A new energy vehicle electronic connector shell processing device

By using a magnetic plate magnetic field to drive the magnetic steel needle in the shell processing device of the electronic connector of new energy vehicles and using water flow to generate eddy currents, the problem of uneven polishing of the shell surface in the prior art is solved, and a more efficient polishing and polishing effect is achieved.

CN115741440BActive Publication Date: 2025-05-23SWOBODA KUNSHAN CO LTD

Patent Information

Application Number
CN202211370375.8
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-11-03
Publication Date
2025-05-23
Estimated Expiration
2042-11-03

AI Technical Summary

Technical Problem

During the polishing and polishing process of the existing new energy vehicle electronic connector shell processing device, the uneven rotation of the magnetic steel needle causes dots on the surface of the shell, which cannot achieve uniform polishing, resulting in waste of resources.

Method used

A new energy vehicle electronic connector housing processing device is designed, using the combination of the first motor case and the second motor case, and the magnetic steel needle is driven to rotate in the barrel through the magnetic plate magnetic field, and the water flow in the barrel is used to generate eddy current, which drives the magnetic steel to uniformly polish the shell surface.

Benefits of technology

It realizes uniform grinding and polishing of the shell surface, reduces the phenomenon that the magnetic steel needle cannot be effectively polished when polishing at the bottom and middle positions, and improves grinding efficiency and quality.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention relates to the technical field of automobile connector shell processing equipment, and discloses a new energy automobile electronic connector shell processing device, including a main console, a top plate is fixedly connected to the top of the main console on one side, a start button is movably connected to the top of the main console, a barrel shell is movably connected to the top of the barrel shell, a top cover is movably connected to the top of the barrel shell, and a plate frame is movably connected to the top of the top cover at the bottom of the handle. The present invention is provided with a first motor box, a barrel shell, and a magnetic steel needle, which is conducive to the operation of the main console so that the magnetic plate magnetic field generates magnetic force on the magnetic steel needle inside the barrel so that the shell is polished inside the barrel. At the same time, the magnetic plate drives the first shaft rod to rotate the barrel on the inner wall of the barrel shell during polishing, so that the water flow inside the barrel generates centrifugal force to generate eddy current phenomenon, which drives the magnetic steel needle to rise and evenly polish the surface of the shell, reducing the grinding of the magnetic steel needle at the bottom and the middle position, and failing to effectively and evenly polish the shell.
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Description

Technical Field

[0001] The present invention relates to the technical field of automotive connector housing processing equipment, and more particularly to a processing device for new energy vehicle electronic connector housings. Background Art

[0002] The processing device for new energy vehicle electronic connector housings is a device used for grinding and polishing after the housing processing is completed. It mainly consists of a main console, a material bucket on the top of the main console, stainless steel needles inside the material barrel, and it is also equipped with a cleaning agent and a brightening agent, and is widely used in the parts processing industry.

[0003] In the use process of the existing processing device for new energy vehicle electronic connector housings, first, the stainless steel needles are put into the material bucket, then clean water is injected, and at the same time, a brightening agent and a cleaning agent are added. Then, the housing to be ground and polished is put in. Then, the staff starts the main console, and the stainless steel needles in the bucket rotate through the magnetic field in the main console and grind and polish the surface of the housing in the water to make the housing bright and remove burrs. After the processing is completed, it is taken out.

[0004] In the use process of the existing processing device for new energy vehicle electronic connector housings, when the stainless steel needles rotate through the magnetic field to grind and polish the housing, the outer surface of the stainless steel needles collides with the housing body, which will cause dots on the surface of the housing body, presenting a situation where the ground and polished products fail and cannot be used, resulting in a waste of resources. When grinding and polishing, most of the stainless steel needles rotate at the bottom and in the center, and cannot evenly grind and polish the surface of the housing body. Also, when grinding and polishing a large number of housings, it is impossible to grind and polish all the housings in place. Summary of the Invention

[0005] In order to overcome the above-mentioned defects of the prior art, the present invention provides a processing device for new energy vehicle electronic connector housings to solve the problems existing in the above-mentioned background art.

[0006] The present invention provides the following technical solution: A processing device for new energy vehicle electronic connector housings, including a main console, a top plate is fixedly connected to one side of the top of the main console, a start button is movably connected to one side of the top plate, a barrel housing is movably connected to the top of the main console, a top cover is movably connected to the top of the barrel housing, a handle is fixedly connected to the top of the top cover, a plate frame is movably connected to the bottom of the handle on the top of the top cover, side frames are movably connected to both sides of the top of the main console, and a barrel frame is movably connected to one side of the side frames.

[0007] Furthermore, the top of the main console is provided with first frame grooves on both sides, the top of the first frame groove is provided with a side frame, the bottom outer surface of the side frame is movably connected to the main console through the inner wall of the first frame groove, the top of the main console is provided with a magnetic plate, the top of the main console is located in the center and movably connected to the first motor box and the first slot plate, the top of the main console is provided with a box groove at the center position, the top of the box groove is provided with a first motor box and a first slot plate, the bottom of the first motor box and the first slot plate are movably connected to the main console through the inner wall of the box groove, the top of the first motor box is movably connected to the first shaft rod, the top of the first slot plate is provided with a plate hole, the bottom of the plate hole is provided with a first shaft rod, a clamping groove is provided on one side of the side frame, a barrel rack is provided on one side of the clamping groove, and the outer surface of one side of the barrel rack is movably connected to the side frame through the inner wall of the clamping groove.

[0008] Furthermore, the inner wall of the barrel shell is movably connected to the material barrel, the top of the material barrel is movably connected to the top cover, a first circular hole is opened in the top of the barrel frame, a barrel groove (121) is opened at the bottom of the material barrel, a first shaft rod and a first groove plate are provided at the bottom of the barrel groove (121), a barrel shell is provided on one side of the first circular hole, the outer surface of the barrel shell is movably connected to the barrel frame through the inner wall of the barrel frame, and the outer surface of the top of the first shaft rod is movably connected to the first groove plate and the material barrel through the plate hole and the inner wall of the barrel groove (121).

[0009] Furthermore, a second frame slot and a second plate slot are provided on the top of the main console, a handle and a plate frame are provided on the top of the second frame slot and the second plate slot, the outer surfaces of the bottom of the handle and the plate frame are movably connected to the top cover through the inner walls of the second frame slot and the second plate slot, the bottom of the plate frame is movably connected to the second motor box, the bottom of the second motor box is movably connected to the main gear, the outer surface of the main gear is movably engaged with the sub-gear at the same level, the bottom of the sub-gear is movably connected to the telescopic device, the bottom of the telescopic device is movably connected to a round rod, and a magnetic steel needle is provided on one side of the round rod.

[0010] Furthermore, a second shaft rod is movably connected to the bottom of the second motor box, and the bottom outer surface of the second shaft rod is movably connected to the main gear. An axial hole is opened at the top of the main gear, and a second shaft rod is arranged on the top of the axial hole. The bottom outer surface of the second shaft rod is movably connected to the main gear through the inner wall of the axial hole. The inner wall of the top cover is movably connected to a circular toothed belt. A second circular hole is opened in the top of the top cover, and a circular toothed belt is arranged on one side of the second circular hole. The outer surface of the circular toothed belt is movably connected to the top cover through the inner wall of the second circular hole. The inner wall of the circular toothed belt is movably connected to a rack, and one side of the rack movably meshes with a sub-gear at the same level.

[0011] Furthermore, a tool groove is formed at the bottom of the auxiliary gear. A telescopic device is provided at the bottom of the tool groove. The outer surface of the top of the telescopic device is movably connected to the auxiliary gear through the inner wall of the tool groove. Rod grooves are formed on both sides at the bottom of the telescopic device. A round rod is provided at the bottom of the rod groove. The outer surface of the top of the round rod is movably connected to the telescopic device through the inner wall of the rod groove. The outer surface of the round rod is movably connected to the housing. Both sides of the magnetic steel needle are movably connected to the outer round head. The water flow state on the outer surface of the housing drives the magnetic steel needle and the outer round head to polish the outer surface of the housing by cutting.

[0012] Furthermore, the inner wall of the outer round head is movably connected to a return spring and an inner round head. One side of the return spring is movably connected to the inner round head. One side of the inner round head is movably connected to the magnetic steel needle. A round groove is formed on one side of the outer round head. A return spring and an inner round head are provided on one side of the round groove. The return spring and the inner round head are movably connected to the outer round head through the inner wall of the round groove on one side. The bottom of the material bucket is movably connected to the magnetic steel needle.

[0013] The technical effects and advantages of the present invention:

[0014] 1. By providing the first motor box, the barrel shell, and the magnetic steel needle, the present invention is beneficial for the magnetic force generated by the magnetic plate magnetic field on the magnetic steel needle inside the material bucket through the work of the main control console, so that the magnetic steel needle polishes the housing inside the material bucket. While polishing, the first shaft rod is driven by the work of the magnetic plate to make the material bucket rotate on the inner wall of the barrel shell, so that the water flow inside the material bucket generates centrifugal force and a vortex phenomenon, driving the magnetic steel needle to rise to evenly polish the surface of the housing, reducing the situation that the magnetic steel needle cannot effectively and comprehensively and evenly polish the housing at the bottom and the middle positions. At the same time, both sides of the magnetic steel needle are outer round heads, and there are round grooves inside them between the inner round heads, preventing the surface from appearing punctiform when grinding and polishing with the housing surface, and the effective polishing between the outer round head and the housing surface can also drive the housing to rotate and polish.

[0015] 2. By providing the second motor box, the main gear, the auxiliary gear, the telescopic device, and the round rod, the present invention is beneficial for driving the second shaft rod to rotate the main gear through the work of the second motor box when processing inside the material bucket, driving the auxiliary gear, the circular tooth belt, and the rack to rotate, making the auxiliary gear around the main gear rotate self - rotatably, driving the bottom telescopic device and the housing to move along the same direction as the vortex inside the magnetic steel needle, but at a slower speed than the first motor box. Therefore, it can effectively further polish the housing comprehensively. After the grinding and polishing process is completed, the telescopic device drives the housing to rise and dry. The staff observes the inside of the housing through the barrel shell and the material bucket. After drying is completed, the handle is pulled to take out the top cover, and then the handle is removed, reducing the damage to the skin of the staff when taking and touching the water with chemical components inside the material bucket by hand after the housing processing is completed. Brief Description of the Drawings

[0016] Figure 1 It is a schematic diagram of the overall structure of the present invention.

[0017] Figure 2 It is a schematic diagram of the overall structure explosion of the present invention.

[0018] Figure 3 It is a schematic diagram of the explosion of the barrel shell structure of the present invention.

[0019] Figure 4 It is a schematic diagram of the overall structure of the top cover of the present invention.

[0020] Figure 5 It is a schematic diagram of the explosion of the circular toothed belt structure of the present invention.

[0021] Figure 6 It is a schematic diagram of the explosion of the structure of the telescopic device of the present invention.

[0022] Figure 7 It is a schematic diagram of the cross-sectional structure of the shell and the magnetic steel needle of the present invention.

[0023] Figure 8 It is a schematic diagram of the explosion of the round head structure of the present invention.

[0024] Fig. 9 It is a schematic diagram of the bottom structure of the material barrel of the present invention.

[0025] The reference numerals are: 1, main console; 101, first rack slot; 102, box slot; 2, top plate; 3, side frame; 301, clamping slot; 4, start button; 5, barrel rack; 501, first round hole; 6, barrel shell; 7, top cover; 701, second rack slot; 702, second plate slot; 703, second round hole; 8, handle; 9, plate rack; 10, magnetic plate; 11, first motor box; 111, first shaft rod; 112, first slot plate; 1 13. Plate hole; 12. Material barrel; 121. Barrel groove; 13. Second motor box; 131. Second shaft rod; 132. Shaft hole; 14. Main gear; 15. Sub gear; 151. Telescopic device; 152. Round rod; 153. Device groove; 154. Rod groove; 16. Magnetic steel needle; 161. External round head; 162. Round groove; 163. Return spring; 164. Internal round head; 17. Circular toothed belt; 171. Rack; 18. Housing. DETAILED DESCRIPTION

[0026] The technical solution of the present invention will be clearly and completely described below in conjunction with the drawings in the present invention. In addition, the forms of the various structures recorded in the following embodiments are only examples. The new energy vehicle electronic connector housing processing device involved in the present invention is not limited to the various structures recorded in the following embodiments. All other embodiments obtained by ordinary technicians in this field without making creative work belong to the scope of protection of the present invention.

[0027] Reference Figure 1The present invention provides a new energy vehicle electronic connector shell processing device, including a main console 1, the top of the main console 1 is located on one side and is fixedly connected to a top plate 2, one side of the top plate 2 is movably connected to a start button 4, the top of the main console 1 is movably connected to a barrel shell 6, the top of the barrel shell 6 is movably connected to a top cover 7, the top of the top cover 7 is fixedly connected to a handle 8, the top of the top cover 7 is movably connected to a plate frame 9 at the bottom of the handle 8, the top of the main console 1 is movably connected to side frames 3 on both sides, and one side of the side frame 3 is movably connected to a barrel frame 5.

[0028] Reference Figure 2 The top of the main console 1 is provided with first frame slots 101 on both sides, the top of the first frame slot 101 is provided with side frames 3, the bottom outer surface of the side frames 3 is movably connected to the main console 1 through the inner wall of the first frame slot 101, the top of the main console 1 is provided with a magnetic plate 10, the top of the main console 1 is located in the center and movably connected to the first motor box 11 and the first slot plate 112, the top of the main console 1 is provided with a box slot 102 at the center, the top of the box slot 102 is provided with the first motor box 11 and the first The slot plate 112, the first motor box 11 and the bottom of the first slot plate 112 are movably connected to the main console 1 through the inner wall of the box slot 102, the top of the first motor box 11 is movably connected to the first shaft rod 111, the top of the first slot plate 112 is provided with a plate hole 113, the bottom of the plate hole 113 is provided with the first shaft rod 111, one side of the side frame 3 is provided with a clamping groove 301, one side of the clamping groove 301 is provided with a barrel rack 5, and the outer surface of one side of the barrel rack 5 is movably connected to the side frame 3 through the inner wall of the clamping groove 301.

[0029] Reference Figure 3 and Figure 2 The inner wall of the barrel shell 6 is movably connected to the material barrel 12, and the top of the material barrel 12 is movably connected to the top cover 7. A first circular hole 501 is opened in the top of the barrel frame 5, and a barrel groove 121 is opened at the bottom of the material barrel 12. A first shaft rod 111 and a first groove plate 112 are provided at the bottom of the barrel groove 121. A barrel shell 6 is provided on one side of the first circular hole 501. The outer surface of the barrel shell 6 is movably connected to the barrel frame 5 through the inner wall of the barrel frame 5. The outer surface of the top of the first shaft rod 111 is movably connected to the first groove plate 112 and the material barrel 12 through the plate hole 113 and the inner wall of the barrel groove 121.

[0030] Reference Figure 4A second frame slot 701 and a second plate slot 702 are provided on the top of the main console 1. A handle 8 and a plate frame 9 are provided on the top of the second frame slot 701 and the second plate slot 702. The outer surfaces of the bottom of the handle 8 and the plate frame 9 are movably connected to the top cover 7 through the inner walls of the second frame slot 701 and the second plate slot 702. The bottom of the plate frame 9 is movably connected to the second motor box 13. The bottom of the second motor box 13 is movably connected to the main gear 14. The outer surface of the main gear 14 is movably engaged with the sub-gear 15 at the same level. The bottom of the sub-gear 15 is movably connected to the telescopic device 151. The bottom of the telescopic device 151 is movably connected to the round rod 152. A magnetic steel needle 16 is provided on one side of the round rod 152.

[0031] Reference Figure 5 The bottom of the second motor box 13 is movably connected with a second shaft rod 131, and the bottom outer surface of the second shaft rod 131 is movably connected to the main gear 14. The top of the main gear 14 is provided with a shaft hole 132, and the top of the shaft hole 132 is provided with a second shaft rod 131. The bottom outer surface of the second shaft rod 131 is movably connected to the main gear 14 through the inner wall of the shaft hole 132. The inner wall of the top cover 7 is movably connected to the circular toothed belt 17. A second circular hole 703 is provided in the top of the top cover 7, and a circular toothed belt 17 is provided on one side of the second circular hole 703. The outer surface of the circular toothed belt 17 is movably connected to the top cover 7 through the inner wall of the second circular hole 703. The inner wall of the circular toothed belt 17 is movably connected to the rack 171, and one side of the rack 171 movably meshes with the sub-gear 15 at the same level.

[0032] In this embodiment, it should be specifically explained that the second shaft 131 of the working transmission of the second motor box 13 drives the main gear 14 to rotate, and at the same time drives the sub-gear 15 and the circular toothed belt 17 to rotate, so that the sub-gear 15 rotates and drives the bottom telescopic device 151 and the shell 18 to rotate, so that a vortex is formed in the water flow and the magnetic steel needle 16 to rise and drive the magnetic steel needle 16 and the outer surface of the shell 18 to be fully and evenly polished, thereby reducing the magnetic steel needle 16 only being polished in the middle of the bottom and unable to evenly polish the surface of the shell 18.

[0033] Reference Figure 6-7 A device groove 153 is provided at the bottom of the sub-gear 15, and a telescopic device 151 is provided at the bottom of the device groove 153. The outer surface of the top of the telescopic device 151 is movably connected to the sub-gear 15 through the inner wall of the device groove 153. Rod grooves 154 are provided on both sides of the bottom of the telescopic device 151. A round rod 152 is provided at the bottom of the rod groove 154. The outer surface of the top of the round rod 152 is movably connected to the telescopic device 151 through the inner wall of the rod groove 154. The outer surface of the round rod 152 is movably connected to the shell 18. Both sides of the magnetic steel needle 16 are movably connected to the outer round head 161. The water flow state on the outer surface of the shell 18 drives the magnetic steel needle 16 and the outer round head 161 to grind the outer surface of the shell 18.

[0034] In this embodiment, it should be specifically explained that the shell 18 is driven to rise and dry through the extension and contraction of the telescopic device 151. The staff observes the inner shell 18 through the barrel shell 6 and the material barrel 12. After the shell 18 is dried, the handle 8 is pulled to bring out the top cover 7 and then the handle 8 is removed to reduce the possibility of the staff touching the chemical components in the material barrel 12 by hand after the shell 18 is processed, which will damage their skin.

[0035] Reference Figure 8-9 The inner wall of the outer round head 161 is movably connected to the return spring 163 and the inner round head 164, one side of the return spring 163 is movably connected to the inner round head 164, one side of the inner round head 164 is movably connected to the magnetic steel needle 16, a circular groove 162 is provided on one side of the outer round head 161, and a return spring 163 and the inner round head 164 are provided on one side of the circular groove 162. One side of the return spring 163 and the inner round head 164 are movably connected to the outer round head 161 through the inner wall of the circular groove 162, and the bottom of the barrel 12 is movably connected to the magnetic steel needle 16.

[0036] In this embodiment, it should be specifically explained that the outer round heads 161 on both sides of the magnetic steel needle 16 grind the surface of the shell 18 inside the barrel 12 to reduce the surface dot phenomenon that causes the shell 18 to be damaged and unusable. When the outer round head 161 grinds the surface of the shell 18, it will be buffered by the inner wall return spring 163 and there will be a small water flow barrier to prevent the outer round head 161 from colliding with the outer surface of the shell 18 and damaging it. At the same time, the grinding area is increased by the shape of the outer round head 161 and when it is polished with the shell 18 to form a cross-section, it will drive the shell 18 to rotate for further comprehensive grinding.

[0037] Working principle of the present invention:

[0038] S1. When using the new energy vehicle electronic connector shell processing device, the staff first pulls the handle 8 to remove the top cover 7 from the barrel shell 6 and the top of the barrel 12, then removes the round rod 152 from the rod groove 154, and places the shell 18 to be processed on the surface of the round rod 152. After the round rod 152 is placed through the rod groove 154 and clamped to the bottom of the telescopic device 151, the magnetic steel needle 16 and water, brightener, and cleaning agent are placed inside the barrel 12, and then the handle 8 is pulled to drive the top cover 7 to be placed on the top of the barrel 12 and the barrel shell 6. Press the start button 4 to start the main console 1 so that the magnetic field of the magnetic plate 10 is applied to the magnetic steel inside the barrel 12. The needle 16 generates magnetic force to grind and polish the shell 18 inside the barrel 12. When processing inside the barrel 12, the second motor box 13 works to drive the second shaft 131 to rotate the main gear 14, driving the sub-gear 15 and the circular toothed belt 17 and the rack 171 to rotate the sub-gear 15 located around the main gear 14 to rotate and drive the bottom telescopic device 151 and the shell 18 along the eddy current direction of the water magnetic steel needle 16, but the rotation speed is slower than that of the first motor box 11, so the shell 18 can be further effectively polished. While polishing, the first motor box 11 works to drive the second shaft 131 every three seconds. An axle 111 makes the barrel 12 rotate on the inner wall of the barrel shell 6, so that the water flow inside the barrel 12 generates centrifugal force and eddy current phenomenon, which drives the magnetic steel needle 16 and the water flow to rise, and evenly grinds the surface of the shell 18, reducing the grinding of the magnetic steel needle 16 at the bottom and the middle position. It is impossible to effectively and evenly grind the shell 18. At the same time, both sides of the magnetic steel needle 16 are outer round heads 161, and the inner circular groove 162 is located between the inner round heads 164 to prevent the collision with the surface of the shell 18 during grinding and polishing, so that the surface appears dotted. After the outer round head 161 and the surface of the shell 18 are effectively polished, the shell 18 can also be driven to rotate and polish, forming a barrel 1 2 The internal eddy current quickly grinds the surface of the shell 18, and the secondary gear 15 drives the shell 18 to rotate slowly and fully and carefully grind and polish. After the grinding and polishing process is completed, the shell 18 is driven to rise and dry through the telescopic device 151. The staff observes the internal shell 18 through the barrel shell 6 and the barrel 12. After the shell 18 is dried, the handle 8 is pulled to bring out the top cover 7 and then the handle 8 is removed to reduce the staff from touching the inside of the barrel 12 with hands after the shell 18 is processed, which may damage the skin. When the barrel 12 is located on the inner wall of the barrel shell 6 and rotates quickly, the barrel rack 5 and the side frames 3 on both sides of the barrel rack 5 are fixed to prevent safety problems.

[0039] Finally, a few points should be explained: First, in the description of this application, it should be noted that, unless otherwise specified and limited, the terms "installed", "connected", and "connected" should be understood in a broad sense, which may refer to mechanical connection or electrical connection, or internal communication between two components, or direct connection. "upper", "lower", "left", "right", etc. are only used to indicate relative positional relationships. When the absolute position of the object being described changes, the relative positional relationship may change;

[0040] Secondly: In the drawings of the embodiments disclosed in the present invention, only the structures related to the embodiments disclosed in the present invention are involved, and other structures can refer to the general design. In the absence of conflict, the same embodiment and different embodiments of the present invention can be combined with each other;

[0041] Finally: The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principles of the present invention should be included in the protection scope of the present invention.

Claims

1. A new energy vehicle electronic connector housing processing device, comprising a main console (1), Features: The top of the main console (1) is fixedly connected to a top plate (2) on one side, a start button (4) is movably connected to one side of the top plate (2), the top of the main console (1) is movably connected to a barrel shell (6), the top of the barrel shell (6) is movably connected to a top cover (7), the top of the top cover (7) is fixedly connected to a handle (8), the top of the top cover (7) is movably connected to a plate frame (9) at the bottom of the handle (8), the top of the main console (1) is movably connected to side frames (3) on both sides, and one side of the side frame (3) is movably connected to the barrel frame (5); The top of the main console (1) is provided with a second frame slot (701) and a second plate slot (702); the top of the second frame slot (701) and the second plate slot (702) are provided with a handle (8) and a plate rack (9); the outer surfaces of the bottom of the handle (8) and the plate rack (9) are movably connected to the top cover (7) through the inner walls of the second frame slot (701) and the second plate slot (702); the bottom of the plate rack (9) is movably connected to the second motor box (13); the bottom of the second motor box (13) is movably connected to the main gear (14); the outer surface of the main gear (14) is movably engaged with the secondary gear (15) at the same level; the bottom of the secondary gear (15) is movably connected to the telescopic device (151); the bottom of the telescopic device (151) is movably connected to the round rod (152); a magnetic steel needle (16) is provided on one side of the round rod (152); The bottom of the second motor box (13) is movably connected to a second shaft (131), the outer surface of the bottom of the second shaft (131) is movably connected to the main gear (14), the top of the main gear (14) is provided with a shaft hole (132), the top of the shaft hole (132) is provided with a second shaft (131), the outer surface of the bottom of the second shaft (131) is movably connected to the main gear (14) through the inner wall of the shaft hole (132), the inner wall of the top cover (7) is movably connected to a circular toothed belt (17), a second circular hole (703) is provided in the top of the top cover (7), a circular toothed belt (17) is provided on one side of the second circular hole (703), the outer surface of the circular toothed belt (17) is movably connected to the top cover (7) through the inner wall of the second circular hole (703), the inner wall of the circular toothed belt (17) is movably connected to a rack (171), and one side of the rack (171) is horizontally movably engaged with the secondary gear (15); A device groove (153) is provided at the bottom of the secondary gear (15), a telescopic device (151) is provided at the bottom of the device groove (153), the top outer surface of the telescopic device (151) is movably connected to the secondary gear (155) through the inner wall of the device groove (153), the bottom of the telescopic device (151) is provided with rod grooves (154) on both sides, the bottom of the rod groove (154) is provided with a round rod (152), the top outer surface of the round rod (152) is movably connected to the telescopic device (151) through the inner wall of the rod groove (154), the outer surface of the round rod (152) is movably connected to the housing (18), both sides of the magnetic steel needle (16) are movably connected to the outer round head (161), and the water flow state on the outer surface of the housing (18) drives the magnetic steel needle (16) and the outer round head (161) to cut and grind the outer surface of the housing (18).

2. A new energy vehicle electronic connector housing processing device according to claim 1, Features: The top of the main console (1) is provided with first frame grooves (101) on both sides, the top of the first frame groove (101) is provided with side frames (3), the bottom outer surface of the side frames (3) is movably connected to the main console (1) through the inner wall of the first frame groove (101), the top of the main console (1) is provided with a magnetic plate (10), the top of the main console (1) is movably connected to a first motor box (11) and a first slot plate (112) at the center, the top of the main console (1) is provided with a box groove (102) at the center, the top of the box groove (102) is provided with a first motor box (11) and a first slot plate (112) 112), the first motor box (11) and the bottom of the first slot plate (112) are movably connected to the main console (1) through the inner wall of the box slot (102), the top of the first motor box (11) is movably connected to the first shaft rod (111), the top of the first slot plate (112) is provided with a plate hole (113), the bottom of the plate hole (113) is provided with the first shaft rod (111), one side of the side frame (3) is provided with a clamping groove (301), one side of the clamping groove (301) is provided with a barrel frame (5), and the outer surface of one side of the barrel frame (5) is movably connected to the side frame (3) through the inner wall of the clamping groove (301).

3. A new energy vehicle electronic connector housing processing device according to claim 1, Features: The inner wall of the barrel shell (6) is movably connected to the barrel (12), the top of the barrel (12) is movably connected to the top cover (7), a first circular hole (501) is provided in the top of the barrel frame (5), a barrel groove (121) is provided at the bottom of the barrel (12), a first shaft rod (111) and a first groove plate (112) are provided at the bottom of the barrel groove (121), a barrel shell (6) is provided on one side of the first circular hole (501), the outer surface of the barrel shell (6) is movably connected to the barrel frame (5) through the inner wall of the barrel frame (5), and the outer surface of the top of the first shaft rod (111) is movably connected to the first groove plate (112) and the barrel (12) through the plate hole (113) and the inner wall of the barrel groove (121).

4. A new energy vehicle electronic connector housing processing device according to claim 3, Features: The inner wall of the outer round head (161) is movably connected to a return spring (163) and an inner round head (164); one side of the return spring (163) is movably connected to the inner round head (164); one side of the inner round head (164) is movably connected to a magnetic steel needle (16); a circular groove (162) is provided on one side of the outer round head (161); a return spring (163) and an inner round head (164) are provided on one side of the circular groove (162); one side of the return spring (163) and the inner round head (164) are movably connected to the outer round head (161) through the inner wall of the circular groove (162); and the bottom of the material barrel (12) is movably connected to the magnetic steel needle (16).

Citation Information

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