Lithium battery gasket cleaning machine
By designing an inclined cleaning frame, a circulating filtration system, and a transmission clamping structure for the lithium battery pad cleaning machine, the problems of low cleaning efficiency and impurity residue in existing technologies have been solved, achieving a high-efficiency and low-cost cleaning effect.
Patent Information
- Application Number
- CN202511393471.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-28
- Publication Date
- 2025-11-07
- Estimated Expiration
- 2045-09-28
AI Technical Summary
Existing lithium battery pad cleaning machines have low cleaning efficiency and residual impurities in the cleaning solution affect the cleaning quality and increase cleaning costs.
A lithium battery pad cleaning machine was designed, which adopts an inclined cleaning frame, a circulation structure and a filtration system, combined with a transmission and clamping structure to realize the recycling of cleaning fluid and the filtration of impurities, and improves cleaning efficiency through the transmission and rotation structures.
It improves cleaning efficiency, reduces cleaning costs, ensures cleaning quality, and allows all parts of the gasket to fully contact the cleaning solution, resulting in a more thorough cleaning.
Smart Images

Figure CN120901023A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of lithium battery gasket, in particular to a lithium battery gasket cleaning machine. BACKGROUND
[0002] The lithium battery gasket is a key component used in the battery assembly process, mainly used for separating positive and negative materials, preventing short circuit, and ensuring the safety and stability of the battery; the lithium battery needs to use the gasket in the production process, and the surface of the used gasket is covered with ceramic powder and other small impurities, so the gasket needs to be cleaned before being used again; In the prior art, the lithium battery gasket cleaning machine generally puts the lithium battery gaskets to be cleaned into a box containing cleaning liquid through a feeding structure, and performs immersion cleaning by immersing the gaskets in the cleaning liquid in the cleaning box; However, during actual cleaning, the gaskets are immersed in the cleaning liquid in the cleaning box, which not only has low cleaning efficiency, but also causes the ceramic powder and other small impurities after cleaning to remain in the cleaning liquid, thereby reducing the cleaning quality of the next gasket, and in order to ensure the cleaning quality, the cleaning liquid needs to be replaced, which increases the cleaning cost, and therefore, there is room for improvement. SUMMARY
[0003] In order to solve the problems in the background art, the present application provides a lithium battery gasket cleaning machine.
[0004] The lithium battery gasket cleaning machine provided by the present application adopts the following technical scheme: A lithium battery gasket cleaning machine, comprising a cleaning frame and a support, wherein the cleaning frame is supported on the support, a U-shaped frame is installed on the upper middle part of the front and rear sides of the cleaning frame, two through plates are penetrated through the U-shaped frame, a transmission structure is arranged between the two through plates, a U-shaped frame is installed on each side of the two through plates away from each other, a mounting frame is tightly installed on the lower side of one side of each U-shaped frame through bolts, and a placing structure is arranged on the mounting frame. The inner wall of the cleaning frame is inclined, a liquid storage tank is installed on the middle part of the right side of the cleaning frame, a plurality of liquid inlet holes are formed on the right inner wall of the cleaning frame, the liquid inlet holes are communicated with the liquid storage tank, a liquid discharge port is formed on the two corners of the lower left inner wall of the cleaning frame, a fixed pipe is communicated with the liquid discharge port on the left outer surface of the cleaning frame, a fixed cylinder is communicated with the bottom end of the fixed pipe, and a circulation structure is arranged between the fixed cylinder and the liquid storage tank. The circulation structure comprises a lower liquid pipe connected to the middle of the fixed cylinder, the bottom end of the lower liquid pipe is communicated with a bottom cylinder, the bottom end of the bottom cylinder is screwed with a bottom cover, a liquid pumping pump is installed on the bottom cylinder, a filter structure is arranged in the bottom cylinder, the liquid outlet end of the liquid pumping pump is connected with an L-shaped pipe, the bottom end of the L-shaped pipe is communicated with a circulation pipe, and one end of the circulation pipe is communicated with a liquid storage tank.
[0005] Preferably, the filter structure comprises an inner pipe connected to the bottom cylinder, the inner pipe is communicated with the liquid inlet end of the liquid pumping pump, and an end sleeve is installed at the other end of the inner pipe.
[0006] Preferably, the transmission structure comprises an intermediate groove formed in the middle of the upper surface of the U-shaped frame, the intermediate groove is rotatably connected with a rotating shaft between the front and rear groove walls, a gear is fixedly sleeved on the intermediate portion of the rotating shaft, two penetrating plates are distributed on the two sides of the gear, a penetrating groove is formed in the U-shaped frame for the penetrating plate to pass through, the penetrating groove is communicated with the intermediate groove, a transmission strip is arranged at the middle of the side of each of the two penetrating plates, the transmission strip is provided with gear teeth which are meshed with the gear, protrusions are arranged at the front and rear sides of the upper surface of one of the two penetrating plates, a gas cylinder is installed on the upper surface of the U-shaped frame and below the protrusions, and the top end of the output shaft of the gas cylinder is connected with the protrusions.
[0007] Preferably, the placing structure comprises a fixed plate fixedly installed on the mounting frame, a second through groove is formed in the middle of the fixed plate, a rotating plate is arranged in the second through groove through a rotating structure, a first through groove is formed in the middle of the rotating plate, a first clamping structure is arranged at the upper and lower sides of the first through groove, and a second clamping structure is arranged at the front and rear sides of the first through groove.
[0008] Preferably, the first clamping structure comprises grooves formed at the upper and lower sides of the two sides of the rotating plate, the grooves are communicated with the first through groove, guide grooves are formed in the groove walls of the grooves, moving blocks are slidably arranged in the guide grooves, a connecting strip is connected to each of the moving blocks, and a first clamping block is arranged at one end of each of the two connecting strips.
[0009] Preferably, the second clamping structure comprises two third through grooves formed in the rotating plate, the two third through grooves are respectively located at the two sides of the first through groove, a penetrating pipe is movably arranged in the middle of the inner wall of the first through groove, a second clamping block is installed at the end of the penetrating pipe inserted into the first through groove, and a first driving structure is arranged between the side inner wall of the third through groove and the moving block.
[0010] Preferably, the first driving structure comprises a mounting cylinder mounted at the middle of the side wall of the third through groove, a motor telescopic rod is mounted in the mounting cylinder, the output shaft of the motor telescopic rod penetrates through one end of the mounting cylinder and is provided with the second driving structure, the end block is connected with the driving rod, two connecting blocks are connected on each moving block, the driving plate is arranged on the connecting block, the first driving groove is arranged on the driving plate, the second driving groove is arranged on the driving plate and communicates with one end of the first driving groove, and one end of the driving rod is movably inserted into the first driving groove.
[0011] Preferably, the second driving structure comprises an insertion rod connected to the end block, the insertion rod is movably inserted into the penetrating pipe, a spring is sleeved on the insertion rod, and the two ends of the spring are connected to the end block and the penetrating pipe respectively.
[0012] Preferably, the rotating structure comprises a rotating rod connected to the middle of the front and rear sides of the rotating plate, the two rotating rods are rotatably penetrated through the fixed plate, a motor box is mounted at the middle of one side of the fixed plate, and the motor output shaft is connected to one of the rotating rods.
[0013] In summary, the present application has the following beneficial technical effects: 1、The present application has the following beneficial technical effects: 2、The present application has the following beneficial technical effects: 3. The first clamping structure, the second clamping structure, the first driving structure and the second driving structure are arranged, under the action of the first driving structure and the second driving structure, the first clamping structure and the second clamping structure can be switched flexibly to clamp different positions on the gasket in the cleaning process, so that each position on the gasket can be fully contacted with the cleaning liquid, and the problem that some positions on the gasket are shielded and the cleaning is not thorough is avoided. BRIEF DESCRIPTION OF DRAWINGS
[0014] Figure 1 is a structure schematic view of a lithium battery gasket cleaning machine in the embodiment of the present application; Figure 2 is a structure schematic view of a circulating structure on the cleaning frame in the embodiment of the present application; Figure 3 is a structure schematic view of the inside of the bottom cylinder in the embodiment of the present application; Figure 4 is a structure schematic view of the inside wall at the liquid inlet hole side of the cleaning frame in the embodiment of the present application; Figure 5 is a structure schematic view of the inside wall at the liquid outlet hole side of the cleaning frame in the embodiment of the present application; Figure 6 is a structure schematic view of the U-shaped frame in the embodiment of the present application; Figure 7 is an enlarged view of the structure at A of Figure 6 in the embodiment of the present application; Figure 8 is a structure schematic view of the fixed plate in the embodiment of the present application; Figure 9 is an enlarged view of the structure at B of Figure 8 in the embodiment of the present application; Figure 10 is an enlarged view of the structure at C of Figure 8 in the embodiment of the present application.
[0015] Explanation of reference signs: 1, cleaning frame; 2, support; 3, liquid storage tank; 4, liquid inlet hole; 5, liquid outlet; 6, through plate; 7, U-shaped frame; 8, mounting frame; 9, fixed tube; 10, fixed cylinder; 11, liquid down pipe; 12, bottom cylinder; 13, bottom cover; 14, liquid pump; 15, L-shaped pipe; 16, circulation pipe; 17, inner pipe; 18, end sleeve; 19, filter screen; 20, air cylinder; 21, through groove; 22, protruding block; 23, middle groove; 24, gear; 25, transmission bar; 26, fixed plate; 27, rotating plate; 28, first through groove; 29, recess; 30, moving block; 31, guide groove; 32, connecting bar; 33, first clamping block; 34, rotating rod; 35, motor box; 36, second through groove; 37, third through groove; 38, through pipe; 39, second clamping block; 40, mounting cylinder; 41, driving rod; 42, end block; 43, first driving groove; 44, second driving groove; 45, driving plate; 46, connecting block; 47, insertion rod; 48, spring; 49, U-shaped frame. DETAILED DESCRIPTION
[0016] The following will be described in detail below Figures 1-10 The present application will be further described in detail.
[0017] Reference Figures 1-10 The lithium battery gasket cleaning machine disclosed by the embodiment of the present application comprises a cleaning frame 1 and a support 2, the cleaning frame 1 is supported on the support 2 at the bottom, a U-shaped frame 49 is mounted on the middle part of the upper surface of the front and rear sides of the cleaning frame 1, two through plates 6 are penetrated through the U-shaped frame 49, a transmission structure is arranged between the two through plates 6, and a U-shaped frame 7 is mounted on each of the sides of the two through plates 6 away from each other. The inner wall of the cleaning frame 1 is inclined, a liquid storage tank 3 is mounted on the middle part of the right side of the cleaning frame 1, a plurality of liquid inlet holes 4 are formed on the right inner wall of the cleaning frame 1, the liquid inlet holes 4 are communicated with the liquid storage tank 3, liquid outlet ports 5 are formed on the two corners of the lower part of the left inner wall of the cleaning frame 1, a fixed tube 9 is communicated with the liquid outlet ports 5 on the outer surface of the left side of the cleaning frame 1, a fixed cylinder 10 is communicated with the bottom end of the fixed tube 9, and a circulation structure is arranged between the fixed cylinder 10 and the liquid storage tank 3. The circulation structure comprises a liquid down pipe 11 connected to the middle part of the fixed cylinder 10, the bottom end of the liquid down pipe 11 is communicated with a bottom cylinder 12, the bottom end of the bottom cylinder 12 is screwed and fastened with a bottom cover 13, a liquid pump 14 is mounted on the bottom cylinder 12, a filter structure is arranged in the bottom cylinder 12, an L-shaped pipe 15 is connected to the liquid outlet end of the liquid pump 14, the bottom end of the L-shaped pipe 15 is communicated with a circulation pipe 16, and one end of the circulation pipe 16 is communicated with the liquid storage tank 3. The filtering structure comprises an inner tube 17 connected to the bottom cylinder 12, the inner tube 17 being communicated with the liquid suction pump 14, the other end of the inner tube 17 being provided with an end sleeve 18, and the end sleeve 18 being provided with a filter screen 19. After the gaskets are put into the cleaning frame 1, the liquid suction pump 14 is started to suck the cleaning liquid in the cleaning frame 1 into the bottom cylinder 12 through the fixed tube 9 and the liquid outlet tube 11, and the filtered cleaning liquid is sent into the liquid storage tank 3 through the L-shaped tube 15 and the circulating tube 16, and then is introduced into the cleaning frame 1 through the liquid inlet hole 4. Thus, the gaskets are cleaned by the flowing cleaning liquid in the cleaning frame 1, the impurities on the gaskets are better removed, the recycling function of the cleaning liquid is realized, the cleaning cost is reduced, and the gaskets are cleaned more cleanly.
[0018] Referring to Figure 1 、 Figure 6 and Figure 7 , the transmission structure comprises a middle groove 23 formed in the middle of the upper surface of the U-shaped frame 49, a rotating shaft being rotatably connected between the groove walls on the front and back sides of the middle groove 23, a gear 24 being fixedly sleeved on the middle part of the rotating shaft, two penetrating plates 6 being distributed on the two sides of the gear 24, a penetrating groove 21 being formed in the U-shaped frame 49 and penetrating the penetrating plates 6, the penetrating groove 21 being communicated with the middle groove 23, a transmission bar 25 being arranged on the middle part of the side surface of each of the two penetrating plates 6, and the transmission bar 25 being provided with gear teeth which are engaged with the gear 24. The upper surface of one of the two penetrating plates 6 is provided with a protrusion 22 on the front and back sides thereof, the upper surface of the U-shaped frame 49 is provided with a pneumatic cylinder 20 below the protrusion 22, and the top end of the output shaft of the pneumatic cylinder 20 is connected with the protrusion 22. The placing structure comprises a fixed plate 26 fixedly installed on the mounting frame 8, a second through groove 36 being formed in the middle part of the fixed plate 26, a rotating plate 27 being arranged in the second through groove 36 through a rotating structure, a first through groove 28 being formed in the middle part of the rotating plate 27, a first clamping structure being arranged on the upper and lower sides in the first through groove 28, and a second clamping structure being arranged on the front and back sides in the first through groove 28. When one of the two penetrating plates 6 is moved on the U-shaped frame 49 by the pneumatic cylinder 20, the other penetrating plate 6 is synchronously moved in the opposite direction on the U-shaped frame 49 by the gear 24 and the transmission bar 25. Thus, when one of the cleaned gaskets is moved upward from the cleaning frame 1, the other gasket is simultaneously moved downward into the cleaning frame 1. Thus, the cleaning work can be continuously carried out in the cleaning frame 1 while the cleaned gasket is taken out, the working time is fully utilized, and the working efficiency is greatly improved.
[0019] Referring to Figures 8-10The first clamping structure comprises grooves 29 opened on the upper and lower sides of the two side faces of the rotating plate 27, the grooves 29 being communicated with the first through slot 28, a guide slot 31 being opened on the groove wall of the groove 29, a moving block 30 being slidably arranged in the guide slot 31, a connecting strip 32 being connected to each moving block 30, and a first clamping block 33 being arranged at one end of each group of two connecting strips 32; The second clamping structure comprises two third through slots 37 opened on the rotating plate 27, the two third through slots 37 being respectively located on the two sides of the first through slot 28, a penetrating pipe 38 being movably arranged in the middle of the inner wall of the first through slot 28, the penetrating pipe 38 being inserted into the first through slot 28 and having a second clamping block 39 mounted at one end thereof, and a first driving structure being arranged between the inner wall of the third through slot 37 and the moving block 30; The first driving structure comprises a mounting cylinder 40 mounted in the middle of the groove wall of the third through slot 37, an electric telescopic rod being mounted in the mounting cylinder 40, an output shaft of the electric telescopic rod being arranged outside the mounting cylinder 40 and having a second driving structure 42 arranged at one end thereof, a driving rod 41 being connected to the end block 42, two connecting blocks 46 being connected to each moving block 30, a driving plate 45 being arranged on the connecting block 46, a first driving slot 43 being opened on the driving plate 45, a second driving slot 44 being opened on the driving plate 45 and being communicated with one end of the first driving slot 43, and the driving rod 41 being movably inserted into the first driving slot 43 at one end thereof; The second driving structure comprises an insertion rod 47 connected to the end block 42, the insertion rod 47 being movably inserted into the penetrating pipe 38, a spring 48 being sleeved on the insertion rod 47, and the spring 48 being connected to the end block 42 and the penetrating pipe 38 at two ends thereof; The rotating structure comprises rotating rods 34 connected in the middle of the front and back sides of the rotating plate 27, both of which rotate through the fixed plate 26, and a motor box 35 is installed in the middle of one side of the fixed plate 26, and the output shaft of the motor in the motor box 35 is connected with one of the rotating rods 34. After the gasket is placed on the lower one of the first clamping blocks 33 in the first through slot 28, the electric telescopic rod in the installation cylinder 40 is started, the end block 42 is moved towards the side close to the gasket, at the same time, the end block 42 drives the one end of the driving rod 41 to slide in the first driving slot 43, and the one end of the driving rod 41 extrudes the slot wall of the first driving slot 43, so as to pull the two first clamping blocks 33 to move towards each other, so as to clamp the gasket on the two first clamping blocks 33, and the gasket is clamped and tightened. During the cleaning process of the gasket in the cleaning frame 1, the electric telescopic rod in the installation cylinder 40 can be continuously started, the second clamping block 39 is tightly attached to the gasket, and with the continuous movement of the end block 42, the end block 42 drives the insertion rod 47 to move in the through pipe 38, the spring 48 is compressed, so that the second clamping block 39 clamps and fixes the gasket, and the end block 42 drives the driving rod 41 to slide into the second driving slot 44, and the one end of the driving rod 41 extrudes the slot wall of the second driving slot 44, so as to drive the two first clamping blocks 33 to move in the opposite direction and reset. In this way, during the cleaning process, the clamping work of the first clamping block 33 and the second clamping block 39 on the gasket can be flexibly switched, the gasket can be better exposed in the cleaning liquid, the positions on the gasket can be cleaned, the gasket can be cleaned more thoroughly, and at the same time, the motor in the motor box 35 can be started to drive the rotating rod 34, the rotating plate 27 and the gasket to rotate as a whole, and the rotating cleaning work is carried out.
[0020] The implementation principle of the lithium battery gasket cleaning machine is as follows: first, the gasket to be cleaned is moved to the first through slot 28 of the upper rotating plate 27, and the gasket is placed into the corresponding first clamping block 33; then, the electric telescopic rod in the mounting cylinder 40 is started, the end block 42 is moved towards the side close to the gasket, at the same time, the end block 42 drives the one end of the driving rod 41 to slide in the first driving slot 43, the one end of the driving rod 41 extrudes the slot wall of the first driving slot 43, and the two first clamping blocks 33 are pulled to move towards each other, so that the gasket is clamped on the two first clamping blocks 33, and the gasket is clamped; then, the cylinder 20 is started to drive the corresponding through plate 6 to move up and down on the U-shaped frame 49, and the cleaning gasket is put into the cleaning frame 1, at the same time, the other through plate 6 takes out the cleaned gasket from the cleaning frame 1; during cleaning, the liquid pump 14 is started, the cleaning liquid in the cleaning frame 1 is pumped into the bottom cylinder 12 through the fixed pipe 9 and the liquid outlet pipe 11, and after being filtered by the filter screen 19 in the end sleeve 18, the filtered cleaning liquid is sent to the liquid storage tank 3 through the L-shaped pipe 15 and the circulating pipe 16, and then is introduced into the cleaning frame 1 through the liquid inlet hole 4, so that the gasket is cleaned by the flowing cleaning liquid in the cleaning frame 1; during the cleaning process, the electric telescopic rod in the mounting cylinder 40 can also be continuously started, the second clamping block 39 is tightly attached to the gasket, and with the continuous movement of the end block 42, the end block 42 drives the insertion rod 47 to move in the through pipe 38, extrudes the spring 48 to compress, so that the second clamping block 39 clamps and fixes the gasket, and the end block 42 drives the driving rod 41 to slide into the second driving slot 44, the one end of the driving rod 41 extrudes the slot wall of the second driving slot 44, and the two first clamping blocks 33 are pushed to move in the opposite direction to reset, so that the clamping of the gasket by the first clamping block 33 and the second clamping block 39 is flexibly switched during the cleaning process, and at the same time, the motor in the motor box 35 can also be started to drive the rotating rod 34, the rotating plate 27 and the gasket to rotate as a whole, so that the gasket is better exposed for cleaning, the cleaning of the gasket is more thorough, and the cleaning efficiency is higher.
[0021] The above are preferred embodiments of the present application, which do not limit the protection scope of the present application, therefore: any equivalent changes made on the structure, shape, principle of the present application should be covered within the protection scope of the present application.
Claims
1. A lithium battery gasket cleaning machine comprising a cleaning frame (1) and a support (2), characterized in that: The cleaning frame (1) is supported below the support (2), U-shaped frames (49) are installed on the middle of the front and rear sides of the cleaning frame (1), two through plates (6) are penetrated through the U-shaped frames (49), a transmission structure is arranged between the two through plates (6), U-shaped frames (7) are installed on the sides away from each other of the two through plates (6), a frame (8) is tightly installed on the side of each U-shaped frame (7) below, and a placing structure is arranged on the frame (8). The inner wall of the cleaning frame (1) is inclined, a liquid storage tank (3) is installed on the middle of the right side of the cleaning frame (1), a plurality of liquid inlet holes (4) are formed in the right inner wall of the cleaning frame (1), the liquid inlet holes (4) are communicated with the liquid storage tank (3), liquid outlet holes (5) are formed in the two corners of the lower left inner wall of the cleaning frame (1), a fixed pipe (9) is communicated with the liquid outlet holes (5) on the left outer side of the cleaning frame (1), a fixed cylinder (10) is communicated with the bottom end of the fixed pipe (9), and a circulation structure is arranged between the fixed cylinder (10) and the liquid storage tank (3). The circulation structure comprises a liquid outlet pipe (11) connected to the middle of the fixed cylinder (10), the bottom end of the liquid outlet pipe (11) is communicated with a bottom cylinder (12), the bottom end of the bottom cylinder (12) is tightly screwed with a bottom cover (13), a liquid pumping pump (14) is installed on the bottom cylinder (12), a filter structure is arranged in the bottom cylinder (12), the liquid pumping pump (14) is connected with an L-shaped pipe (15) at the liquid outlet end, the bottom end of the L-shaped pipe (15) is communicated with a circulation pipe (16), and one end of the circulation pipe (16) is communicated with the liquid storage tank (3).
2. The lithium battery gasket cleaning machine of claim 1, wherein: The filter structure comprises an inner pipe (17) connected to the bottom cylinder (12), the inner pipe (17) is communicated with the liquid inlet end of the liquid pumping pump (14), and an end sleeve (18) is installed at the other end of the inner pipe (17).
3. The lithium battery gasket cleaning machine of claim 1, wherein: The transmission structure comprises a middle groove (23) formed in the middle of the upper surface of the U-shaped frame (49), a rotating shaft is rotatably connected between the front and rear groove walls of the middle groove (23), a gear (24) is fixedly sleeved on the middle of the rotating shaft, the two through plates (6) are arranged on the two sides of the gear (24), a through groove (21) is formed in the U-shaped frame (49) for the through plates (6) to penetrate, the through groove (21) is communicated with the middle groove (23), a transmission bar (25) is arranged on the middle of the side close to each other of the two through plates (6), the transmission bar (25) is provided with gear teeth meshed with the gear (24), protrusions (22) are arranged on the front and rear sides of one of the through plates (6), a gas cylinder (20) is installed on the upper surface of the U-shaped frame (49) and below the protrusions (22), and the output shaft top end of the gas cylinder (20) is connected with the protrusions (22).
4. The lithium battery gasket cleaning machine of claim 1, wherein: The placing structure includes a fixed plate (26) fixedly installed on the mounting frame (8), a second through groove (36) is formed in the middle of the fixed plate (26), a rotating plate (27) is arranged in the second through groove (36) through a rotating structure, a first through groove (28) is formed in the middle of the rotating plate (27), a first clamping structure is arranged on the upper and lower sides of the first through groove (28), and a second clamping structure is arranged on the front and rear sides of the first through groove (28).
5. The lithium battery gasket cleaning machine of claim 4, wherein: The first clamping structure includes grooves (29) formed on the upper and lower sides of the two side surfaces of the rotating plate (27), the grooves (29) are communicated with the first through groove (28), guide grooves (31) are formed in the groove walls of the grooves (29), moving blocks (30) are slidably arranged in the guide grooves (31), each moving block (30) is connected with a connecting strip (32), and each group of two connecting strips (32) is provided with a first clamping block (33) at one end.
6. The lithium battery gasket cleaning machine of claim 5, wherein: The second clamping structure includes two third through grooves (37) formed on the rotating plate (27), the two third through grooves (37) are respectively located on the two sides of the first through groove (28), a penetrating pipe (38) is movably arranged in the middle of the inner walls of the front and rear sides of the first through groove (28), the penetrating pipe (38) is inserted into the first through groove (28) and is provided with a second clamping block (39) at one end, and a first driving structure is arranged between the inner wall of one side of the third through groove (37) and the moving block (30).
7. The lithium battery gasket cleaning machine of claim 6, wherein: The first driving structure includes a mounting cylinder (40) mounted in the middle of the groove wall of one side of the third through groove (37), an electric telescopic rod is mounted in the mounting cylinder (40), the output shaft of the electric telescopic rod penetrates out of the mounting cylinder (40) and is provided with a second driving structure (42) at one end, the end block (42) is connected with a driving rod (41), each moving block (30) is connected with two connecting blocks (46), the connecting blocks (46) are provided with a driving plate (45), the driving plate (45) is provided with a first driving groove (43), the driving plate (45) is provided with a second driving groove (44) communicated with one end of the first driving groove (43), and one end of the driving rod (41) is movably inserted into the first driving groove (43).
8. The lithium battery gasket cleaning machine of claim 7, wherein: The second driving structure includes an insertion rod (47) connected to the end block (42), the insertion rod (47) is movably inserted into the penetrating pipe (38), a spring (48) is sleeved on the insertion rod (47), and the two ends of the spring (48) are connected to the end block (42) and the penetrating pipe (38) respectively.
9. The lithium battery gasket cleaning machine of claim 4, wherein: The rotating structure includes rotating rods (34) connected to the middle of the front and rear side surfaces of the rotating plate (27), the two rotating rods (34) are rotatably arranged to penetrate out of the fixed plate (26), a motor box (35) is mounted in the middle of one side surface of the fixed plate (26), and one end of the motor output shaft in the motor box (35) is connected to one of the rotating rods (34).
Citation Information
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