Energy-saving ceramic marmite processing device
By using a combination technology of airbags, scrapers, elastic parts and polished sponge wheels in the ceramic casserole processing and treatment device, the problems of deflection and surface not being smooth during the refining process of the casserole are solved, and a more stable and smooth refining effect is achieved.
Patent Information
- Application Number
- CN202510588165.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-08
- Publication Date
- 2025-06-24
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
The ceramic casserole body is prone to deflection during the refining process, resulting in irregular edges, uneven wall thickness and deformation of the outline. The prior art has failed to completely eliminate the surface unsmooth problems caused by microscopic burrs and air retention.
An energy-saving ceramic casserole processing device is designed, using airbags to limit and adjust the position of the casserole body, combining scrapers and elastic parts for edge repair and preventing damage, and surface polishing and feeding is carried out through polishing sponge wheels and water mist flow.
It effectively avoids the deflection and uneven wall thickness problems of the casserole body during the blank refining process, improves the smoothness and stability of the edges and surfaces, and improves the appearance and performance of the product.
Smart Images

Figure CN120190894A_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of ceramic casserole processing, and in particular to an energy-saving ceramic casserole processing device. Background Art
[0002] Based on the existing technology, it is found that in the existing ceramic casserole processing technology, there is a significant technical bottleneck in the casserole blank repair process. First, in the automated production scenario, the casserole blank is prone to positional deviation when it is positioned to the suction cup by the automatic feeding mechanism, resulting in misalignment between the center of the casserole blank and the center of the suction cup. This deviation will cause the blank to deflect during the high-speed rotation repair process, thereby causing problems such as uneven wall thickness and contour deformation of the blank, which directly affects the appearance regularity and performance of the product. Secondly, the blank repair process itself has limitations and fails to completely eliminate the microscopic burrs on the edge of the blank, resulting in insufficient roundness of the edge of the finished product. In addition, during the blank forming stage (hand throwing or mold forming), the imperfect exhaust process causes air to be trapped and microbubbles to form inside the blank. After the blank repair process, the microbubbles are exposed, resulting in an uneven surface. Summary of the invention
[0003] In order to overcome the disadvantage that a ceramic clay pot blank is easily deflected during the trimming process, resulting in irregular burrs on the edges of the ceramic clay pot blank, the present invention provides an energy-saving ceramic clay pot processing device.
[0004] The technical scheme is as follows: an energy-saving ceramic casserole processing device, comprising a bottom plate and an electric turntable; an electric turntable is installed on the bottom plate, the electric turntable is composed of a servo motor and a rotating disk, and the output shaft of the servo motor rotates to drive the rotating disk to rotate; it also includes a blank trimming component, a cylinder, a round table, a tray, a round tube, a bracket, an air bag, a ring, an air pipe, an air pump and a driving component; a blank trimming component for trimming the casserole blank is connected to the bottom plate; at least five cylinders are rotatably connected to the rotating disk in the electric turntable; each cylinder is fixed with a round table; each round table is rotatably connected to a tray, and the tray is fixed by The block is fixedly connected to the rotating disk in the electric turntable; a round tube is fixedly connected to each circular platform, and a number of ventilation holes are opened at the bottom of the circular tube; a bracket is fixedly connected to each circular tube; an air bag is fixedly connected to each bracket, and the upper part of the air bag is a hard material; the air bag is fixedly connected and connected to the corresponding circular tube; a circular ring is rotated and connected on each circular tube; an air pipe is fixedly connected and connected to each circular ring, and the air pipe is fixedly connected to the tray; an air pump is installed on each tray; the air pump is connected to the air pipe; a driving assembly is connected to the electric turntable, each driving assembly is connected to the corresponding circular platform, and the driving assembly is used to drive the circular platform to rotate.
[0005] Preferably, the inner side of the tray is arranged in an inclined shape with a high middle portion and low surrounding portions.
[0006] Preferably, the blank trimming assembly includes a support frame, an electric robotic arm, a fixing block, and a scraping knife; the support frame is fixedly connected to the bottom plate; the electric robotic arm is installed on the support frame; the telescopic end of the electric robotic arm is fixedly connected to the fixing block; the scraping knife is installed on the fixing block.
[0007] Preferably, an elastic member is further included; an elastic member is connected between the fixing block and the scraping knife, one end of the elastic member is fixedly connected to the fixing block, and the other end of the elastic member is fixedly connected to the scraping knife.
[0008] Preferably, an elbow pipe and a branch pipe are further included; at least three branch pipes are fixedly connected to the scraping knife, and all the branch pipes penetrate through the scraping knife; one end of all the branch pipes away from the scraping knife is fixedly connected and communicated with the elbow pipe.
[0009] Preferably, a polishing system is further included; the polishing system is connected to the bottom plate; the polishing system is connected to the electric turntable; the polishing system includes a mounting frame, an electric slide rail, an electric slider, an electric actuator, a fixing frame, a motor II, a polishing sponge wheel, a fixing plate, a water pipe, a connecting frame, a pressing wheel, a diversion groove, and a pipeline; the mounting frame is fixedly connected to the bottom plate; the electric slide rail is fixedly connected to the mounting frame; the electric slider is slidably connected to the electric slide rail; the electric actuator is fixedly connected to the electric slider; the telescopic part of the electric actuator is fixedly connected to the fixing frame; the motor II is fixedly connected to the fixing frame; the output shaft of the motor II is fixedly connected to the polishing sponge wheel; the polishing sponge wheel is rotatably connected to the fixing frame; the fixing plate is fixedly connected to the electric slider; the water pipe is fixedly connected to the fixing plate; the connecting frame is fixedly connected to the fixing frame; at least two pressing wheels are fixedly connected to the connecting frame through a rotating shaft; the diversion groove is fixedly connected to the electric slider; the pipeline is fixedly connected and communicated with the diversion groove.
[0010] Preferably, the polishing sponge wheel is arranged in an inclined shape.
[0011] Preferably, one side of the diversion groove close to the polishing sponge wheel is arranged in an inclined shape.
[0012] Preferably, the pressing wheel is arranged in a conical shape, and the diameter of the side close to the connecting frame is larger than the diameter of the side away from the connecting frame.
[0013] Preferably, a plurality of through grooves are formed in the pressing wheel.
[0014] The advantages and positive effects of the present invention are: (1) By inflating the airbag, the airbag expands, and the airbag squeezes the casserole body during the inflation process, driving the casserole body to move, thereby adjusting the position of the casserole body relative to the airbag, so that the center of the casserole body is aligned with the center of the airbag, and the airbag fits the inner side of the casserole body, so that the casserole body is limited by the airbag filled with air, thereby avoiding the casserole body from deflecting during trimming, causing uneven wall thickness and contour deformation of the body, and at the same time making the airbag fit the inner side of the casserole body, thereby improving the stability of the casserole body during trimming.
[0015] (2) By moving the scraper against the edge of the casserole body, the burrs on the edge of the casserole body are scraped off by the scraper, thereby trimming the edge of the casserole body. At the same time, the burrs scraped off by the scraper will fall into the tray and be collected by the tray.
[0016] (3) The elastic force of the elastic member is used to cushion the scraper, thereby reducing the possibility of the scraper causing damage to the edge of the casserole body when it touches the edge of the casserole body. The casserole body is limited by the airbag, so that the airbag fits the inner side of the casserole body during the trimming process, thereby providing support force to the casserole body from the inner side, further reducing the possibility of the scraper causing damage to the casserole body. In addition, the airbag fits the inner side of the casserole body during the trimming process, which can prevent the scraped burrs from entering the inner side of the casserole body, thereby playing a dust-proof role.
[0017] (4) The water mist is directed to the outer wall of the casserole body through three branch pipes, and as the casserole body rotates, the water mist flowing to the casserole body is evenly spread through a scraper, thereby filling the small holes in the casserole body, making the outer wall of the casserole body smoother, thereby improving the surface smoothness of the casserole body.
[0018] (5) The casserole body is polished by a polishing sponge wheel to make the outer surface of the casserole body smoother and rounder, and the polishing sponge wheel is squeezed by two extrusion wheels to squeeze out the water in the polishing sponge wheel, and the mud adhering to the polishing sponge wheel is squeezed out by the extrusion wheel, and the mud is quickly guided to the guide groove, and then flows out along the guide groove and the pipeline, so as to avoid mud adhering to the polishing sponge wheel and affecting the polishing effect of the polishing sponge wheel on the casserole body, thereby improving the quality of the casserole body. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] Figure 1 It is a schematic diagram of the three-dimensional structure of the energy-saving ceramic casserole processing device of the present invention; Figure 2 It is a schematic diagram of the installation positions of the support frame, electric mechanical arm, fixed block, scraper, cylinder and linear drive member of the energy-saving ceramic casserole processing device of the present invention; Figure 3 Schematic diagram of the installation position of the DD motor of the energy-saving ceramic casserole processing device of the present invention; Figure 4 Combined schematic diagram of a circular tube, a circular ring and an air pipe of the energy-saving ceramic casserole processing device of the present invention; Figure 5 Combined three-dimensional structure schematic diagram of a fixing block, an elastic member, a scraper, a bent pipe and a branch pipe of the energy-saving ceramic casserole processing device of the present invention; Figure 6 Three-dimensional structure schematic diagram of the polishing system of the energy-saving ceramic casserole processing device of the present invention; Figure 7 Schematic diagram of the installation position of the extrusion wheel of the energy-saving ceramic casserole processing device of the present invention; Figure 8 Top view of the energy-saving ceramic casserole processing device of the present invention; Figure 9 Schematic diagram of the polishing state of the casserole blank of the energy-saving ceramic casserole processing device of the present invention.
[0020] Explanation of reference numerals: 1-bottom plate, 2-electric turntable, 3-casserole blank, 201-support frame, 202-electric robotic arm, 203-fixing block, 204-scraper, 205-cylinder, 206-cone, 2061-tray, 207-circular tube, 2071-bracket, 208-air bag, 209-circular ring, 210-air pipe, 211-air pump, 212-linear drive member, 213-DD motor, 2031-elastic member, 2041-bent pipe, 2042-branch pipe, 301-mounting frame, 302-electric slide rail, 303-electric slider, 304-electric actuator, 305-fixed frame, 3051-motor II, 306-polishing sponge wheel, 307-fixed plate, 308-water pipe, 309-connecting frame, 310-extrusion wheel, 311-flow guide groove, 312-pipeline. Detailed implementation manners
[0021] The following is only a preferred embodiment of the present invention, and does not limit the protection scope of the present invention accordingly.
[0022] Embodiment 1: An energy-saving ceramic casserole processing device, according to Figures 1-5 As shown, it includes a bottom plate 1 and an electric turntable 2; the electric turntable 2 is installed on the bottom plate 1, and the electric turntable 2 is composed of a servo motor and a rotating disk, and the output shaft of the servo motor rotates to drive the rotating disk to rotate; It also includes a trimming component, a cylinder 205, a frustum 206, a tray 2061, a circular tube 207, a bracket 2071, an airbag 208, a ring 209, an air tube 210, an air pump 211 and a driving component; a trimming component is connected to the bottom plate 1; five cylinders 205 are rotatably connected to the rotating plate in the electric turntable 2; a frustum 206 is fixedly connected to each cylinder 205; a tray 2061 is rotatably connected to each frustum 206, and the tray 2061 is fixedly connected to the rotating plate in the electric turntable 2 through a fixing block 203; a circular tube 207 is fixedly connected to each frustum 206, and a plurality of ventilation holes are opened in the lower part of the circular tube 207; a bracket 2071 is fixedly connected to each circular tube 207; an airbag 208 is fixedly connected to each bracket 2071, and the upper part of the airbag 208 is made of a hard material; the airbag 208 is fixedly connected and communicated with the corresponding circular tube 207; a ring 209 is rotatably and communicatively connected to the lower part of each circular tube 207; an air tube 210 is fixedly connected and communicated with each ring 209, and the air tube 210 is fixedly connected to the tray 2061; an air pump 211 is installed on the lower surface of each tray 2061; the air pump 211 is fixedly connected and communicated with the air tube 210; a driving component is connected to the electric turntable 2, and each driving component is connected to the corresponding frustum 206.
[0023] The inner bottom of the tray 2061 is set to be inclined with the middle high and the surrounding low for collecting the burrs scraped from the casserole blank 3.
[0024] The trimming component includes a support frame 201, an electric robotic arm 202, a fixing block 203 and a scraper 204; the support frame 201 is fixedly connected to the bottom plate 1; the electric robotic arm 202 is installed on the support frame 201; the telescopic end of the electric robotic arm 202 is fixedly connected to the fixing block 203; the scraper 204 is installed on the fixing block 203.
[0025] It also includes an elastic member 2031; an elastic member 2031 is connected between the fixing block 203 and the scraper 204, the elastic member 2031 is a torsion spring, one end of the elastic member 2031 is fixedly connected to the fixing block 203, and the other end of the elastic member 2031 is fixedly connected to the scraper 204.
[0026] It also includes an elbow pipe 2041 and a branch pipe 2042; three branch pipes 2042 are fixedly connected to the scraper 204, and all the branch pipes 2042 penetrate through the scraper 204; one end of all the branch pipes 2042 far from the scraper 204 is fixedly connected and communicated with the elbow pipe 2041.
[0027] The driving component includes a linear driving member 212 and a DD motor 213; five linear driving members 212 are fixedly connected to the lower surface of the electric turntable 2, the linear driving member 212 is a multi-stage electric push rod, and the telescopic end of each linear driving member 212 is fixedly connected to a DD motor 213; the output shaft of each DD motor 213 is fixedly connected to the frustum 206.
[0028] Previously, a pump for conveying water mist in a peripheral device was connected to an elbow 2041. In the prior art, when loading materials using an automatic feeding mechanism, the casserole blank 3 was prone to offset after being placed on the suction cup, resulting in deflection of the casserole blank 3 during trimming, and further causing uneven wall thickness and contour deformation of the blank, directly affecting the appearance regularity and service performance of the product. To solve the above problems, the initial state of the airbag 208 is not fully inflated. When trimming the casserole blank 3, the casserole blanks 3 are sequentially conveyed to the airbag 208 by a peripheral feeding mechanism. Since the upper part of the airbag 208 is made of a rigid material, the airbag 208 can still support the casserole blank 3 in the state where the airbag 208 is not fully inflated. Then, the air pump 211 is controlled to start and send air into the air pipe 210. The gas flows along the air pipe 210, the ring 209, and the round pipe 207, and finally fills the airbag 208, causing the airbag 208 to expand. If the casserole blank 3 is offset when placed on the upper airbag 208, the airbag 208 will squeeze the casserole blank 3 during the inflation process and drive the casserole blank 3 to move, thereby adjusting the position of the casserole blank 3 relative to the airbag 208, making the center of the casserole blank 3 align with the center position of the airbag 208, and making the airbag 208 fit the inner side of the casserole blank 3. Thus, the fully inflated airbag 208 limits the position of the casserole blank 3. Compared with the method of using a suction cup to limit the position of the casserole blank 3 in the prior art, using the airbag 208 can timely adjust the position of the casserole blank 3, making the center of the casserole blank 3 align with the center position of the airbag 208, thereby avoiding the problem of deflection of the casserole blank 3 during trimming, resulting in uneven wall thickness and contour deformation of the blank. At the same time, the airbag 208 fits the inner side of the casserole blank 3, improving the stability of the casserole blank 3 during trimming.
[0029] Next, the DD motor 213 is controlled to start. The output shaft of the DD motor 213 rotates to drive the rotating table 206 to rotate. The rotation of the rotating table 206 drives the round pipe 207 to rotate. The rotation of the round pipe 207 drives the bracket 2071 and the airbag 208 to rotate synchronously, thereby driving the casserole blank 3 to rotate. Then, the electric turntable 2 is controlled to start, further driving all the connected components to rotate, and further driving the casserole blank 3 to move to the scraper 204. Then, the electric turntable 2 is controlled to stop operating. Then, the electric robotic arm 202 is controlled to start and drive the fixed block 203 to move. The movement of the fixed block 203 drives the scraper 204 to move, so that the scraper 204 abuts against the edge of the casserole blank 3, thereby scraping off the burrs on the edge of the casserole blank 3 by the scraper 204, thus realizing the trimming process of the edge of the casserole blank 3. At the same time, the burrs scraped off by the scraper 204 will fall into the tray 2061 and be collected by the tray 2061.
[0030] Furthermore, because the scraper 204 exerts pressure on the edge of the casserole body 3 at the moment of touching the edge of the casserole body 3, which may easily cause damage to the edge of the casserole body 3, through the setting of the elastic member 2031, when the scraper 204 moves and touches the edge of the casserole body 3, the scraper 204 will rotate due to the resistance of the edge of the casserole body 3, and then the elastic member 2031 will be twisted, so that the scraper 204 is buffered by the elastic force of the elastic member 2031, reducing the scraper 204 touching the edge of the casserole body 3. The possibility of damage to the edge of the casserole body 3 caused by the scraper 204 is reduced, and the casserole body 3 is limited by the airbag 208, so that the airbag 208 fits the inner side of the casserole body 3 during the trimming process, thereby providing support force to the casserole body 3 from the inner side of the casserole body 3, further reducing the possibility of damage to the casserole body 3 caused by the scraper 204, and the airbag 208 fits the inner side of the casserole body 3 during the trimming process, which can prevent the scraped burrs from entering the inner side of the casserole body 3, thereby playing a dust-proof role.
[0031] Also, during the forming stage of the casserole blank 3, air is trapped due to an imperfect exhaust process, and microbubbles are formed inside the casserole blank 3. After the burrs on the edge of the casserole blank 3 are scraped off by the scraper 204, the electric mechanical arm 202 is controlled to start and drive the fixed block 203 to move. The fixed block 203 moves and drives the scraper 204 to move, so that the scraper 204 moves to the outer wall of the casserole blank 3, and then the external pump for conveying water mist is controlled to start and convey water mist into the curved pipe 2041. The water mist flows along the curved pipe 2041, and finally flows out from the three branch pipes 2042 and flows to the outer wall of the casserole blank 3. As the casserole blank 3 rotates, the water mist flowing to the casserole blank 3 is evenly spread by the scraper 204, thereby filling the small holes in the casserole blank 3, making the outer wall of the casserole blank 3 smoother, thereby improving the surface smoothness of the casserole blank 3.
[0032] Embodiment 2: Based on the first embodiment, Figure 2 , Figure 3 and Figures 6-9As shown in the figure, it further includes a polishing system; the polishing system is connected to the bottom plate 1; the polishing system is connected to the electric turntable 2; the polishing system includes a mounting frame 301, an electric slide rail 302, an electric slider 303, an electric actuator 304, a fixing frame 305, a motor II 3051, a polishing sponge wheel 306, a fixing plate 307, a water pipe 308, a connecting frame 309, a squeezing wheel 310, a diversion groove 311 and a pipeline 312; the mounting frame 301 is fixedly connected to the bottom plate 1; the electric slide rail 302 is fixedly connected to the mounting frame 301; the electric slider 303 is slidably connected to the electric slide rail 302; the electric actuator 304 is fixedly connected to the electric slider 303, and the electric actuator 304 is an electric push rod; the telescopic part of the electric actuator 304 is fixedly connected to the fixing frame 305; the motor II 3051 is fixedly connected to the fixing frame 305; the output shaft of the motor II 3051 is fixedly connected to the polishing sponge wheel 306; the polishing sponge wheel 306 is rotatably connected to the fixing frame 305; the fixing plate 307 is fixedly connected to the electric slider 303; the water pipe 308 is fixedly connected to the fixing plate 307; the connecting frame 309 is fixedly connected to the fixing frame 305; two squeezing wheels 310 are fixedly connected to the connecting frame 309 through a rotating shaft; the diversion groove 311 is fixedly connected to the electric slider 303; the pipeline 312 is fixedly connected to and communicated with the diversion groove 311.
[0033] The polishing sponge wheel 306 is arranged in an inclined shape for polishing the casserole blank 3 along the direction of rotation of the casserole blank 3, making the surface of the casserole blank 3 smoother.
[0034] One side of the diversion groove 311 close to the polishing sponge wheel 306 is arranged in an inclined shape for guiding water and mud, and reducing the splashing of water and mud onto the casserole blank 3.
[0035] The squeezing wheel 310 is arranged in a conical shape, and the diameter of the side close to the connecting frame 309 is larger than the diameter of the side far from the connecting frame 309, for squeezing the water on the polishing sponge wheel 306 and reducing the protruding amplitude of the polishing sponge wheel 306 towards the outside.
[0036] A plurality of through grooves are formed in the squeezing wheel 310 for squeezing out the water and adhered mud on the polishing sponge wheel 306 and quickly discharging the water and mud.
[0037] Previously, connect the water pump for the peripheral device to convey water to the water pipe 308. Since the microscopic burrs on the edge of the casserole blank 3 could not be completely eliminated after the trimming of the casserole blank 3, the roundness of the finished product edge was insufficient. By controlling the rotation of the electric turntable 2, all the connected components were driven to move, and then the casserole blank 3 was driven to rotate to the next station. Then, control the linear drive 212 to start and drive the round table 206 to move upward. The movement of the round table 206 drives the round pipe 207 to move, and the movement of the round pipe 207 drives all the connected components to move, and then drives the casserole blank 3 to move upward. Then, control the water pump for the peripheral device to start and convey water into the water pipe 308, and make the water flow to the polishing sponge wheel 306 and be absorbed by the polishing sponge wheel 306, so that the polishing sponge wheel 306 remains in a wet state. Then, control the electric slider 303 to start and move downward along the electric slide rail 302. The movement of the electric slider 303 drives the electric actuator 304 to move, and then drives all the connected components to move, so that the polishing sponge wheel 306 approaches the casserole blank 3, and control the electric actuator 304 to start and drive the fixing frame 305 to move, and then drive the polishing sponge wheel 306 to move to abut against the lower edge of the casserole blank 3, as Figure 9 shown, so as to adjust the positions of the casserole blank 3 and the polishing sponge wheel 306.
[0038] Then, control the motor II 3051 to start. The output shaft of the motor II 3051 rotates to drive the polishing sponge wheel 306 to rotate. At the same time, control the DD motor 213 to start. The output shaft of the DD motor 213 rotates to drive the round table 206 to rotate. The rotation of the round table 206 drives the round pipe 207 to rotate. The rotation of the round pipe 207 drives the bracket 2071 and the airbag 208 to rotate synchronously, and then drives the casserole blank 3 to rotate, so that the polishing sponge wheel 306 and the casserole blank 3 rotate synchronously, thereby polishing the casserole blank 3 through the polishing sponge wheel 306 and making the outer surface of the casserole blank 3 smoother and rounder.
[0039] Moreover, when the polishing sponge wheel 306 rotates, the polishing sponge wheel 306 is extruded by two extrusion wheels 310, and then the water in the polishing sponge wheel 306 is squeezed out and flows to the diversion groove 311, and then flows out along the diversion groove 311 and the pipeline 312. At the same time, clean water continuously flows out of the water pipe 308, so that the polishing sponge wheel 306 always remains in a wet state, so that the polishing sponge wheel 306 continuously polishes the casserole blank 3. And because the extrusion wheel 310 is set to be conical, and the diameter of the side close to the connecting frame 309 is larger than the diameter of the side far from the connecting frame 309, when the extrusion wheel 310 extrudes the polishing sponge wheel 306, the amplitude of the polishing sponge wheel 306 protruding outward can be reduced, so that the water in the polishing sponge wheel 306 flows between the two extrusion wheels 310 and then to the diversion groove 311.
[0040] And since a plurality of through grooves are formed in the extrusion wheel 310, the mud adhered to the polishing sponge wheel 306 can be extruded through the extrusion wheel 310 and quickly guided to the diversion groove 311, and then flow out along the diversion groove 311 and the pipeline 312, so as to avoid the adhesion of mud on the polishing sponge wheel 306, which affects the polishing effect of the polishing sponge wheel 306 on the casserole blank 3, thereby improving the smoothness of the outer surface of the casserole blank 3. In addition, the polishing sponge wheel 306 is arranged in an inclined shape, so that when the polishing sponge wheel 306 rotates synchronously with the casserole blank 3, the polishing sponge wheel 306 polishes the casserole blank 3 along the rotation direction of the casserole blank 3, thereby reducing the possibility of a large number of friction marks appearing on the surface of the casserole blank 3, and further improving the quality of the casserole blank 3.
[0041] The above are only examples of the present invention and are not intended to limit the present invention. Any equivalent replacement made within the principle of the present invention shall be included in the protection scope of the present invention. The content not elaborated in detail in the present invention belongs to the prior art well-known to those skilled in the art.
Claims
1. An energy-saving ceramic casserole processing device, comprising a base plate (1) and an electric turntable (2); the base plate (1) is mounted with the electric turntable (2), the electric turntable (2) being composed of a servo motor and a rotating disk, the output shaft of the servo motor rotating to drive the rotating disk to rotate; characterized in that: The invention also comprises a blank repairing component, a cylinder (205), a round table (206), a tray (2061), a round tube (207), a bracket (2071), an air bag (208), a round ring (209), an air pipe (210), an air pump (211) and a driving component; the blank repairing component for repairing the clay pot blank (3) is connected to the bottom plate (1); at least five cylinders (205) are rotatably connected to the rotating disk in the electric turntable (2); each cylinder (205) is fixedly connected to a round table (206); each round table (206) is rotatably connected to a tray (2061), and the tray (2061) is fixedly connected to the rotating disk in the electric turntable (2) via a fixing block (203); each round table (206) is fixedly connected to a round tube (207), and the lower part of the round tube (207) is provided with a plurality of a vent hole; each circular tube (207) is fixedly connected to a bracket (2071); each bracket (2071) is fixedly connected to an air bag (208), and the upper part of the air bag (208) is made of a hard material; the air bag (208) is fixedly connected to and communicated with the corresponding circular tube (207); each circular tube (207) is connected to a circular ring (209) that rotates and is connected; each circular ring (209) is fixedly connected to and communicated with an air pipe (210), and the air pipe (210) is fixedly connected to the tray (2061); each tray (2061) is installed with an air pump (211); the air pump (211) is connected to the air pipe (210); a driving assembly is connected to the electric turntable (2), each driving assembly is connected to the corresponding round table (206), and the driving assembly is used to drive the round table (206) to rotate.
2. The energy-saving ceramic casserole processing device according to claim 1 is characterized in that: The inner side of the tray (2061) is arranged in an inclined shape with a high middle portion and low surrounding portions.
3. The energy-saving ceramic casserole processing device according to claim 1 is characterized in that: The blank repairing assembly comprises a support frame (201), an electric mechanical arm (202), a fixed block (203) and a scraper (204); the support frame (201) is fixedly connected to the bottom plate (1); the electric mechanical arm (202) is mounted on the support frame (201); the telescopic end of the electric mechanical arm (202) is fixedly connected to the fixed block (203); and the scraper (204) is mounted on the fixed block (203).
4. An energy-saving ceramic casserole processing device according to any one of claims 1 to 3, characterized in that: It also includes an elastic member (2031); the elastic member (2031) is connected between the fixed block (203) and the scraper (204); one end of the elastic member (2031) is fixedly connected to the fixed block (203), and the other end of the elastic member (2031) is fixedly connected to the scraper (204).
5. The energy-saving ceramic casserole processing device according to claim 4 is characterized in that: It also includes a curved pipe (2041) and a branch pipe (2042); at least three branch pipes (2042) are fixedly connected to the scraper (204), and all the branch pipes (2042) penetrate the scraper (204); and one end of all the branch pipes (2042) away from the scraper (204) is fixedly connected to and communicates with the curved pipe (2041).
6. The energy-saving ceramic casserole processing device according to claim 5 is characterized in that: The polishing system is also included; the polishing system is connected to the bottom plate (1); the polishing system is connected to the electric turntable (2); the polishing system includes a mounting frame (301), an electric slide rail (302), an electric slider (303), an electric actuator (304), a fixing frame (305), a motor II (3051), a polishing sponge wheel (306), a fixing plate (307), a water pipe (308), a connecting frame (309), an extrusion wheel (310), a guide groove (311) and a pipe (312); the mounting frame (301) is fixedly connected to the bottom plate (1); the electric slide rail (302) is fixedly connected to the mounting frame (301); the electric slider (303) is slidably connected to the electric slide rail (302); the electric slider (303) is fixedly connected to the electric The electric actuator (304) is provided with a fixed frame (305); the telescopic portion of the electric actuator (304) is fixedly connected to a fixed frame (305); a motor II (3051) is fixedly connected to the fixed frame (305); the output shaft of the motor II (3051) is fixedly connected to a polishing sponge wheel (306); the polishing sponge wheel (306) is rotatably connected to the fixed frame (305); a fixed plate (307) is fixedly connected to the fixed plate (307); a water pipe (308) is fixedly connected to the fixed frame (305); a connecting frame (309) is fixedly connected to the fixed frame (305); at least two extrusion wheels (310) are fixedly connected to the connecting frame (309) via a rotating shaft; a guide groove (311) is fixedly connected to the electric slider (303); and a pipeline (312) is fixedly connected to and communicated with the guide groove (311).
7. The energy-saving ceramic casserole processing device according to claim 6 is characterized in that: The polishing sponge wheel (306) is arranged in an inclined shape.
8. The energy-saving ceramic casserole processing device according to claim 6 is characterized in that: A side of the guide groove (311) close to the polishing sponge wheel (306) is arranged to be inclined.
9. The energy-saving ceramic casserole processing device according to claim 6 is characterized in that: The extrusion wheel (310) is configured to be conical, and the diameter of the side close to the connecting frame (309) is larger than the diameter of the side away from the connecting frame (309).
10. The energy-saving ceramic casserole processing device according to claim 9 is characterized in that: The extrusion wheel (310) is provided with a plurality of through slots.