Conductive sponge processing table with automatic cleaning function
By designing deep cleaning mechanisms and non-diffusion mechanisms on the conductive sponge processing table, the problems of low deep cleaning efficiency and high energy consumption in the prior art are solved, and efficient automated cleaning and avoiding secondary pollution are achieved.
Patent Information
- Application Number
- CN202510546615.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-28
- Publication Date
- 2025-06-27
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
The existing automatic cleaning conductive sponge processing table is ineffective in deep cleaning and takes a long time.
A conductive sponge processing table including a deep cleaning mechanism and a non-diffusion mechanism is designed. The deep cleaning mechanism vibrates and blows the dust particles through shakers and dust blowers, and the anti-diffusion mechanism avoids secondary dust pollution through structures such as grey-dip plates and clamped columns.
It effectively improves cleaning efficiency, solves the problem of poor performance of traditional scanning or vacuuming methods in deep cleaning, significantly reduces energy consumption, and avoids secondary dust pollution.
Smart Images

Figure CN120205545A_ABST
Abstract
Description
Technical Field
[0001] The invention belongs to the technical field of conductive sponge processing, and specifically relates to a conductive sponge processing table with an automatic cleaning function. Background Art
[0002] In order to provide a stable working platform to support processing operations such as cutting, stamping, and forming, ensure the dimensional accuracy and shape consistency of the conductive sponge, and timely clean up the debris and dust generated during the processing to prevent pollutants from affecting the conductive performance or product quality of the sponge, a conductive sponge processing table with an automatic cleaning function is required.
[0003] However, the existing automatic cleaning type conductive sponge processing tables still have drawbacks in actual use: when cleaning after processing, the conductive sponges on the surface of the processing table will generate sponge debris with different sizes. Among them, the larger particle debris is easy to remove. However, since the surface of the processing table usually uses a non-slip material, this material is prone to adsorbing fine dust particles, resulting in poor deep cleaning effect and long time consumption for traditional sweeping or vacuuming methods. Therefore, it is necessary to improve the existing cleaning methods. Summary of the Invention
[0004] To solve the problem that the traditional sweeping or vacuuming methods have poor deep cleaning effect and long time consumption as mentioned in the above background art, the invention provides a conductive sponge processing table with an automatic cleaning function.
[0005] To achieve the above object, the invention provides the following technical solution: A conductive sponge processing table with an automatic cleaning function, including a platform, a support frame is rotatably connected to the middle of the platform, and further includes:
[0006] A deep cleaning mechanism, the deep cleaning mechanism is arranged on both sides of the platform;
[0007] An anti-diffusion mechanism, the anti-diffusion mechanism is jointly arranged on the platform and the deep cleaning mechanism;
[0008] Among them, the deep cleaning mechanism respectively includes a shaking member and a dust blowing member;
[0009] The dust blowing member includes an inclined seat airbag, the inclined seat airbag is located below the platform, the inclined seat airbag is inclined at a specific angle relative to the support frame, and a rigid cover top is arranged at the upper end of the inclined seat airbag.
[0010] Preferably, the shaking member includes sliders fixedly connected to the four corners of the platform, the outer ends of the sliders are slidably connected to arc groove plates, the outer walls of the arc groove plates are fixedly connected with mounting frames, and the mounting frames are installed on both sides of the platform.
[0011] Preferably, a servo motor is fixedly connected to the middle of one side of the mounting frame. The output end of the servo motor is fixedly connected to a chute rod. A rotating plate is adjustably installed in the chute of the chute rod. The rotating shaft of the rotating plate is fixedly connected to the chute rod through a bolt, and loosening the bolt can adjust the position of the rotating shaft of the rotating plate in the chute of the chute rod. The rotating plate is connected to a telescopic socket through a ball shaft. A vertical chute plate for guiding is fixedly connected to the middle of the mounting frame, and the vertical chute plate is slidably sleeved on the middle of the ball shaft.
[0012] Preferably, the platform is elastically connected to the support frame through a return spring.
[0013] Preferably, a telescopic rod is rotatably connected to the bottom of each of the pair of sliders. The pair of telescopic rods movably penetrate through the bottom of the arc chute plate, and the telescopic rods are adapted to the arc set by the arc chute plate. The inclination angle of the inclined seat airbag is consistent with the orientation of the bottom of the telescopic rod.
[0014] Preferably, a push plate is fixedly connected to the bottom of each of the pair of telescopic rods and is located inside the inclined seat airbag. The bottom of each of the pair of push plates is fixedly connected to the mounting frame. A plurality of leaf doors are slidably abutted against the outer wall of the push plate. The tops of the leaf doors are rotatably connected to the rigid cover top of the inclined seat airbag. A plurality of ventilation holes are equidistantly formed in the upper end of the inclined seat airbag around the circumference. The number and position of the leaf doors are set to be consistent with the ventilation holes.
[0015] Preferably, a plurality of jet nozzles are equidistantly arranged on one side of the platform near the inclined seat airbag. The plurality of jet nozzles are communicated with the inclined seat airbag. A long funnel is fixedly connected to the side of the platform away from the servo motor. A dust collection box is arranged below the long funnel, and the dust collection box is located in the middle of the outer sides of the pair of arc chute plates.
[0016] Preferably, the anti-diffusion mechanism includes a rack bar. There are a pair of rack bars. The bottoms of the pair of rack bars are rotatably connected to the corners of the platform. Gears are meshed with the outer walls of the rack bars. A reciprocating lead screw is fixedly connected to the center of each of the pair of gears.
[0017] Preferably, a moving block is threadedly connected to the outer wall of each of the pair of reciprocating lead screws. A dust-catching plate is rotatably connected to the top of each of the pair of moving blocks. A limiting block is fixedly connected to the corner of the top of each moving block.
[0018] Preferably, a plurality of clamping columns are symmetrically fixedly connected to both sides of one dust-catching plate, and a plurality of slot holes are symmetrically formed in both sides of the other dust-catching plate. The two dust-catching plates are clamped and arranged through the clamping columns on the side close to each other.
[0019] Compared with the prior art, the beneficial effects of the present invention are as follows:
[0020] Through the cooperation of structures such as a chute rod, a rotating plate, and a telescopic socket, the present invention facilitates the vibration of dust particles on the surface and embedded inside the platform, facilitating subsequent processing. Under the limiting effect of the vertical chute plate and the telescopic property of the telescopic socket, the platform makes a reciprocating shaking motion around the axis. And under the cooperation of the rotating shaft of the rotating plate and the bolt, the effective length of the chute rod is changed, so that the shaking amplitude of the platform is changed, and it is adaptively adjusted according to the amount and embedded depth of dust particles on the platform surface, effectively improving the cleaning efficiency and solving the problems that the traditional sweeping or vacuuming methods have poor effects in deep cleaning and take a long time.
[0021] Through the cooperation of structures such as an inclined seat airbag and a telescopic rod, the present invention achieves cleaning effects of different degrees. When the platform makes a reciprocating shake along the axis, the telescopic rod moves towards the inclined seat airbag and closes the air vent hole through a push pressure plate, forcing the gas inside the inclined seat airbag to be ejected from the jet nozzle through the connecting pipe. At the same time, combined with the design of the long strip funnel and the dust collection box, the platform realizes the functions of blowing air on one side and collecting dust on one side. In addition, the shaking amplitude of the platform is adjustable, so that the air outlet pressure of the jet nozzle can also be adjusted accordingly, thus adapting to cleaning requirements of different degrees, not only realizing efficient automatic cleaning, but also significantly reducing the energy consumption of traditional high-pressure air flow cleaning.
[0022] Through the cooperation of structures such as a dust adhering plate, a clamping column, and a limiting block, the present invention avoids the problem of secondary dust pollution. Specifically, a pair of dust adhering plates are clamped and locked through the clamping column. At the same time, the limiting block limits the rotation direction of the dust adhering plate, so that the moving block can move axially under the limiting effect of the dust adhering plate, and can efficiently adhere and capture the fine particles floating after the platform shakes, thus avoiding the problem of secondary pollution caused by dust raising during the cleaning process, thereby improving the product quality and the cleanliness of the working environment. Brief Description of the Drawings
[0023] Figure 1 is a schematic top-plan structure diagram of the present invention;
[0024] Figure 2 is a schematic three-dimensional structure diagram of the present invention;
[0025] Figure 3 is a schematic diagram of the structural cooperation relationship between the vertical chute plate and the mounting bracket of the present invention;
[0026] Figure 4 is a schematic diagram of the structural cooperation relationship between the slider and the telescopic rod of the present invention;
[0027] Figure 5 is the present invention Figure 4 partial enlarged structural schematic diagram at A in;
[0028] Figure 6Schematic diagram of the structural cooperation relationship between the chute rod and the rotating plate of the present invention( Figure 1 );
[0029] Figure 7 Schematic diagram of the structural cooperation relationship between the chute rod and the rotating plate of the present invention( Figure 2 );
[0030] Figure 8 Schematic diagram of the structural cooperation relationship between the long funnel and the platform of the present invention;
[0031] Figure 9 Schematic diagram of the structural cooperation relationship between the reciprocating lead screw and the gear of the present invention;
[0032] Figure 10 Schematic diagram of the structural cooperation relationship between the moving block and the reciprocating lead screw of the present invention;
[0033] Figure 11 Schematic diagram of the structural cooperation relationship between the limit stop block and the moving block of the present invention.
[0034] In the figure:
[0035] 1. Platform; 2. Support frame; 3. Deep cleaning mechanism; 31. Shaking part; 311. Servo motor; 312. Arc groove plate; 313. Slide block; 314. Return spring; 315. Mounting frame; 316. Chute rod; 317. Rotating plate; 318. Vertical groove plate; 319. Telescopic socket; 32. Dust blowing part; 321. Inclined seat airbag; 322. Vent hole; 323. Long funnel; 324. Dust collection box; 325. Jet nozzle; 326. Push plate; 327. Telescopic rod; 328. Leaf door; 4. Anti-diffusion mechanism; 41. Rack bar; 42. Reciprocating lead screw; 43. Dust-sticking plate; 44. Moving block; 45. Gear; 46. Clamping post; 47. Limit stop block. Detailed implementation manners
[0036] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.
[0037] As Figures 1 to 11 shown, the present invention provides a conductive sponge processing table with an automatic cleaning function, including a platform 1, a support frame 2 is rotatably connected to the middle of the platform 1, and further includes:
[0038] A deep cleaning mechanism 3 is provided on both sides of the platform 1;
[0039] The anti-diffusion mechanism 4 is provided on the platform 1 and the deep cleaning mechanism 3 together with the anti-diffusion mechanism 4;
[0040] Among them, the deep cleaning mechanism 3 respectively includes a shaking member 31 and a dust blowing member 32;
[0041] The dust blowing member 32 includes an inclined seat airbag 321. The inclined seat airbag 321 is located below the platform 1. The inclined seat airbag 321 is inclined at a specific angle relative to the support frame 2, and a rigid cover top is configured at the upper end of the inclined seat airbag 321.
[0042] Adopting the above solution: The rigid cover top of the inclined seat airbag 321 facilitates the extrusion of its body, and is not easily blocked by the wrinkled airbag, accelerating the speed of reset suction. A shaft plate is convexly provided in the middle of the support frame 2 for supporting and limiting the platform 1 to ensure the effectiveness of its reciprocating shaking along the axis. The inclined seat airbag 321 is inclined at a specific angle relative to the support frame 2.
[0043] Such as Figure 2 shown, the shaking member 31 includes sliders 313 fixed at the four corners of the platform 1. The outer ends of the sliders 313 are slidably connected with arc groove plates 312. The outer walls of the arc groove plates 312 are fixedly connected with mounting frames 315. The mounting frames 315 are installed on both sides of the platform 1.
[0044] Such as Figure 3 、 Figure 6 and Figure 7 shown, a servo motor 311 is fixedly connected to the middle of one side mounting frame 315. The output end of the servo motor 311 is fixedly connected with a chute rod 316. A rotating plate 317 is adjustably installed in the chute of the chute rod 316. The rotating shaft of the rotating plate 317 is fixedly connected to the chute rod 316 through a bolt, and loosening the bolt can make the rotating shaft of the rotating plate 317 adjust its position in the chute of the chute rod 316. The rotating plate 317 is connected with a telescopic socket 319 through a ball shaft. A vertical chute plate 318 for guiding is fixedly connected to the middle of the mounting frame 315. The vertical chute plate 318 is slidably sleeved on the middle of the ball shaft; the platform 1 is elastically connected to the support frame 2 through a return spring 314.
[0045] Adopting the above solution: The rotating plate 317 is rotatably connected to the chute rod 316 through a rotating rod, and is fixedly limited to the chute rod 316 through a bolt. Loosening the bolt can make the rotating rod of the rotating plate 317 adjust its position in the chute of the chute rod 316, so as to change the rotation range of the rotating plate 317, realize the adjustment of the up and down reciprocating movement range of the telescopic socket 319, thereby changing the shaking amplitude of the platform 1 and changing the cleaning strength. The return spring 314 can play an auxiliary supporting role for the platform 1.
[0046] Such as Figure 4As shown in the figure, a pair of telescopic rods 327 are rotatably connected to the bottom of the pair of sliders 313. The pair of telescopic rods 327 movably penetrate through the bottom of the arc groove plate 312, and the telescopic rods 327 are adapted to the radian set by the arc groove plate 312. The inclination angle of the inclined seat airbag 321 is the same as the orientation of the bottom of the telescopic rod 327.
[0047] As Figures 2 to 5 As shown in the figure, a pair of push plates 326 are fixedly connected to the bottom of the pair of telescopic rods 327 and are located inside the inclined seat airbag 321. The bottoms of the pair of push plates 326 are fixedly connected to the mounting frame 315. The outer walls of the push plates 326 are slidably abutted against a plurality of leaf doors 328. The tops of the leaf doors 328 are rotatably connected to the rigid cover top of the inclined seat airbag 321. A plurality of ventilation holes 322 are equally spaced around the upper ends of the inclined seat airbag 321. The number and position of the leaf doors 328 are set to be consistent with those of the ventilation holes 322; a plurality of jet nozzles 325 are equally spaced on one side of the top of the platform 1 close to the inclined seat airbag 321. The plurality of jet nozzles 325 communicate with the inclined seat airbag 321. A long funnel 323 is fixedly connected to one side of the top of the platform 1 away from the servo motor 311. A dust collection box 324 is arranged below the long funnel 323. The dust collection box 324 is located in the middle of the outer sides of the pair of arc groove plates 312.
[0048] Adopting the above scheme: The area of the leaf door 328 is set to be larger than the opening area of the ventilation hole 322 to completely close the ventilation hole 322. The plurality of jet nozzles 325 are commonly fixedly connected to a ventilation pipeline, and the ventilation pipeline communicates with the pair of inclined seat airbags 321, which is beneficial to the uniformity of the jetting of the jet nozzles 325. The rotating plate 317 is composed of an inner sleeve rod and an outer sleeve pipe and is used to adapt to the length adaptation of the telescopic rod 327 when the platform 1 swings upward above the arc groove plate 312. A baffle is fixedly connected to the side of the lower end of the telescopic rod 327 close to the inclined seat airbag 321 and is used to keep the leaf door 328 in a closed state after the push plate 326 presses down to reach the position of the leaf door 328. The telescopic rod 327 is limited by the baffle. At this time, when the telescopic rod 327 continues to move toward the inclined seat airbag 321, the telescopic rod 327 will squeeze the body of the inclined seat airbag 321, compress the gas inside it and lead it to the jet nozzle 325. The cooperation of the push plate 326 and the baffle effectively solves the problem of air leakage of the airbag when the inclined seat airbag 321 is compressed.
[0049] As Figures 6 to 11As shown in the figure, the anti-diffusion mechanism 4 includes a rack bar 41. There are a pair of rack bars 41. The bottoms of the pair of rack bars 41 are rotatably connected to the corners of the platform 1. The outer walls of the rack bars 41 are meshed with gears 45. A reciprocating lead screw 42 is fixedly connected to the center of each of the pair of gears 45. A moving block 44 is threadedly connected to the outer walls of the pair of reciprocating lead screws 42. A dust-removing plate 43 is rotatably connected to the top of each of the pair of moving blocks 44. A limiting block 47 is fixedly connected to the top corner of each moving block 44. A plurality of clamping columns 46 are symmetrically and fixedly connected to both sides of one dust-removing plate 43. A plurality of slot holes are symmetrically formed on both sides of the other dust-removing plate 43. The pair of dust-removing plates 43 are clamped and arranged on the side close to each other through the clamping columns 46.
[0050] Adopting the above solution: The outer side of the gear 45 is connected by a bearing with a limiting sleeve sleeved on the outside of the rack bar 41 and used for limiting the rack bar 41 to keep the meshing between the rack bar 41 and the gear 45 stable. Balance blocks are fixedly connected to the sides of the pair of dust-removing plates 43 away from each other for assisting the stable movement of the dust-removing plates 43. The rotation direction of the dust-removing plate 43 is limited by the setting of the limiting block 47. Cooperating with the setting of the clamping column 46, when the two dust-removing plates 43 are clamped, a horizontal locking state is formed, which is convenient for moving and adhering to the floating dust shaken up by the platform 1 in the air. When the dust-removing plates 43 are not in use, the clamping of the clamping column 46 is released, and the dust-removing plates 43 are rotated to a state parallel to the reciprocating lead screw 42, without hindering various processes of the conductive sponge on the platform 1. A suitable dust-removing sticker can be attached to the surface of the dust-removing plate 43 for repeated use. The specific heights of the reciprocating lead screw 42 and the dust-removing plate 43 can be adjusted according to the actual situation.
[0051] The working principle and usage process of the present invention:
[0052] First, when the conductive sponge on the surface of the platform 1 is processed, for the cleaning of the dust particles generated during the processing of the conductive sponge, the servo motor 311 can be started first to drive the chute rod 316 to rotate. The chute rod 316 can synchronously drive the rotating plate 317. Then, under the limiting action of the vertical chute plate 318, the rotating plate 317 can drive the telescopic socket 319 to continuously move up and down reciprocally through the ball shaft. Furthermore, due to the telescopic property of the telescopic socket 319, the side of the platform 1 moves reciprocally continuously with the telescopic socket 319. And the middle part of the platform 1 is rotatably connected to the support frame 2. Therefore, the platform 1 makes a reciprocating shaking motion around the axis, so as to vibrate the dust particles on its surface, which is convenient for the next-step collection. And with the cooperation of the rotating shaft and the bolt of the rotating plate 317, the rotating plate 317 can move and adjust its position in the chute rod 316, and change the effective length of the chute rod 316. At this time, when the chute rod 316 rotates to drive the rotating plate 317, it can change the up-and-down movement range of the ball shaft in the vertical chute plate 318, so as to change the shaking amplitude of the platform 1. The position of the bolt can be adjusted adaptively according to the amount and embedding depth of the dust particles on the surface of the platform 1.
[0053] Secondly, when the platform 1 reciprocates and shakes around the axis, the slider 313 can also slide back and forth continuously in the groove of the arc groove plate 312. Whenever the slider 313 moves toward the direction of the inclined seat airbag 321, the telescopic rod 327 can be moved toward the direction of the inclined seat airbag 321. Through the cooperation of the baffle plate at the lower end of the telescopic rod 327 and the push plate 326, the telescopic rod 327 first enters the inner cavity of the inclined seat airbag 321 and moves a distance. The leaf door 328 is abutted by the push plate 326 to close the vent 322. Then, under the limit of the baffle plate, the telescopic rod 327 compresses the inclined seat airbag 321 as a whole, and the internal gas of the inclined seat airbag 321 enters the air nozzle 325 through the connecting pipe and is ejected, so that the dust particles shaken up on the surface of the platform 1 are blown toward The long funnel 323 is blown, and then the telescopic rod 327 moves in the opposite direction, driving the push plate 326 to release the closure of the leaf door 328. At this time, the outside air can enter the inner cavity of the inclined seat airbag 321 from the vent hole 322. Under the influence of air pressure, the leaf door 328 rotates to open the vent hole 322 until the interior of the inclined seat airbag 321 is fully inflated. This reciprocating process can continuously blow the dust particles shaken out of the surface of the platform 1 to the long funnel 323, and finally guide them to the dust collection box 324 for collection. Since the shaking amplitude of the platform 1 can be adjusted, the pressure of squeezing the inclined seat airbag 321 each time also changes, so that the outlet pressure of the air nozzle 325 can also be adjusted, so as to achieve different degrees of cleaning effect, effectively avoiding the energy consumption of traditional high-pressure airflow cleaning;
[0054] Finally, during the reciprocating shaking process of the platform 1, the rack rod 41 can also be driven to reciprocate up and down in the limit sleeve, so that the meshing gear 45 rotates accordingly, and the reciprocating screw 42 located at the center of the gear 45 can rotate accordingly. Since a pair of dust plates 43 are locked by the clamping column 46, and the limit block 47 limits the turning of the dust plates 43, the moving block 44, which is threadedly connected to the outer wall of the reciprocating screw 42, can move axially under the limitation of the dust plates 43, drive the dust plates 43 to translate above the platform 1, and adhere and capture fine particles that may float after the platform 1 shakes, so as to avoid secondary dust pollution. When not in use, the clamping column 46 can be released to rotate the dust plates 43 toward the reciprocating screw 42 to facilitate the normal operation of the platform 1.
[0055] It should be noted that in this text, relational terms such as first and second are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the terms "comprising", "including" or any other variant thereof are intended to cover non-exclusive inclusion, so that a process, method, article or device comprising a series of elements not only includes those elements, but also includes other elements not expressly listed, or also includes elements inherent to such process, method, article or device.
[0056] Although the embodiments of the present invention have been shown and described, it will be understood by those of ordinary skill in the art that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principles and spirit of the present invention, and the scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. A conductive sponge processing table with automatic cleaning function, comprising a platform (1), wherein the middle part of the platform (1) is rotatably connected to a support frame (2), characterized in that: Also includes: A deep cleaning mechanism (3), wherein both sides of the platform (1) are provided with a deep cleaning mechanism (3); An anti-diffusion mechanism (4), wherein the platform (1) and the deep cleaning mechanism (3) are provided with an anti-diffusion mechanism (4); Wherein, the deep cleaning mechanism (3) comprises a shaking part (31) and a dust blowing part (32); The dust blowing member (32) comprises an inclined seat airbag (321), the inclined seat airbag (321) is located below the platform (1), and a rigid cover is arranged on the upper end of the inclined seat airbag (321).
2. The conductive sponge processing table with automatic cleaning function according to claim 1 is characterized in that: The shaking member (31) comprises a slider (313) fixedly connected to the four corners of the platform (1); the outer end of the slider (313) is slidably connected to a circular arc groove plate (312); the outer wall of the circular arc groove plate (312) is fixedly connected to a mounting frame (315); and the mounting frame (315) is mounted on both sides of the platform (1).
3. The conductive sponge processing table with automatic cleaning function according to claim 2 is characterized in that: A servo motor (311) is fixedly connected to the middle of the mounting frame (315) on one side, and a slide rod (316) is fixedly connected to the output end of the servo motor (311). A rotating plate (317) is adjustably installed in the groove of the slide rod (316). The rotating shaft of the rotating plate (317) is fixedly connected to the slide rod (316) by bolts, and the rotating shaft of the rotating plate (317) can be adjusted in the slide groove of the slide rod (316) by loosening the bolts. The rotating plate (317) is connected to a telescopic sleeve (319) through a ball shaft. A vertical slot plate (318) for guiding is fixedly connected to the middle of the mounting frame (315), and the vertical slot plate (318) is slidably sleeved in the middle of the ball shaft.
4. The conductive sponge processing table with automatic cleaning function according to claim 1, characterized in that: The platform (1) is elastically connected to the support frame (2) via a return spring (314).
5. The conductive sponge processing table with automatic cleaning function according to claim 2, characterized in that: The bottom of the pair of sliders (313) are both rotatably connected with telescopic rods (327), and the pair of telescopic rods (327) are movably inserted into the bottom of the circular arc groove plate (312). The telescopic rods (327) are adapted to the arcs set by the circular arc groove plate (312), and the inclination angle of the inclined seat airbag (321) is consistent with the direction of the bottom of the telescopic rods (327).
6. The conductive sponge processing table with automatic cleaning function according to claim 5, characterized in that: The bottoms of a pair of telescopic rods (327) are fixedly connected to a push plate (326) located inside the inclined seat airbag (321), and the bottoms of the pair of push plates (326) are fixedly connected to the mounting frame (315). The outer walls of the push plates (326) are slidably abutted with a plurality of leaf doors (328), and the tops of the leaf doors (328) are rotatably connected to the rigid cover of the inclined seat airbag (321). The upper end of the inclined seat airbag (321) is provided with a plurality of ventilation holes (322) equidistantly around the circumference, and the number and position of the leaf doors (328) are consistent with the ventilation holes (322).
7. The conductive sponge processing table with automatic cleaning function according to claim 3, characterized in that: A plurality of air jets (325) are equidistantly arranged on one side of the top of the platform (1) close to the inclined seat airbag (321), and the plurality of air jets (325) are interconnected with the inclined seat airbag (321). A long funnel (323) is fixedly connected to one side of the top of the platform (1) away from the servo motor (311), and a dust collecting box (324) is arranged below the long funnel (323), and the dust collecting box (324) is located in the middle of the outer sides of a pair of arc groove plates (312).
8. The conductive sponge processing table with automatic cleaning function according to claim 1, characterized in that: The anti-diffusion mechanism (4) comprises a rack rod (41), wherein a pair of the rack rods (41) are provided, the bottoms of the pair of rack rods (41) are rotatably connected to the corners of the platform (1), the outer walls of the rack rods (41) are meshedly connected to gears (45), and the centers of the pair of gears (45) are fixedly connected to a reciprocating screw rod (42).
9. The conductive sponge processing table with automatic cleaning function according to claim 8, characterized in that: The outer walls of a pair of reciprocating screw rods (42) are both threadedly connected with moving blocks (44), the tops of a pair of moving blocks (44) are both rotatably connected with dust-collecting plates (43), and the top corners of the moving blocks (44) are both fixedly connected with limit stops (47).
10. The conductive sponge processing table with automatic cleaning function according to claim 9, characterized in that: A plurality of clamping columns (46) are symmetrically fixedly connected on both sides of one dust-collecting plate (43), and a plurality of clamping slots are symmetrically opened on both sides of the other dust-collecting plate (43). The sides of the pair of dust-collecting plates (43) close to each other are clamped together by the clamping columns (46).