrier box 701 drive the rotor clamped and fixed by the first chuck 702 and the second chuck 704 to rotate, thereby coating the outer surface of the rotor in all directions.
[0038] By adjusting the sliding of the fixing rod 10 in the housing 1 and the sliding of the fixture 14 on the fixing rod 10, the position of the glue discharge device 3 on the fixture 14 is adjusted according to the diameter of the rotor, and the telescopic rod 302 on the fixture 14 is started to make the extrusion plate 303 move downward in the storage barrel 301, squeezing the glue inside the storage barrel 301 and discharging it through the glue discharge pipe 307, and coating the outer surface of the rotor rotating in the fixing device 7 with glue. When the squeezing plate 303 moves downward, the glue inside the storage barrel 301 is squeezed and discharged through the exhaust device 304. The air enters the vent pipe 3041 through the breathable steel layer 3042. Under the action of air pressure, the exhaust pipe 3044 is pushed to slide upward in the vent pipe 3041, causing the exhaust port 3045 on the exhaust pipe 3044 to leak out. At this time, the air in the vent pipe 3041 is discharged through the exhaust port 3045. When the air in the storage barrel 301 is exhausted, the exhaust pipe 3044 is pushed to move again under the action of the first spring 3043, so that it slides back into the vent pipe 3041, so that the exhaust port 3045 is no longer exposed outside the vent pipe 3041, thereby preventing external air from entering.
[0039] As the extrusion disc 303 moves downward, the scraping assembly 305 rotatably connected to its inner surface is threadedly connected to the first screw 306, thereby rotating inside the extrusion disc 303. The rotation of the scraping assembly 305 can not only scrape off the glue on the outer surface of the breathable steel layer 3042 to prevent the breathable steel layer 3042 from being blocked and preventing air from entering, but also stir the glue in the storage barrel 301 to prevent it from solidifying.
[0040] During the glue application process, the rotating shaft 402 in the exhaust device 4 is started to rotate, thereby driving the anti-air supply wheel 403 to rotate, and the irritating gas in the shell 1 is sucked into the circulation tube 401, and transported to the adsorption box 2 outside the shell 1, and the odor is adsorbed by the activated carbon in the adsorption box 2. In the process of rotation of the rotating shaft 402, the centrifugal device 405 is driven to rotate together. When the rotating shaft 402 rotates, the slider 4054 slides on the second screw 4052 fixedly connected to the retaining ring 4051, and is threadedly connected to the second screw 4052 through the slider 4054. The slider 4054 changes its angle during the sliding process on the second screw 4052 with the fixedly connected blade 4055. As the centrifugal device 405 rotates, the blade 4055 rotates in the circulation tube 401, further generating wind force and increasing the ventilation effect.
[0041] Obviously, the embodiments described are only some of the embodiments of the present invention, not all of them. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field and related fields without making creative work should fall within the scope of protection of the present invention. Structures, devices, and operating methods not specifically described and explained in the present invention are implemented in accordance with conventional means in the field unless otherwise specified or limited.
Claims
1. A gluing device for micro motor production, comprising a housing (1), characterized in that: The outer surface of the shell (1) is fixedly connected to an adsorption box (2), the inner surface of the shell (1) is slidably connected to a fixing rod (10), the outer surface of the fixing rod (10) is slidably connected to a fixer (14), the outer surface of the fixer (14) is fixedly connected to a debonding device (3), the inner surface of the shell (1) is fixedly connected to an air extraction device (4), the inner surface of the shell (1) is fixedly connected to a motor (5), the output end of the motor (5) is fixedly connected to a fixing disk (6), the outer surface of the fixing disk (6) is fixedly connected to a plurality of fixing devices (7), and the inner surface of the shell (1) is fixedly connected to a connecting rod (8); The fixing device (7) includes a carrier box (701), the inner surface of the carrier box (701) is rotatably connected to a first chuck (702), the inner surface of the carrier box (701) is slidably connected to a sliding ring (703), the outer surface of the sliding ring (703) is fixedly connected to a pull rod (708), the outer surface of the pull rod (708) is rotatably connected to a guide wheel (709), the inner surface of the sliding ring (703) is rotatably connected to a second chuck (704), the outer surface of the second chuck (704) is fixedly connected to a straight rod (706), the outer surface of the straight rod (706) is slidably connected to a rotating rod (705), the outer surface of the rotating rod (705) is fixedly connected to a first bevel gear (707), the outer surface of the connecting rod (8) is fixedly connected to a turntable (11), the outer surface of the turntable (11) is provided with a special-shaped groove (12), and the outer surface of the turntable (11) is fixedly connected to a second bevel gear (13); The outer surface of the first chuck (702) is rotatably connected to the inner surface of the carrier box (701), the outer surface of the second chuck (704) is rotatably connected to the inner surface of the sliding ring (703), the outer surface of the sliding ring (703) is fixedly connected to the outer surface of the pull rod (708), and the outer surface of the guide wheel (709) is slidably connected to the inner surface of the special-shaped groove (12); The outer surface of the straight rod (706) is fixedly connected to the outer surface of the second chuck (704), the outer surface of the straight rod (706) is slidably connected to the inner surface of the rotating rod (705), and the outer surface of the first bevel gear (707) is meshed with the outer surface of the second bevel gear (13).
2. The gluing device for micro motor production according to claim 1, characterized in that: The glue discharge device (3) comprises a material storage barrel (301), the inner surface of the material storage barrel (301) is slidably connected to an extrusion disc (303), the inner surface of the extrusion disc (303) is rotatably connected to a scraping assembly (305), the inner surface of the material storage barrel (301) is fixedly connected to a first screw (306), the outer surface of the material storage barrel (301) is fixedly connected to a glue discharge pipe (307), the outer surface of the extrusion disc (303) is fixedly connected to a telescopic rod (302), and the outer surface of the extrusion disc (303) is provided with an exhaust device (304).
3. The gluing device for micro motor production according to claim 2, characterized in that: The outer surface of the scraping assembly (305) is rotatably connected to the inner surface of the extrusion disk (303), the inner surface of the scraping assembly (305) is threadedly connected to the outer surface of the first screw (306), the outer surface of the extrusion disk (303) is slidably connected to the inner surface of the storage barrel (301), and the end of the telescopic rod (302) away from the extrusion disk (303) is fixedly connected to the outer surface of the fixer (14).
4. The gluing device for micro motor production according to claim 2, characterized in that: The exhaust device (304) comprises a vent pipe (3041), the inner surface of the vent pipe (3041) is fixedly connected to a breathable steel layer (3042), the inner surface of the vent pipe (3041) is slidably connected to an exhaust pipe (3044), the outer surface of the exhaust pipe (3044) is provided with a plurality of exhaust ports (3045), the outer surface of the exhaust pipe (3044) is fixedly connected to a first spring (3043), and one end of the first spring (3043) away from the exhaust pipe (3044) is fixedly connected to the inner surface of the vent pipe (3041).
5. The gluing device for micro motor production according to claim 1, characterized in that: The air extraction device (4) comprises a circulation pipe (401), the outer surface of the circulation pipe (401) is fixedly connected to a filter screen (404), the inner surface of the circulation pipe (401) is rotatably connected to a rotating shaft (402), the outer surface of the rotating shaft (402) is fixedly connected to an anti-air conveying wheel (403), and the outer surface of the rotating shaft (402) is fixedly connected to a centrifugal device (405).
6. The gluing device for micro motor production according to claim 5, characterized in that: The centrifugal device (405) comprises a retaining ring (4051), the outer surface of the retaining ring (4051) is fixedly connected to a second screw (4052), the outer surface of the retaining ring (4051) is rotatably connected to a second spring (4053), the outer surface of the second screw (4052) is threadedly connected to a slider (4054), and the outer surface of the slider (4054) is fixedly connected to a blade (4055).
7. The gluing device for micro motor production according to claim 6, characterized in that: The inner surface of the retaining ring (4051) is fixedly connected to the outer surface of the rotating shaft (402), the inner surface of the slider (4054) is threadedly connected to the outer surface of the second screw (4052), the outer surface of the second spring (4053) is rotatably connected to the outer surface of the retaining ring (4051), and the end of the second spring (4053) away from the retaining ring (4051) is fixedly connected to the outer surface of the slider (4054).
Citation Information
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