Ceramic cup machining combination device

By designing a ceramic cup processing combination device, the automatic combination of the cup handle and the cup body is realized, solving the problems of low efficiency and errors caused by manual operation, and improving production efficiency and finished product quality.

CN223130992UActive Publication Date: 2025-07-22JIANGXI BERG CERAMICS CO LTD
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Patent Information

Application Number
CN202421899244.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-07
Publication Date
2025-07-22
Estimated Expiration
2034-08-07

AI Technical Summary

Technical Problem

In the processing of existing cups, the combination of cup blank and cup handle requires manual operation, resulting in high labor consumption, easy errors and low efficiency.

Method used

A ceramic cup processing combination device is designed, including installation columns, adhesive material boxes, press adhesive frames and servo motors, to realize automated cup handle adhesive slurry coating and cup body combination, and to achieve quantitative glue coating and automated operations through extraction pumps, feed pipes and telescopic cylinders.

Benefits of technology

It improves work efficiency, reduces manual operation volume, avoids mistakes caused by manual fatigue, realizes the automatic combination of cup handle and cup body, and improves the quality and production efficiency of finished products.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model discloses a ceramic cup processing combination device which comprises an installation column and an installation plate, the front side of the left side of the installation column is fixedly connected with the installation plate, installation bolts are arranged on the installation plate in a threaded penetrating mode at equal intervals, a pressing adhesion frame is fixedly connected to the upper portion of the right portion of the installation column, and an assembly plate is arranged at the bottom of the pressing adhesion frame. A sticky material box is fixedly connected to the lower portion of a wall cavity of the mounting column, ceramic blank sticky slurry can be quantitatively discharged to wait to be coated at the two ends of a cup handle, the situation that solidification and pollution are caused when a large amount of ceramic blank sticky slurry is received and makes contact with surrounding air is avoided, combined operation is more automatic, and the practicability is high. A worker does not need to manually take cup handles one by one and press and adhere cup bodies one by one, time and labor are saved, the working efficiency is greatly improved, the cup handles adhere to ceramic blank sticky slurry, automatic feeding of the cup bodies is carried out alternately, the designed structure is more reasonable, automatic feeding and discharging are achieved, and the workload of the worker is reduced.
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Description

Technical Field

[0001] The utility model relates to the technical field of cup processing, and more specifically, to a combined device for processing ceramic cups. Background Art

[0002] In the existing cup processing, the cup blanks and cup handles are often manually glued and combined. Since the cup blanks and cup handles on the production line are mass-produced, a large amount of labor is required for operation. At the same time, after a long period of high-intensity work, the workers are prone to fatigue, resulting in human errors, which not only affects the combination effect of the finished cups and produces many defective products, but also slows down the work efficiency.

[0003] For the problems in the related art, no effective solution has been proposed yet. Summary of the Utility Model

[0004] In view of the problems in the related art, the utility model provides a combined device for processing ceramic cups to overcome the above technical problems existing in the existing related art.

[0005] Therefore, the specific technical solution adopted by the utility model is as follows:

[0006] A combined device for processing ceramic cups includes a mounting column and a mounting plate. The left front side of the mounting column is fixedly connected to the mounting plate respectively. The mounting plate is equidistantly provided with mounting bolts in a threaded through manner. The upper right part of the mounting column is fixedly connected with a pressing and gluing frame. The bottom of the pressing and gluing frame is provided with an assembly plate. The lower part of the wall cavity of the mounting column is fixedly connected with a gluing material box. The lower right part of the mounting column is fixedly connected with a support plate. The bottom of the support plate is fixedly connected with an adjusting seat. The bottom of the adjusting seat is connected with a U-shaped feeding frame. The top of the U-shaped feeding frame is equidistantly connected with cup body placing seats.

[0007] Preferably, a storage cavity is provided below the wall cavity of the gluing material box, and a pumping pump is fixedly connected above the wall cavity. The middle part of the wall cavity of the support plate is fixedly connected with a feeding pipe. The left end of the feeding pipe is fixedly connected with the output end of the pumping pump through an electromagnetic valve in a through manner. The input end of the pumping pump extends into the storage cavity through a pipeline.

[0008] Preferably, connecting plates are equidistantly embedded and fixed on the top of the support plate. Storage grooves are symmetrically connected to the top of the connecting plates. The top side of the feeding pipe is fixedly connected with the inside of the storage grooves through pipelines respectively.

[0009] Preferably, the pressing and gluing frame includes a top plate and a telescopic cylinder. The middle part of the top side of the top plate is fixedly connected with the telescopic cylinder. The fixed end of the telescopic cylinder penetrates through the bottom side of the top plate, and the movable end is fixedly connected with the middle part of the top side of the assembly plate.

[0010] Preferably, sliding rods are symmetrically and fixedly connected to the top of the assembly plate. The sliding rods respectively pass through the top of the top plate movably. Connecting grooves are dug at equal intervals on the front side of the assembly plate. The connecting grooves penetrate through the bottom side of the assembly plate and correspond to the positions of the connecting plates. A cup handle placement plate is fixedly connected to the rear side of the inner wall of the connecting groove.

[0011] Preferably, the adjusting seat includes an installation box and a servo motor. The left side of the installation box is fixedly connected to the servo motor. The servo motor is fixedly connected to the wall cavity of the installation column. The right side of the inner wall of the installation box is connected to a lead screw through a bearing. A guide rod is arranged on one side of the lead screw. Both ends of the guide rod are fixedly connected to the inner wall of the installation box. The output shaft of the servo motor is fixedly connected to the left end of the lead screw.

[0012] Preferably, a moving plate is sleeved on the outer sides of the lead screw and the guide rod. The bottom side of the moving plate is fixedly connected to the left edge of the inner wall of the U-shaped feeding frame. A lead screw nut is arranged inside the moving plate through a ball bearing and is in threaded connection with the lead screw through the lead screw nut.

[0013] The beneficial effects of the present utility model are as follows: It can quantitatively discharge the ceramic embryo adhesive slurry for waiting to be coated on both ends of the cup handle, avoiding the situation that a large amount of ceramic embryo adhesive slurry is taken and contacts with the surrounding air to cause solidification and pollution. The combined operation is more automated, and it is not necessary for workers to manually take each cup handle and press and adhere to each cup body one by one, saving time and effort and greatly improving work efficiency. The cup handle picks up the ceramic embryo adhesive slurry and the cup body is automatically fed alternately. The design structure is more reasonable, and the feeding and discharging are automated, reducing the workload of workers. Description of the Drawings

[0014] In order to more clearly illustrate the technical solutions in the embodiments of the present utility model or the prior art, the following will briefly introduce the drawings required for use in the embodiments. Obviously, the drawings in the following description are only some embodiments of the present utility model. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings.

[0015] Figure 1 is the overall structural schematic diagram of a ceramic cup processing combination device according to an embodiment of the present utility model;

[0016] Figure 2 is the internal structural schematic diagram of the support plate and the adhesive box of a ceramic cup processing combination device according to an embodiment of the present utility model;

[0017] Figure 3 is the external structural schematic diagram of the pressing and adhering frame of a ceramic cup processing combination device according to an embodiment of the present utility model;

[0018] Figure 4It is a schematic internal structure diagram of an adjustment seat of a ceramic cup processing combination device according to an embodiment of the present invention.

[0019] In the figure:

[0020] 1. Mounting column; 2. Mounting plate; 3. Mounting bolt; 4. Pressing and adhering frame; 5. Assembly plate; 6. Adhesive material box; 7. Support plate; 8. Adjustment seat; 9. U-shaped feeding frame; 10. Cup body placement seat; 11. Storage cavity; 12. Extraction pump; 13. Feeding pipe; 14. Connecting plate; 15. Storage groove; 16. Top plate; 17. Telescopic cylinder; 18. Sliding rod; 19. Connecting groove; 20. Cup handle placement plate; 21. Installation box; 22. Servo motor; 23. Lead screw; 24. Guide rod; 25. Moving plate. Specific embodiments

[0021] To further illustrate the embodiments, the present invention provides accompanying drawings, which are part of the disclosure of the present invention. They are mainly used to illustrate the embodiments and can be used in conjunction with the relevant descriptions in the specification to explain the operating principles of the embodiments. With reference to these contents, those of ordinary skill in the art should be able to understand other possible implementation manners and the advantages of the present invention. The components in the figures are not drawn to scale, and similar component symbols are usually used to represent similar components.

[0022] According to an embodiment of the present invention, a ceramic cup processing combination device is provided.

[0023] Embodiment 1

[0024] Such as Figures 1-4As shown in the figure, a combined device for processing ceramic cups according to an embodiment of the present invention includes a mounting post 1 and a mounting plate 2. The left front side of the mounting post 1 is fixedly connected to the mounting plate 2 respectively. The mounting plate 2 is equidistantly threaded and penetrated with mounting bolts 3. The upper right part of the mounting post 1 is fixedly connected with a pressing and adhering frame 4. The bottom of the pressing and adhering frame 4 is provided with an assembly plate 5. The lower wall cavity of the mounting post 1 is fixedly connected with an adhesive material box 6. The lower right side of the mounting post 1 is fixedly connected with a support plate 7. The bottom of the support plate 7 is fixedly connected with an adjusting seat 8. The bottom of the adjusting seat 8 is connected with a U-shaped feeding frame 9. The top of the U-shaped feeding frame 9 is equidistantly connected with cup body placing seats 10. The lower part of the wall cavity of the adhesive material box 6 is provided with a storage cavity 11, and the upper part of the wall cavity is fixedly connected with a pumping pump 12. The middle part of the wall cavity of the support plate 7 is fixedly connected with a feeding pipe 13. The left end of the feeding pipe 13 is fixedly connected with the output end of the pumping pump 12 through an electromagnetic valve in a penetrating manner. The input end of the pumping pump 12 extends into the storage cavity 11 through a pipeline. The top of the support plate 7 is equidistantly embedded and fixed with connecting plates 14. The top of the connecting plates 14 is symmetrically connected with storage grooves 15. The top side of the feeding pipe 13 is fixedly connected with the inside of the storage grooves 15 through pipelines respectively. The ceramic embryo adhesive slurry can be stored in the storage cavity 11 of the adhesive material box 6. By starting the pumping pump 12, the ceramic embryo adhesive slurry can be pumped into the feeding pipe 13, and then the ceramic embryo adhesive slurry is injected into the storage grooves 15 through the pipelines at the top of the feeding pipe 13, so as to quantitatively discharge the ceramic embryo adhesive slurry and wait to be coated at both ends of the cup handle, avoiding the situation that a large amount of ceramic embryo adhesive slurry contacts the surrounding air and solidifies or is polluted.

[0025] Embodiment 2

[0026] As Figures 1-4As shown in the figure, a ceramic cup processing combination device according to an embodiment of the present utility model includes a mounting column 1 and a mounting plate 2. The left front side of the mounting column 1 is fixedly connected to the mounting plate 2 respectively. The mounting plate 2 is equidistantly threaded and penetrated with mounting bolts 3. The upper right part of the mounting column 1 is fixedly connected with a pressing and adhering frame 4. The bottom of the pressing and adhering frame 4 is provided with an assembly plate 5. The lower part of the wall cavity of the mounting column 1 is fixedly connected with an adhesive material box 6. The lower right part of the mounting column 1 is fixedly connected with a support plate 7. The bottom of the support plate 7 is fixedly connected with an adjusting seat 8. The bottom of the adjusting seat 8 is connected with a U-shaped feeding frame 9. The top of the U-shaped feeding frame 9 is equidistantly connected with cup body placing seats 10. The pressing and adhering frame 4 includes a top plate 16 and a telescopic cylinder 17. The middle part of the top side of the top plate 16 is fixedly connected with the telescopic cylinder 17. The fixed end of the telescopic cylinder 17 penetrates the bottom side of the top plate 16, and the movable end is fixedly connected with the middle part of the top side of the assembly plate 5. The top of the assembly plate 5 is symmetrically and fixedly connected with sliding rods 18. The sliding rods 18 respectively penetrate the top of the top plate 16 movably. The front side of the assembly plate 5 is equidistantly dug with connecting grooves 19. The connecting grooves 19 penetrate the bottom side of the assembly plate 5 and correspond to the positions of the connecting plates 14. The rear side of the inner wall of the connecting groove 19 is fixedly connected with a cup handle placing plate 20. The cup handle ceramic blank can be placed in the connecting groove 19 of the assembly plate 5, and then the cup handle ceramic blank is supported by the cup handle placing plate 20, so that the two ends of the cup handle ceramic blank face down. Then the telescopic cylinder 17 is started. The movable end of the telescopic cylinder 17 drives the assembly plate 5 to descend, so that the assembly plate 5 drives the cup handle ceramic blank to approach the support plate 7, so that the two ends of the cup handle ceramic blank are respectively inserted into the storage grooves 15 to pick up the ceramic blank adhesive slurry. Then, the movable end of the telescopic cylinder 17 is controlled to reset and wait for the ceramic cup body to feed. After the ceramic cup body feeds corresponding to the position directly below the connecting groove 19, the telescopic cylinder 17 is controlled again, so that the two ends of the cup handle with the picked-up ceramic blank adhesive slurry contact and press the outer wall of the ceramic cup body for bonding and fixing. The combination operation is more automated, and it is not necessary for the staff to manually pick up the cup handles one by one and press and bond the cup bodies one by one, which saves time and effort and greatly improves the work efficiency.

[0027] Embodiment III

[0028] As Figures 1-4As shown in the figure, a combined device for processing ceramic cups according to an embodiment of the present utility model includes a mounting column 1 and a mounting plate 2. The left front side of the mounting column 1 is fixedly connected to the mounting plate 2 respectively. Mounting bolts 3 are equidistantly threaded through the mounting plate 2. Above the right part of the mounting column 1, a pressing and adhering frame 4 is fixedly connected. An assembly plate 5 is arranged at the bottom of the pressing and adhering frame 4. A sticky material box 6 is fixedly connected to the lower part of the wall cavity of the mounting column 1. A support plate 7 is fixedly connected to the lower right side of the mounting column 1. A regulating seat 8 is fixedly connected to the bottom of the support plate 7. A U-shaped feeding frame 9 is connected to the bottom of the regulating seat 8. Cup placing seats 10 are equidistantly connected to the top of the U-shaped feeding frame 9. The regulating seat 8 includes a mounting box 21 and a servo motor 22. The left side of the mounting box 21 is fixedly connected to the servo motor 22. The servo motor 22 is fixedly connected to the wall cavity of the mounting column 1. The right side of the inner wall of the mounting box 21 is connected to a lead screw 23 through a bearing. A guide rod 24 is arranged on one side of the lead screw 23. Both ends of the guide rod 24 are fixedly connected to the inner wall of the mounting box 21. The output shaft of the servo motor 22 is fixedly connected to the left end of the lead screw 23. A moving plate 25 is sleeved on the outer sides of the lead screw 23 and the guide rod 24. The bottom side of the moving plate 25 is fixedly connected to the left edge of the inner wall of the U-shaped feeding frame 9. A lead screw nut is arranged inside the moving plate 25 through a ball bearing and is in threaded connection with the lead screw 23 through the lead screw nut. When the cup handle for picking up the sticky slurry of the ceramic blank waits for the ceramic cup body to be fed, the ceramic cup body can be placed in the cup placing seat 10. By starting the servo motor 22, the output shaft of the servo motor 22 drives the lead screw 23 to rotate, so that the moving plate 25 on the outer sides of the lead screw 23 and the guide rod 24 drives the U-shaped feeding frame 9 to move to the left, covering the support plate 7. Multiple ceramic blank bodies can be automatically fed, and the cup handle is lowered and pressed for adhesion. The processes of the cup handle picking up the sticky slurry of the ceramic blank and the automatic feeding of the cup body are carried out alternately. The design structure is more reasonable, and the automatic feeding and discharging reduce the workload of the staff.

[0029] In summary, by means of the above technical solution of the present utility model, when this device is in use, the cup handle picks up the ceramic blank adhesive slurry and the cup body automatically feeds materials alternately. The design structure is more reasonable. The automatic feeding and discharging reduce the workload of the staff. The cup handle ceramic blank can be placed in the connecting groove 19 of the assembly plate 5, and then the cup handle ceramic blank is supported by the cup handle placement plate 20, so that the two ends of the cup handle ceramic blank face down. Then, the telescopic cylinder 17 is started. The movable end of the telescopic cylinder 17 drives the assembly plate 5 to descend, so that the assembly plate 5 drives the cup handle ceramic blank to approach the support plate 7, and the two ends of the cup handle ceramic blank are respectively inserted into the storage groove 15 to pick up the ceramic blank adhesive slurry. Then, the movable end of the telescopic cylinder 17 is controlled to reset and wait for the ceramic cup body to feed. The servo motor 22 is started, and the output shaft of the servo motor 22 drives the lead screw 23 to rotate, so that the moving plate 25 on the outer sides of the lead screw 23 and the guide rod 24 drives the U-shaped feeding frame 9 to move to the left, so that the U-shaped feeding frame 9 covers above the support plate 7, and can automatically feed multiple ceramic blanks and press and bond them with the cup handle descending. The telescopic cylinder 17 is controlled again, so that the two ends of the cup handle picking up the ceramic blank adhesive slurry contact and press the outer wall of the ceramic cup body for bonding and fixing.

[0030] The above are only the preferred embodiments of the present utility model and are not intended to limit the present utility model. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present utility model shall be included in the protection scope of the present utility model.

Claims

1. A combined device for processing ceramic cups, comprising a mounting column (1) and a mounting plate (2), characterized in that, The left and front sides of the mounting post (1) are fixedly connected to the mounting plate (2) respectively. The mounting bolts (3) are threadedly penetrated through the mounting plate (2) at equal intervals. The upper part of the right side of the mounting post (1) is fixedly connected with a pressing and adhering frame (4). An assembly plate (5) is arranged at the bottom of the pressing and adhering frame (4). The lower part of the wall cavity of the mounting post (1) is fixedly connected with an adhesive material box (6). The lower part of the right side of the mounting post (1) is fixedly connected with a support plate (7). The bottom of the support plate (7) is fixedly connected with an adjusting seat (8). The bottom of the adjusting seat (8) is connected with a U-shaped feeding frame (9). The top of the U-shaped feeding frame (9) is connected with cup placing seats (10) at equal intervals.

2. The processing combination device for a ceramic cup according to claim 1, characterized in that, A storage cavity (11) is arranged at the lower part of the wall cavity of the adhesive material box (6), and a pumping pump (12) is fixedly connected above the wall cavity. The middle part of the wall cavity of the support plate (7) is fixedly connected with a feeding pipe (13). The left end of the feeding pipe (13) is fixedly connected with the output end of the pumping pump (12) through a solenoid valve in a penetrating manner. The input end of the pumping pump (12) extends into the storage cavity (11) through a pipeline.

3. A combined device for processing ceramic cups according to claim 2, characterized in that, The connecting plates (14) are fixedly embedded and arranged at equal intervals on the top of the support plate (7). The storage grooves (15) are symmetrically connected to the top of the connecting plates (14). The top side of the feeding pipe (13) is fixedly connected with the inside of the storage grooves (15) respectively through pipelines.

4. A combined device for processing ceramic cups according to claim 3, characterized in that, The pressing and adhering frame (4) includes a top plate (16) and a telescopic cylinder (17). The middle part of the top side of the top plate (16) is fixedly connected with the telescopic cylinder (17). The fixed end of the telescopic cylinder (17) penetrates through the bottom side of the top plate (16), and the movable end is fixedly connected with the middle part of the top side of the assembly plate (5).

5. The combined device for processing ceramic cups according to claim 4, characterized in that, The sliding rods (18) are symmetrically and fixedly connected to the top of the assembly plate (5). The sliding rods (18) respectively penetrate through the top of the top plate (16) movably. Connecting grooves (19) are dug at equal intervals on the front side of the assembly plate (5). The connecting grooves (19) penetrate through the bottom side of the assembly plate (5) and correspond to the positions of the connecting plates (14). The rear side of the inner wall of the connecting grooves (19) is fixedly connected with cup handle placing plates (20).

6. The processing combination device for a ceramic cup as claimed in claim 5, wherein The adjusting seat (8) includes an installation box (21) and a servo motor (22). The left side of the installation box (21) is fixedly connected with the servo motor (22). The servo motor (22) is fixedly connected with the wall cavity of the mounting post (1). The right side of the inner wall of the installation box (21) is connected with a lead screw (23) through a bearing. A guide rod (24) is arranged on one side of the lead screw (23). Both ends of the guide rod (24) are fixedly connected with the inner wall of the installation box (21). The output shaft of the servo motor (22) is fixedly connected with the left end of the lead screw (23).

7. A combined device for processing ceramic cups according to claim 6, characterized in that, A moving plate (25) is sleeved on the outer sides of the lead screw (23) and the guide rod (24). The bottom side of the moving plate (25) is fixedly connected with the left edge of the inner wall of the U-shaped feeding frame (9). A lead screw nut is arranged inside the moving plate (25) through a ball bearing, and the moving plate (25) is in threaded connection with the lead screw (23) through the lead screw nut in a matching manner.