Multi-station full-automatic exquisite ceramic glazing machine
By designing a multi-station fully automatic ceramic glazing machine, a combination of a rotating disc and a suction cup is used to achieve batch glazing of ceramic products, solving the problem of low efficiency of individual glazing in existing equipment and improving glazing efficiency.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-23
- Publication Date
- 2026-04-10
AI Technical Summary
Existing ceramic glazing equipment can only glaze one ceramic bowl at a time, making batch processing impossible and resulting in low glazing efficiency.
A multi-station fully automatic ceramic glazing machine was designed, including a material box, a support plate, a rotating plate, a drive mechanism, a support plate, a lifting part, a rotating mechanism, and suction cups. By evenly arranging support plates and suction cups outside the rotating plate, and using a suction pump and a transmission pipe to achieve synchronous operation of multiple suction cups, batch glazing of ceramic products can be realized.
It improves the glazing efficiency of ceramic products, enables batch processing, and solves the problem of low efficiency in individual glazing.
Smart Images

Figure CN224103169U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of ceramic processing technology, and in particular to a multi-station fully automatic exquisite ceramic glazing machine. Background Technology
[0002] In the production and preparation of ceramic products, it is usually necessary to glaze the prepared ceramic body. Currently, the glazing of ceramic products is generally done manually. When glazing ceramic products manually, the ceramic product needs to be held by hand and then placed into the glaze liquid. After that, the ceramic product is taken out of the glaze liquid. When glazing in this way, the hands need to be immersed in the glaze liquid for a long time, which is not good for health.
[0003] The prior art CN216860116U discloses a glazing device for producing ceramic bowls. A lifting mechanism can hold the ceramic bowl, and through the cooperation of a transport mechanism and the lifting mechanism, the ceramic bowl can be transported to the top of the material cylinder. The lifting mechanism allows the ceramic bowl to enter the material cylinder for glazing. A triggering mechanism can activate the lifting mechanism, eliminating the need for manual activation and achieving automatic glazing of the ceramic bowls. A collecting mechanism can remove the glazed ceramic bowl from the suction cup and collect it, further saving time and labor by eliminating the need for manual removal.
[0004] However, the aforementioned glazing equipment can only glaze one ceramic bowl at a time, making batch processing impossible and resulting in low glazing efficiency for ceramic bowls. Utility Model Content
[0005] The purpose of this utility model is to provide a multi-station fully automatic ceramic glazing machine, which aims to solve the technical problem that existing glazing equipment can only glaze one ceramic bowl at a time, making batch operation impossible and resulting in low glazing efficiency for ceramic bowls.
[0006] To achieve the above object, the utility model provides a kind of multi-station full-automatic exquisite ceramic glazing machine, including tank, still including support disc, rotary disc, drive mechanism, support plate, lifting portion, rotating mechanism and suction cup, the support disc is located the tank outside, the rotary disc is located the support disc top, the drive mechanism is used to drive the rotary disc on the support disc along its own axis rotation, the rotary disc outside evenly provided with a plurality of support plate, each support plate below evenly provided with a plurality of lifting portion, each lifting portion below is connected with two suction cups by rotating mechanism, two suction cups below the same lifting portion are communicated with the same suction pump by transmission pipe respectively.
[0007] Wherein, the drive mechanism includes drive part and rotating rod, the support disc has placement groove, the drive part is located in the placement groove, the rotating rod is connected with the output end of the drive part, and is arranged below the rotary disc.
[0008] Wherein, the support disc is provided with rotation groove at the position away from the drive part, the rotary disc below is provided with rotating ring, the rotating ring is located in the rotation groove, and rotates along its own axis in the rotation groove.
[0009] Wherein, the rotating mechanism includes support block, rotating rod and rotating block, the support block is connected with the output end of the lifting portion, and is located below the lifting portion, the rotating rod is movably arranged in the support block, the rotating block is fixedly arranged outside the rotating rod, and is arranged on the side of the suction cup close to the support block.
[0010] Wherein, the rotating direction of two rotating rods movably arranged in the support block is opposite, to achieve the purpose that the rotating direction of two suction cups outside the support block is opposite.
[0011] The utility model relates to a kind of multi-station full-automatic exquisite ceramic glazing machine, the support disc is located the tank outside, the rotary disc is located the support disc top, the drive mechanism is used to drive the rotary disc on the support disc along its own axis rotation, the rotary disc outside evenly provided with a plurality of support plate, each support plate below evenly provided with a plurality of lifting portion, each lifting portion below is connected with two suction cups by rotating mechanism, two suction cups below the same lifting portion are communicated with the same suction pump by transmission pipe respectively, this glazing machine can be batched to the glazing treatment of ceramic product, to improve the glazing efficiency of ceramic product, solve the existing glazing equipment when glazing operation is carried out to ceramic bowl, only one ceramic bowl is separately glazed in one time, cannot batch operation, leading to the technical problem of low glazing efficiency of ceramic bowl. ACCURACY OF DRAWINGS
[0012] In order to more clearly illustrate the technical solutions of the embodiments of the present application or the prior art, the following will briefly introduce the drawings needed to be used in the embodiments or prior art description.
[0013] Fig. 1 is the overall structure schematic diagram of the multi-station full-automatic exquisite ceramic glazing machine of the first embodiment of the present application.
[0014] Fig. 2 is the cross-sectional schematic diagram along the driving part of the multi-station full-automatic exquisite ceramic glazing machine of the first embodiment of the present application.
[0015] Fig. 3 is the cross-sectional schematic diagram along the rotating rod of the multi-station full-automatic exquisite ceramic glazing machine of the first embodiment of the present application.
[0016] In the figure: 101-material box, 102-supporting disc, 103-rotating disc, 104-supporting plate, 105-lifting part, 106-suction disc, 107-driving part, 108-rotating rod, 109-supporting block, 110-rotating rod, 111-rotating block, 112-conveying pipe, 113-suction pump, 114-putting slot, 115-rotating slot, 116-rotating ring, 117-rotating part. DETAILED DESCRIPTION
[0017] The embodiments of the present application will be described in detail below, and the examples of the embodiments are shown in the drawings, wherein the same or similar reference signs represent the same or similar elements or elements having the same or similar functions throughout. The embodiments described below by referring to the drawings are exemplary and are intended to explain the present application, and cannot be understood as a limitation of the present application.
[0018] First embodiment
[0019] Please refer to Figs. 1-3 , Fig. 1 is the overall structure schematic diagram of the multi-station full-automatic exquisite ceramic glazing machine of the first embodiment of the present application, Fig. 2 is the cross-sectional schematic diagram along the driving part 107 of the multi-station full-automatic exquisite ceramic glazing machine of the first embodiment of the present application, Fig. 3 is the cross-sectional schematic diagram along the rotating rod 110 of the multi-station full-automatic exquisite ceramic glazing machine of the first embodiment of the present application.
[0020] The utility model provides a kind of multi-station full-automatic exquisite porcelain glazing machine: including tank 101, support disc 102, rotary disc 103, driving mechanism, support plate 104, lifting portion 105, rotating mechanism and suction cup 106, the driving mechanism includes driving part 107 and rotating rod 108, the rotating mechanism includes support block 109, rotating rod 110 and rotating block 111.It is understood that the foregoing scheme can be used in the scene of glazing treatment to the body of ceramic product.
[0021] In the embodiment, by setting a plurality of support plates 104 outside the rotary disc 103, the support plates 104 can rotate along the axis of the rotary disc 103 above the support disc 102, and by setting a plurality of suction cups 106 below the support plates 104 through the lifting portion 105, each suction cup 106 can adsorb a ceramic product, and the ceramic product adsorbed by the suction cup 106 is rotated above the tank 101 and gradually extends into the tank 101, so that batch glazing treatment of ceramic products can be performed, thereby improving the glazing efficiency of ceramic products and solving the technical problem that the existing glazing equipment can only perform single glazing on one ceramic bowl at a time and cannot perform batch operation, resulting in low glazing efficiency of ceramic bowls.
[0022] The support disc 102 is located outside the tank 101, the rotary disc 103 is located above the support disc 102, the driving mechanism is used to drive the rotary disc 103 to rotate along its own axis on the support disc 102, a plurality of support plates 104 are uniformly arranged outside the rotary disc 103, a plurality of lifting portions 105 are uniformly arranged below each support plate 104, two suction cups 106 are connected below each lifting portion 105 through the rotating mechanism, the two suction cups 106 below the same lifting portion 105 are respectively communicated with the same suction pump 113 through a transmission pipe 112, the rotary disc 103 can rotate along its own axis above the support disc 102, driving a plurality of support plates 104 outside the rotary disc 103 to rotate along the axis of the rotary disc 103 above the support disc 102, the suction pump 113, the transmission pipe 112 and the suction cup 106 are sequentially communicated, so that after the suction pump 113 is started, the suction force generated at the output end of the suction pump 113 can extract air in the suction cup 106, forming negative pressure in the suction cup 106, so that the suction cup 106 can adsorb a ceramic bowl.
[0023] Secondly, the support disc 102 is provided with a placing groove 114, the driving part 107 is located in the placing groove 114, the rotating rod 108 is connected with the output end of the driving part 107 and is arranged below the rotating disc 103, the output end of the driving part 107 is connected with the rotating rod 108 and drives the rotating rod 108 to rotate along the axis of the rotating rod 108 in the placing groove 114, so as to drive the rotating disc 103 to rotate along the axis of the rotating disc 103 above the support disc 102.
[0024] Thirdly, the support disc 102 is provided with a rotating groove 115 at a position away from the driving part 107, and a rotating ring 116 is arranged below the rotating disc 103, the rotating ring 116 is located in the rotating groove 115 and rotates along the axis of the rotating ring 116 in the rotating groove 115, when the rotating disc 103 rotates along the axis of the rotating disc 103 above the support disc 102, the rotating ring 116 can rotate along the axis of the rotating disc 103 in the rotating groove 115, so that the rotating ring 116 can support the rotating disc 103, so as to improve the support stability of the rotating disc 103.
[0025] In addition, the support block 109 is connected with the output end of the lifting part 105 and is located below the lifting part 105, the rotating rod 110 is movably arranged in the support block 109, the rotating block 111 is fixedly arranged outside the rotating rod 110 and is arranged on the side of the suction disc 106 close to the support block 109, the output end of the lifting part 105 is connected with the support block 109 and drives the support block 109 to move up and down below the support plate 104, the support block 109 is provided with two grooves, the rotating rod 110 is rotatably arranged in each groove of the support block 109, each rotating rod 110 is connected with the output end of the rotating part 117 and drives the rotating rod 110 to rotate along the axis of the rotating rod 110 in the groove of the support block 109, so as to drive the rotating block 111 to rotate along the axis of the rotating rod 110 in the groove of the support block 109, and further drive the suction disc 106 to rotate along the axis of the rotating rod 110 outside the support block 109.
[0026] Finally, the rotating directions of the two rotating rods 110 rotatably arranged in the support block 109 are opposite, so as to achieve the purpose that the rotating directions of the two suction discs 106 outside the support block 109 are opposite.
[0027] When the ceramic product is placed outside the two suction cups 106 of the support block 109, the two suction cups 106 are extended into the ceramic product, the rotating part 117 is started, the power output by the output end of the rotating part 117 drives the rotating rod 110 to rotate along the axis of the rotating rod 110 in the groove of the support block 109, thereby driving the rotating block 111 to rotate along the axis of the rotating rod 110 in the groove of the support block 109, and further driving the suction cup 106 to rotate along the axis of the rotating rod 110 outside the support block 109, so that the suction cup 106 can contact the ceramic product, when the suction cup 106 contacts the ceramic product, the suction pump 113 is started, the suction force generated by the output end of the suction pump 113 can extract the air in the suction cup 106, and a negative pressure is formed in the suction cup 106, so that each suction cup 106 below the support plate 104 can adsorb a ceramic product.
[0028] After the ceramic product is adsorbed, the driving part 107 is started, the power output by the output end of the driving part 107 drives the rotating rod 108 to rotate along its own axis in the placing groove 114, thereby driving the rotating disc 103 to rotate along the axis of the rotating disc 103 above the support disc 102, and further driving the plurality of support plates 104 outside the rotating disc 103 to rotate along the axis of the rotating disc 103 above the support disc 102, through the rotation of the plurality of support plates 104 outside the rotating disc 103 along the axis of the rotating disc 103 above the support disc 102, the suction cup 106 below the support plate 104 is driven to rotate along the axis of the rotating disc 103 outside the support disc 102, thereby driving the ceramic product adsorbed by the suction cup 106 below the support plate 104 to rotate along the axis of the rotating disc 103 outside the support disc 102, and further rotating the ceramic product above the material box 101, then the lifting part 105 is started, the power output by the output end of the lifting part 105 drives the support block 109 to move up and down below the support plate 104, thereby driving the suction cup 106 outside each support block 109 to move up and down below the support plate 104, thereby driving the ceramic product adsorbed by the suction cup 106 below the support plate 104 to move up and down below the support plate 104, and further gradually extending the ceramic product into the material box 101, so as to realize batch glazing of the ceramic product, thereby improving the glazing efficiency of the ceramic product, solving the technical problem that the existing glazing equipment can only glaze one ceramic bowl at a time and cannot be batched, resulting in low glazing efficiency of the ceramic bowl.
[0029] The above disclosed is only a preferred embodiment of the utility model, of course, cannot with this to limit the utility model right scope, the person skilled in the art can understand that the whole or part processes of the above-mentioned embodiment are realized, and the equivalent change made according to the utility model claim still belongs to the range covered by the utility model.
Claims
1. A multi-station full-automatic fine porcelain glazing machine comprising a material box, characterized in that: it further comprises a support disc, a rotating disc, a driving mechanism, a support plate, a lifting part, a rotating mechanism and a suction disc, the support disc is located outside the material box, the rotating disc is located above the support disc, the driving mechanism is used for driving the rotating disc to rotate on the support disc along its own axis, the rotating disc is uniformly provided with a plurality of support plates, each support plate is uniformly provided with a plurality of lifting parts below, each lifting part is connected with two suction discs below through the rotating mechanism, and the two suction discs below the same lifting part are respectively communicated with the same suction pump through transmission pipes.
2. The multi-station full-automatic fine porcelain glazing machine according to claim 1, characterized in that: the driving mechanism comprises a driving part and a rotating rod, the support disc has a placing groove, the driving part is located in the placing groove, and the rotating rod is connected with the output end of the driving part and is arranged below the rotating disc.
3. The multi-station full-automatic fine porcelain glazing machine according to claim 2, characterized in that: the support disc is provided with a rotating groove at a position away from the driving part, the rotating disc is provided with a rotating ring below, and the rotating ring is located in the rotating groove and rotates along its own axis in the rotating groove.
4. The multi-station full-automatic fine porcelain glazing machine according to claim 1, characterized in that: the rotating mechanism comprises a support block, a rotating rod and a rotating block, the support block is connected with the output end of the lifting part and located below the lifting part, the rotating rod is movably arranged in the support block, and the rotating block is fixedly arranged outside the rotating rod and located on the side of the suction disc close to the support block.
5. The multi-station full-automatic fine porcelain glazing machine according to claim 4, characterized in that: the rotating directions of the two rotating rods movably arranged in the support block are opposite, so that the rotating directions of the two suction discs outside the support block are opposite.
Citation Information
Patent Citations
Glazing equipment for ceramic bowl production
CN216860116U