Processing device for disc-shaped suspension type electrical porcelain production

By designing a processing device for producing disc-shaped suspended electric porcelain, the glaze is automatically removed by utilizing the adsorption function of the rotating disc and the sponge pad, thus solving the problems of glaze residue and scratches and improving the glazing quality of ceramic umbrella discs.

CN121361146AInactive Publication Date: 2026-01-20PINGXIANG HIGH CLASS INSULATOR CO LTD
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Patent Information

Application Number
CN202511739615.0
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-11-25
Publication Date
2026-01-20
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

Existing glazing devices often leave glaze residue on the bottom of the ceramic umbrella plate and inside the umbrella holes after glazing. Manual handling can easily cause the glaze to scratch the inner wall of the umbrella holes, resulting in low glazing quality.

Method used

A processing device for producing disc-shaped suspended electric porcelain was designed, including a slider, a drive rack, a drive gear, an electric push rod, a rotating disk, a fixing mechanism, a wiping mechanism, a liquid suction mechanism, and a brushing mechanism. The device automatically removes the glaze liquid by rotating the disk and adsorbing it with a sponge pad, thus avoiding scratching the inner wall of the umbrella hole.

Benefits of technology

It achieves automated removal of glaze from the bottom of the ceramic umbrella plate and inside the umbrella holes, improving the glazing quality and avoiding glaze scratches caused by manual handling.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of electrical porcelain processing, in particular to a processing device for disc-shaped suspension type electrical porcelain production. The technical problem that after an existing glazing device completes glazing, a large amount of glaze liquid is left at the bottom of a ceramic umbrella tray and in umbrella holes of the ceramic umbrella tray, the uniform glaze liquid on the inner walls of the umbrella holes of the ceramic umbrella tray is prone to being scratched due to manual treatment, and therefore the glazing quality is low is solved. A processing device for disc-shaped suspension type electrical porcelain production comprises a shell, two sliding blocks are connected to the shell in a sliding mode, driving toothed bars are arranged on the two sliding blocks, a driving gear is connected to the shell in a rotating mode, and an electric push rod is arranged in the shell. The glazed ceramic umbrella tray can slightly pass above the sponge mat in the rotating process, the bottom of the ceramic umbrella tray can make contact with the sponge mat, the sponge mat can absorb redundant glaze liquid at the bottom of the ceramic umbrella tray, the redundant glaze liquid at the bottom of the ceramic umbrella tray can be removed in the mode, and therefore the glazing quality of the ceramic umbrella tray is improved.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of electric porcelain processing, and particularly relates to a processing device for disc-shaped suspension electric porcelain production. BACKGROUND

[0002] In the production and processing of ceramic umbrella discs, glaze coating is a key link that directly affects the appearance, quality and functionality of ceramic products. Ceramic umbrella discs usually have special design structures, including the bottom and the umbrella hole, and the glazing treatment of these parts is particularly important. Traditional glazing devices mainly rely on glaze spraying and glaze dipping to achieve uniform glaze coating. Although these methods can achieve a certain degree of glaze coverage, there are still many defects in actual application. In particular, at the bottom of the ceramic umbrella disc and in the umbrella hole, due to the particularity of the shape and structure, glaze is prone to accumulate in these parts.

[0003] However, the existing glazing device has a lot of glaze residue in the bottom of the ceramic umbrella disc and the umbrella hole of the ceramic umbrella disc after glazing is completed, and usually requires manual further processing to clean the residual glaze. Manual processing can easily cause the uniform glaze on the inner wall of the umbrella hole of the ceramic umbrella disc to be scratched, thereby resulting in low glazing quality. SUMMARY

[0004] In order to overcome the shortcomings of the existing glazing device, which has a lot of glaze residue in the bottom of the ceramic umbrella disc and the umbrella hole of the ceramic umbrella disc after glazing is completed, and manual processing can easily cause the uniform glaze on the inner wall of the umbrella hole of the ceramic umbrella disc to be scratched, thereby resulting in low glazing quality, the technical problem of the present application is to provide a processing device for disc-shaped suspension electric porcelain production, which can remove the excess glaze in the bottom of the ceramic umbrella disc and simultaneously absorb the excess glaze in the umbrella hole of the ceramic umbrella disc, thereby avoiding scratching the glaze on the inner wall of the umbrella hole of the ceramic umbrella disc and improving the glazing quality of the ceramic umbrella disc.

[0005] The technical implementation scheme of the present application is a processing device for disc-shaped suspension electric porcelain production, which comprises a housing, two sliding blocks slidingly connected to the housing, a drive gear rod provided on each of the two sliding blocks, a drive gear rotatably connected to the housing, an electric push rod provided in the housing, a transmission gear rod provided on the extension rod of the electric push rod, and the two drive gear rods and the transmission gear rod are engaged with the drive gear.

[0006] Further, a placing opening is formed in the housing.

[0007] Further, the rotating disc is further included, the rotating disc is rotatably connected in the shell, four placing holes are uniformly arranged on the rotating disc, a driving motor is arranged in the shell, an output shaft of the driving motor is connected with the rotating disc, a ceramic umbrella disc is placed on the placing hole of the rotating disc, a storage tank is arranged on the shell, a water pump is arranged on the upper slide and the shell, a liquid injection pipe is arranged on the upper slide, the liquid injection pipe is communicated with the output port of the water pump on the upper slide, a liquid injection cylinder is arranged on the lower slide, the liquid injection cylinder is connected with the output port of the water pump on the shell through a pipeline, the input ports of the two water pumps are connected with the storage tank through pipelines, a pressure sensor is arranged on the lower slide, and a collecting frame is arranged in the shell.

[0008] Further, the fixing mechanism is further included, the fixing mechanism is arranged on the rotating disc, the fixing mechanism includes movable clamping rods, four movable clamping rods are slidably connected on the rotating disc, four limiting strips are uniformly arranged on the rotating disc, a guide frame is arranged in the shell, and a reset spring one is arranged between the four movable clamping rods and the rotating disc.

[0009] Further, the wiping mechanism is further included, the wiping mechanism is arranged on the shell, the wiping mechanism includes a water tank, the water tank is arranged on the shell, four water pressing rods are slidably connected on the rotating disc, a pressure spring one is arranged between the water pressing rod and the rotating disc, a rotating frame is rotatably connected in the shell, four sponge pads are uniformly arranged on the rotating frame, a one-way bearing is arranged on the rotating frame, a column gear is arranged on the one-way bearing, a rotating tooth rod is slidably connected in the shell, one end of the rotating tooth rod is engaged with the column gear, the other end of the rotating tooth rod is connected with the telescopic rod of the electric push rod, two groups of fixed magnets are arranged in the shell, and two groups of movable magnets are arranged on the rotating frame.

[0010] Further, the liquid sucking mechanism is further included, the liquid sucking mechanism is arranged on the shell, the liquid sucking mechanism includes a guide rod, the guide rod is slidably connected on the shell, a pressing rod is slidably connected on the guide rod, a guide plate is arranged in the shell, a sliding groove is formed in the guide plate, one end of the guide rod is clamped into the sliding groove of the guide plate, a sponge block is arranged on the other end of the guide rod, a liquid collecting frame is arranged in the shell, a hollow pressing plate is slidably connected in the shell, a reset spring two is arranged between the hollow pressing plate and the shell, a collecting cylinder is arranged on the shell, the collecting cylinder is communicated with the liquid collecting frame, and four top plates are arranged on the rotating disc.

[0011] Further, the brushing mechanism is further included, the brushing mechanism is arranged on the shell, the brushing mechanism includes a sliding rod, the sliding rod is slidably connected on the water tank, a brush plate is arranged on the sliding rod, a top rod is slidably connected on the water tank, a plurality of pressure springs two are arranged between the top rod and the water tank, and a top ring is arranged on the output shaft of the driving motor.

[0012] Further, soft brush hairs are arranged on the brush plate.

[0013] Further, the stirring rod is rotatably connected to the water tank, a rotating gear is arranged on the stirring rod, and a rack is arranged on the top rod.

[0014] The application has the following advantages: 1. The glazed ceramic umbrella disc slightly passes above the sponge during rotation, the bottom of the ceramic umbrella disc contacts the sponge, the sponge absorbs the excess glaze on the bottom of the ceramic umbrella disc, the excess glaze on the bottom of the ceramic umbrella disc is removed in this way, and thus the glazing quality of the ceramic umbrella disc is improved.

[0015] 2. The sponge block is moved by the pressing rod, the pressing rod and the sponge block continue to move and extend into the umbrella hole of the ceramic umbrella disc after the pressing rod and the sponge block move to the top of the umbrella hole of the ceramic umbrella disc, the sponge block on the pressing rod contacts the inner bottom of the umbrella hole of the ceramic umbrella disc, the excess glaze in the umbrella hole of the ceramic umbrella disc is absorbed, the glaze on the inner wall of the umbrella hole of the ceramic umbrella disc is not scratched, and thus the glazing quality of the ceramic umbrella disc is further improved.

[0016] 3. The sliding rod moves together with the brush plate, the sliding rod is reset by the restoring of the tension spring after the top ring and the top rod are separated, the top rod is reset by the restoring of the second pressure spring, the sliding rod reciprocally moves during the rotation of the top ring, the brush plate moves together with the sliding rod during the reciprocating movement of the sliding rod, the sponge pad in the water is brushed by the reciprocating movement of the brush plate, the glaze adsorbed on the sponge pad is removed, and thus the sponge pad is better cleaned. BRIEF DESCRIPTION OF DRAWINGS

[0017] Figure 1 It is a perspective structural schematic view of the application.

[0018] Figure 2 It is a perspective structural schematic view of the shell, the storage tank and the water pump of the application.

[0019] Figure 3 It is a sectional perspective structural schematic view of the shell of the application.

[0020] Figure 4 It is a perspective structural schematic view of the electric push rod, the transmission rack and the driving gear of the application.

[0021] Figure 5 It is a partial split perspective structural schematic view of the application.

[0022] Figure 6 It is a perspective structural schematic view of the shell, the guide frame and the first reset spring of the application.

[0023] Figure 7 It is a perspective structural schematic view of the rotating disc, the movable clamping rod and the limiting strip of the application.

[0024] Figure 8This is a three-dimensional structural diagram of the water-pressing dryer and pressure spring of the present invention.

[0025] Figure 9 This is a three-dimensional structural diagram of the rotating frame, one-way bearing, and cylindrical gear of the present invention.

[0026] Figure 10 This is a three-dimensional structural diagram of the wiping mechanism of the present invention.

[0027] Figure 11 This is a three-dimensional structural diagram of the pressure bar, sponge block, and hollow pressure plate of the present invention.

[0028] Figure 12 For the present invention Figure 3 A magnified three-dimensional structural diagram at point A in the middle.

[0029] Figure 13 This is a three-dimensional structural diagram of the liquid suction mechanism of the present invention.

[0030] Figure 14 This is a three-dimensional structural diagram of the sliding rod, water tank, and tension spring of the present invention.

[0031] Figure 15 For the present invention Figure 8 A magnified three-dimensional structural diagram at point B.

[0032] In the attached diagrams: 1: Outer shell, 2: Slider, 3: Drive rack, 4: Drive gear, 5: Electric push rod, 6: Transmission rack, 7: Rotating disc, 8: Drive motor, 9: Ceramic umbrella disc, 10: Storage tank, 11: Water pump, 12: Injection pipe, 13: Injection cylinder, 14: Pressure sensor, 15: Collection frame, 161: Movable clamping rod, 162: Limiting strip, 163: Guide frame, 164: Reset spring one, 171: Water tank, 172: Water pressure rod, 173: Pressure spring one, 174: Rotating frame, 175: Sponge pad, 176 177: One-way bearing; 178: Spur gear; 179: Rotating rack; 180: Movable magnet; 181: Fixed magnet; 182: Sliding rod; 183: Brush plate; 184: Top rod; 185: Pressure spring II; 186: Top ring; 197: Tension spring; 198: Guide rod; 199: Pressure rod; 100: Sponge block; 190: Liquid collection frame; 191: Hollow pressure plate; 191: Reset spring II; 192: Collection cylinder; 193: Top plate; 194: Guide plate; 205: Stirring rod; 206: Rotating gear; 207: Rack. Detailed Implementation

[0033] With reference to the drawings and embodiments of the present application, the technical solutions in the embodiments of the present application will be described clearly and completely. Obviously, the described embodiments are only a part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative efforts belong to the scope of the present application.

[0034] Embodiment 1: A processing device for disc-shaped suspension electric porcelain production, as shown in the figure, comprising a shell 1, two sliding blocks 2 are slidingly connected on the shell 1, driving tooth rods 3 are arranged on the two sliding blocks 2, a driving gear 4 is rotatably connected on the shell 1, an electric push rod 5 is arranged in the shell 1, a transmission tooth rod 6 is arranged on the telescopic rod of the electric push rod 5, and the two driving tooth rods 3 and the transmission tooth rod 6 are engaged with the driving gear 4. Figures 1-11

[0035] A placing opening is formed on the shell 1.

[0036] Further comprising a rotating disc 7, the rotating disc 7 is rotatably connected in the shell 1, four placing holes are uniformly arranged on the rotating disc 7, a driving motor 8 is arranged in the shell 1, the output shaft of the driving motor 8 is connected with the rotating disc 7, a ceramic umbrella disc 9 is placed on the placing hole on the rotating disc 7, a storage tank 10 is arranged on the shell 1, water pumps 11 are arranged on the upper sliding block 2 and the shell 1, a liquid injection pipe 12 is arranged on the upper sliding block 2, the liquid injection pipe 12 is communicated with the output port of the water pump 11 on the upper sliding block 2, a liquid injection cylinder 13 is arranged on the lower sliding block 2, the liquid injection cylinder 13 is connected with the output port of the water pump 11 on the shell 1 through a conduit, the input ports of the two water pumps 11 are connected with the storage tank 10 through conduits, a pressure sensor 14 is arranged on the lower sliding block 2, and a collection frame 15 is arranged in the shell 1.

[0037] Further comprising a fixing mechanism, the fixing mechanism is arranged on the rotating disc 7 and is used for continuously fixing and limiting the ceramic umbrella disc 9, the fixing mechanism comprises movable clamping rods 161, four movable clamping rods 161 are slidingly connected on the rotating disc 7, the movable clamping rods 161 are used for clamping the ceramic umbrella disc 9, four limiting strips 162 are uniformly arranged on the rotating disc 7, a guide frame 163 is arranged in the shell 1, and reset springs one 164 are connected between the four movable clamping rods 161 and the rotating disc 7.

[0038] ​Further comprising a wiping mechanism, the shell 1 is provided with a wiping mechanism, the wiping mechanism is used for cleaning the residual glaze on the bottom of the ceramic umbrella disc 9, the wiping mechanism comprises a water tank 171, the shell 1 is provided with the water tank 171, four water pressing rods 172 are slidably connected on the rotating disc 7, a pressure spring one 173 is connected between the water pressing rod 172 and the rotating disc 7, a rotating frame 174 is rotatably connected in the shell 1, four sponge pads 175 are evenly provided on the rotating frame 174, a one-way bearing 176 is provided on the rotating frame 174, a column gear 177 is provided on the one-way bearing 176, a rotating toothed rod 178 is slidably connected in the shell 1, one end of the rotating toothed rod 178 is engaged with the column gear 177, the other end of the rotating toothed rod 178 is connected with the telescopic rod of the electric push rod 5, two groups of fixed magnets 1710 are provided in the shell 1, and two groups of movable magnets 179 are provided on the rotating frame 174.

[0039] Further comprising a liquid suction mechanism, the shell 1 is provided with a liquid suction mechanism, the liquid suction mechanism is used for cleaning the residual glaze in the umbrella hole of the ceramic umbrella disc 9, the liquid suction mechanism comprises a guide rod 191, the shell 1 is slidably connected with the guide rod 191, a pressing rod 192 is slidably connected on the guide rod 191, a guide plate 199 is provided in the shell 1, the guide plate 199 is provided with a sliding groove, one end of the guide rod 191 is clamped into the sliding groove of the guide plate 199, a sponge block 193 is provided on the other end of the guide rod 191, a liquid collecting frame 194 is provided in the shell 1, a hollow pressing plate 195 is slidably connected in the shell 1, a return spring two 196 is connected between the hollow pressing plate 195 and the shell 1, a collecting cylinder 197 is provided on the shell 1, the collecting cylinder 197 is communicated with the liquid collecting frame 194, and four top plates 198 are provided on the rotating disc 7.

[0040] Initially, the storage tank 10 contains glaze. The user places the ceramic umbrella plate 9 to be processed onto the placement hole on the rotating disk 7 through the placement opening on the outer casing 1. Subsequently, the user controls the output shaft of the drive motor 8 to rotate. The rotation of the output shaft of the drive motor 8 drives the rotating disk 7 to rotate, which in turn moves the movable clamping rod 161. During the movement, the movable clamping rod 161 is squeezed by the guide frame 163, causing it to move closer to the ceramic umbrella plate 9. The return spring 164 is compressed, and the movable clamping rod 161 pushes the ceramic umbrella plate 9 towards the limiting bar 162, thus correcting the position of the ceramic umbrella plate 9. The ceramic umbrella plate 9 is then controlled by the limiting bar 162 and the movable clamping rod. Clamped at 161, guide frame 163 stops pressing the movable clamping rod 161. After the rotating disk 7 drives the ceramic umbrella disc 9 to rotate 90 degrees, the output shaft of the drive motor 8 stops rotating, causing the ceramic umbrella disc 9 placed on the rotating disk 7 to rotate between the injection tube 12 and the injection cylinder 13. Subsequently, the user controls the extension rod of the electric push rod 5 to extend. The extension of the electric push rod 5 will drive the transmission rack 6 to move. The movement of the transmission rack 6 will mesh with the drive gear 4. The rotation of the drive gear 4 will drive the two drive racks 3 to move closer to each other, causing the two sliders 2 to move closer to each other. The movement of the two sliders 2 will drive the injection tube 12 and the injection cylinder 13 to move closer to each other. The movement of the injection cylinder 13 will cover the bottom of the ceramic umbrella disc 9. The injection pipe 12 extends into the umbrella hole of the ceramic umbrella plate 9. During the movement of the upper slider 2, the pressure sensor 14 on the upper slider 2 contacts the rotating disk 7. The pressure sensor 14 generates an electrical signal to control the extension rod 5 to stop moving, so that the two water pumps 11 inject the glaze liquid in the storage tank 10 into the injection pipe 12 and the injection cylinder 13 respectively. The glaze liquid in the injection pipe 12 is injected into the umbrella hole of the ceramic umbrella plate 9, and the glaze liquid in the injection cylinder 13 will immerse the bottom of the ceramic umbrella plate 9, thus glazing the bottom of the ceramic umbrella plate 9. The glaze liquid injected into the umbrella hole of the ceramic umbrella plate 9 will glaze the inner wall of the umbrella hole of the ceramic umbrella plate 9. In this way, the ceramic umbrella plate 9 can be glazed evenly. After the glaze in cylinder 13 and injection tube 12 have reached the specified amount in the ceramic umbrella plate 9, the water pump 11 will reverse to draw the glaze from the injection cylinder 13 and the umbrella hole of the ceramic umbrella plate 9 back into the storage tank 10. Then, the user controls the electric push rod 5 to retract. The retraction of the electric push rod 5 will drive the transmission rack 6 to reset. The reset of the transmission rack 6 will drive the drive gear 4 and the two drive racks 3 to reset. The reset of the two drive racks 3 will drive the two sliders 2 to reset, thereby resetting the injection tube 12 and the injection cylinder 13. After the electric push rod 5 has reset, the output shaft of the drive motor will rotate again. The rotation of the drive motor output shaft will drive the rotating disk 7 to rotate. During the rotation of the rotating disk 7, the glazed ceramic umbrella plate 9 will move together.The glazed ceramic umbrella disc 9 will thus pass above the collection frame 15, thereby collecting the excess glaze at the bottom of the ceramic umbrella disc 9. After the driving motor output shaft drives the rotating disc 7 to rotate 90 degrees and then stops moving again, the liquid injection pipe 12 and the liquid injection cylinder 13 will perform glazing treatment on the next ceramic umbrella disc 9. After the next ceramic umbrella disc 9 completes the glazing treatment, the driving motor 8 output shaft rotates again, and the rotating disc 7 continues to rotate, which will drive the glazed ceramic umbrella disc 9 to rotate to the placement opening of the shell 1. The glazed ceramic umbrella disc 9 will pass above the sponge pad 175 during the rotating process, and the bottom of the ceramic umbrella disc 9 will contact the sponge pad 175. The sponge pad 175 will absorb the excess glaze at the bottom of the ceramic umbrella disc 9. In this way, the excess glaze at the bottom of the ceramic umbrella disc 9 can be removed, thereby improving the glazing quality of the ceramic umbrella disc 9. During the extension process of the telescopic rod of the electric push rod 5, the telescopic rod of the electric push rod 5 will drive the rotating gear rod 178 to move towards the column gear 177. The column gear 177 is idling, and after the rotating gear rod 178 and the column gear 177 are disengaged, the rotating frame 174 will not be deflected due to the attraction of the fixed magnet 1710 and the movable magnet 179. The telescopic rod of the electric push rod 5 resets, driving the rotating gear rod 178 to reset. The rotating gear rod 178 will drive the column gear 177 to rotate. The rotation of the column gear 177 will drive the one-way bearing 176 to rotate. The rotation of the one-way bearing 176 will drive the rotating frame 174 to rotate. The rotation of the rotating frame 174 will drive the sponge pad 175 to rotate 90 degrees, so that the next clean sponge pad 175 will rotate to the uppermost position, and one of the sponge pads 175 soaked with glaze will rotate into the water in the water tank 171, thereby cleaning the sponge pad 175. The last sponge pad 175 in the water will rotate out of the water. During the rotation of the rotating disc 7, the rotating disc 7 will rotate together with the water pressing rod 172. The water pressing rod 172 will contact the sponge pad 175 rotating out of the water tank 171 during the rotation process. The water pressing rod 172 will squeeze the sponge pad 175, thereby squeezing out the water absorbed by the sponge pad 175, so that the water-soaked sponge pad 175 will be squeezed dry. The continuous rotation of the water pressing rod 172 will be squeezed into the rotating disc 7. The pressure spring one 173 is compressed, so that the water pressing rod 172 will continuously squeeze the sponge pad 175 during the contact process. After the water pressing rod 172 and the sponge pad 175 are disengaged, the pressure spring one 173 resets, driving the water pressing rod 172 to reset. During the movement of the slider 2 towards the driving gear 4, the slider 2 will drive the guide rod 191 to move together. The guide rod 191 will drive the pressing rod 192 to move together during the movement process. The pressing rod 192 will be squeezed by the guide plate 199 during the movement process, so that the pressing rod 192 will move away from the slider 2 during the movement process towards the ceramic umbrella disc 9. In this way, the pressing rod 192 will move to the uppermost position of the ceramic umbrella disc 9. The movement of the pressing rod 192 will drive the sponge block 193 to move. After the pressing rod 192 and the sponge block 193 move to the uppermost position of the ceramic umbrella disc 9,The sponge block 193 continues to move and extends into the umbrella hole of the ceramic umbrella disc 9. The sponge block 193 on the pressing rod 192 contacts the inner bottom of the umbrella hole of the ceramic umbrella disc 9, thereby absorbing the excess glaze in the umbrella hole of the ceramic umbrella disc 9 and avoiding scratching the glaze on the inner wall of the umbrella hole of the ceramic umbrella disc 9, further improving the glazing quality of the ceramic umbrella disc 9. After the telescopic rod of the electric push rod 5 is reset, the telescopic rod of the electric push rod 5 drives the guide rod 191 to reset, and the guide rod 191 drives the pressing rod 192 and the sponge block 193 to reset. During the rotation of the rotating disc 7, the top plate 198 rotates together. During the rotation of the top plate 198, the top plate 198 hits the hollow pressing plate 195, so that the hollow pressing plate 195 moves towards the sponge block 193. The second reset spring 196 is compressed. During the movement of the hollow pressing plate 195, the sponge block 193 is squeezed, so that the glaze absorbed by the sponge block 193 is squeezed into the liquid collecting frame 194. The glaze in the liquid collecting frame 194 flows into the collecting cylinder 197. In this way, the sponge block 193 is squeezed once after absorbing the glaze once. After the top plate 198 continues to rotate and the hollow pressing plate 195 is separated, the second reset spring 196 resets the hollow pressing plate 195. During the rotation of the ceramic umbrella disc 9 to the placement opening of the outer shell 1 after glazing is completed, the guide frame 163 does not squeeze one of the movable clamping rods 161 clamping the ceramic umbrella disc 9. The first reset spring 164 resets the movable clamping rod 161. The glazed ceramic umbrella disc 9 is no longer limited, and the user can replace the ceramic umbrella disc 9. During equipment maintenance, the user cleans the glaze in the collecting cylinder 197 and the collecting frame 15. The user needs to replace the water in the water tank 171.

[0041] In addition, as shown in Figures 9-15 the embodiment 1, a brushing mechanism is further included. The brushing mechanism is arranged on the outer shell 1 and is used for assisting in cleaning the sponge pad 175. The brushing mechanism includes a sliding rod 181, the sliding rod 181 is slidably connected to the water tank 171, a brush plate 182 is arranged on the sliding rod 181, a top rod 183 is slidably connected to the water tank 171, a plurality of second pressure springs 184 are connected between the top rod 183 and the water tank 171, and a top ring 185 is arranged on the output shaft of the driving motor 8.

[0042] Soft bristles are arranged on the brush plate 182.

[0043] The stirring rod 201 is further included. The stirring rod 201 is rotatably connected to the water tank 171. A rotating gear 202 is arranged on the stirring rod 201. A rack 203 is arranged on the top rod 183.

[0044] At the beginning, the sponge pad 175 in the water and the bristles on the brush plate 182 contact, the rotating disc 7 rotates in the rotating process, the rotating disc 7 drives the top ring 185 to rotate, the top ring 185 rotates and intermittently hits the top rod 183, the top rod 183 is hit and moves to the direction close to the water tank 171, the pressure spring two 184 is compressed, the top rod 183 moves and extrudes the sliding rod 181, so that the sliding rod 181 moves to the direction away from the top rod 183, the tension spring 186 is stretched, the sliding rod 181 moves and drives the brush plate 182 to move, after the top ring 185 and the top rod 183 are separated, the tension spring 186 resets and drives the sliding rod 181 to reset, the pressure spring two 184 resets and drives the top rod 183 to reset, in this way, the sliding rod 181 reciprocates in the rotating process of the top ring 185, the sliding rod 181 reciprocates and drives the brush plate 182 to move, the brush plate 182 reciprocates and brushes the sponge pad 175 in the water, so that the glaze adsorbed on the sponge pad 175 is better removed, which is beneficial to better cleaning the sponge pad 175, in the process of the top rod 183 moving to the direction close to the water tank 171, the top rod 183 drives the rack 203 to move, the rack 203 moves and engages with the rotating gear 202, the rotating gear 202 rotates and drives the stirring rod 201 to rotate, the stirring rod 201 rotates and stirs the water around the brush plate 182, so as to avoid local turbidity of the water around the brush plate 182.

[0045] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present application and not to limit the protection scope of the present application. Although the present application has been described in detail with reference to the preferred embodiments, those skilled in the art should understand that the technical solutions of the present application can be modified or replaced by equivalents without departing from the essence and scope of the technical solutions of the present application.

Claims

1. A processing device for the production of disc-shaped suspension electric porcelain, characterized in that: The utility model provides a kind of ceramic umbrella holder, including shell (1), two sliders (2) are slidably connected on shell (1), driving rack (3) is equipped on two sliders (2), driving gear (4) is rotatably connected on shell (1), electric push rod (5) is equipped in shell (1), driving rack (6) is equipped on the telescopic rod of electric push rod (5), two driving rack (3) and driving rack (6) are all engaged with driving gear (4).

2. A processing device for the production of disc-shaped suspension electric porcelain according to claim 1, characterized in that: The shell (1) is provided with a placing opening.

3. A processing device for the production of disc-shaped suspension electric porcelain according to claim 1, characterized in that: Rotating disc (7) is further included, rotating disc (7) is rotatably connected in shell (1), four placing holes are evenly provided on rotating disc (7), driving motor (8) is provided in shell (1), driving motor (8) output shaft and rotating disc (7) are connected, ceramic umbrella tray (9) is placed on the placing hole of rotating disc (7), storage tank (10) is provided on shell (1), water pump (11) is provided on the upper slider (2) and shell (1), liquid injection pipe (12) is provided on the upper slider (2), liquid injection pipe (12) is communicated with the output port of water pump (11) on the upper slider (2), liquid injection cylinder (13) is provided on the lower slider (2), the output port of water pump (11) on shell (1) is connected with liquid injection cylinder (13) through conduit, the input port of two water pumps (11) and storage tank (10) are connected through conduit, pressure sensor (14) is provided on the lower slider (2), collecting frame (15) is provided in shell (1).

4. A processing device for the production of disc-shaped suspension electric porcelain according to claim 3, characterized in that: Further including fixing mechanism, fixing mechanism is provided on rotating disc (7), and fixing mechanism includes movable clamp rod (161), four movable clamp rods (161) are slidably connected on rotating disc (7), four limit strips (162) are evenly provided on rotating disc (7), guide frame (163) is provided in shell (1), reset spring one (164) is connected between four movable clamp rods (161) and rotating disc (7).

5. A processing device for the production of disc-shaped suspension electroceramics according to claim 4, characterized in that: Further including wiping mechanism, wiping mechanism is provided on shell (1), and wiping mechanism includes water tank (171), water tank (171) is provided on shell (1), four water pressing rods (172) are slidably connected on rotating disc (7), pressure spring one (173) is connected between water pressing rod (172) and rotating disc (7), rotating frame (174) is rotatably connected in shell (1), four sponge pads (175) are evenly provided on rotating frame (174), one-way bearing (176) is provided on rotating frame (174), column gear (177) is provided on one-way bearing (176), rotating rack (178) is slidably connected in shell (1), a section of rotating rack (178) is engaged with column gear (177), the other end of rotating rack (178) is connected with the telescopic rod of electric push rod (5), two groups of fixed magnets (1710) are provided in shell (1), two groups of movable magnets (179) are provided on rotating frame (174).

6. A processing device for the production of disc-shaped suspension electroceramics according to claim 5, characterized in that: It also includes a liquid suction mechanism, the shell (1) is provided with a liquid suction mechanism, the liquid suction mechanism includes a guide rod (191), the shell (1) is slidably connected with the guide rod (191), the guide rod (191) is slidably connected with a pressure rod (192), the shell (1) is provided with a guide plate (199), the guide plate (199) is provided with a sliding slot, one end of the guide rod (191) is clamped into the sliding slot of the guide plate (199), the other end of the guide rod (191) is provided with a sponge block (193), the shell (1) is provided with a liquid collecting frame (194), the shell (1) is slidably connected with a hollow pressing plate (195), the hollow pressing plate (195) and the shell (1) are connected with a reset spring (196), the shell (1) is provided with a collecting cylinder (197), the collecting cylinder (197) and the liquid collecting frame (194) are communicated, the rotating disc (7) is provided with four top plates (198).

7. A processing device for the production of disc-shaped suspension electric porcelain according to claim 6, characterized in that: It also includes a brushing mechanism, the shell (1) is provided with a fixing mechanism, the brushing mechanism includes a sliding rod (181), the water tank (171) is slidably connected with the sliding rod (181), the sliding rod (181) is provided with a brush plate (182), the water tank (171) is slidably connected with a top rod (183), the top rod (183) and the water tank (171) are connected with a plurality of pressure springs (184), the output shaft of the driving motor (8) is provided with a top ring (185).

8. A processing device for the production of disc-shaped suspension electric porcelain according to claim 6, characterized in that: The brush plate (182) is provided with soft bristles.

9. A processing device for the production of disc-shaped suspension electroceramics according to claim 8, characterized in that: It also includes an agitating rod (201), the water tank (171) is rotatably connected with the agitating rod (201), the agitating rod (201) is provided with a rotating gear (202), the top rod (183) is provided with a rack (203).