Automatic conveying belt for ceramic container production

By setting cleaning components and lane-changing components on the automatic conveyor belt for ceramic container production, the problem of the conveyor belt being unable to be cleaned and guided is solved, and the functionality and applicability of surface cleaning and container transfer is improved.

CN223149444UActive Publication Date: 2025-07-25JIANGSU YIXIANG CERAMIC TECH CO LTD
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Patent Information

Application Number
CN202422241410.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-13
Publication Date
2025-07-25
Estimated Expiration
2034-09-13

AI Technical Summary

Technical Problem

The existing automatic conveyor belt for the production of ceramic containers cannot effectively clean the dust on the container surface during the transmission process, and it is not convenient to guide the container to another conveyor belt, reducing its functionality and applicability.

Method used

An automatic transmission belt is designed, equipped with cleaning components and lane-changing components. The cleaning components clean the container surface through a servo motor drive circular brush, and the lane-changing components realize the guidance and transfer of the container through a servo motor control limiting plate.

Benefits of technology

It realizes the cleaning of the surface of the ceramic container during the transmission process, improves functionality, and can effectively guide the container to another conveyor belt, improving applicability.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of conveying belts, and discloses an automatic conveying belt for ceramic container production, which comprises a conveying belt A. The two sides of the conveying belt A are fixedly connected with baffles, the surfaces of the baffles are fixedly connected with a shell, the interior of the shell is rotatably connected with a cleaning assembly, the interior of the baffles is fixedly connected with a channel changing assembly, and the channel changing assembly is fixedly connected with a conveying belt. A conveying belt B is fixedly connected to one side of the baffle. By arranging the cleaning assembly, when a worker uses the automatic conveying belt to convey ceramic containers, a servo motor A is connected to an external power source to be powered on, a transmission rod A drives a rotating shaft A to rotate, a round brush A is driven by the rotating shaft A to rotate to clean the side faces of the ceramic containers, and meanwhile the rotating shaft A drives a rotating shaft B to rotate through a transmission belt; as the rotating shaft B is fixedly connected with the bevel gear A, the bevel gear A drives the bevel gear B meshed with the bevel gear A to rotate, and then the round brush B is driven to rotate to clean the top of the ceramic container.
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Description

Technical Field

[0001] The utility model relates to the technical field of conveyor belts, in particular to an automatic conveyor belt for ceramic container production. Background Art

[0002] Conveyor belts are usually used for long-distance, large-span, large-capacity and high-speed material transportation. The automatic conveyor belt system in ceramic container production is mainly used to efficiently and continuously move ceramic containers or their raw materials in the production line. They can transfer materials between different production stages, optimize the production process and improve production efficiency.

[0003] Currently, the existing automatic conveyor belts for ceramic container production on the market have the following disadvantages:

[0004] Since dust may fall on the surface of ceramic containers during transportation, the existing automatic conveyor belts are not convenient for cleaning the surface of ceramic containers during transportation, reducing the functionality of the automatic conveyor belts;

[0005] Since the transportation routes of ceramic containers on the conveyor belt are different, the existing automatic conveyor belts are not convenient for guiding the ceramic containers on the conveyor belt to another conveyor belt, reducing the applicability of the conveyor belt. Content of the Utility Model

[0006] To solve the above technical problems, the utility model provides an automatic conveyor belt for ceramic container production.

[0007] The utility model is realized by adopting the following technical solutions: an automatic conveyor belt for ceramic container production, including a conveyor belt A, both sides of the conveyor belt A are fixedly connected with baffles, the surface of the baffles is fixedly connected with a housing, the inside of the housing is rotationally connected with a cleaning component, the inside of the baffles is fixedly connected with a lane-changing component, and one side of the baffles is fixedly connected with a conveyor belt B.

[0008] As a further improvement of the above solution, the cleaning component includes a circular brush A rotationally connected to the inside of the housing, one side of the circular brush A is fixedly connected with a rotating shaft A, one side of the rotating shaft A is fixedly connected with a transmission rod A, one end of the transmission rod A is spline-connected to the output end of a servo motor A, the surface of the rotating shaft A is rotationally connected with a transmission belt, the surface of the transmission belt is rotationally connected with a rotating shaft B, one end of the rotating shaft B is fixedly connected with a bevel gear A, the surface of the bevel gear A is meshed with a bevel gear B, the bottom of the bevel gear B is fixedly connected with a circular brush B, and the surface of the circular brush B is rotationally connected with the housing.

[0009] Through the above technical solutions, the purpose of protecting the internal cleaning component is achieved by the setting of the housing.

[0010] As a further improvement of the above solution, the lane-changing component includes a B servo motor fixedly connected inside the baffle. The output end of the B servo motor is spline-connected with a B transmission rod. The top of the B transmission rod is fixedly connected with a rotation limiting plate, and the bottom of the rotation limiting plate is rotatably connected to the baffle.

[0011] Through the above technical solution, by the setting of the baffle, the purpose of preventing the containers on the conveyor belt from falling off the conveyor belt is achieved.

[0012] As a further improvement of the above solution, the surface of the A transmission rod is penetrated and connected with a housing. The surface of the A servo motor is fixedly connected with a motor box, and one side of the motor box is fixedly connected with a baffle.

[0013] Through the above technical solution, by the setting of the motor box, the purpose of protecting the A servo motor is achieved.

[0014] As a further improvement of the above solution, the top of the rotation limiting plate is rotatably connected with a limiting shell, and the bottom of the limiting shell is fixedly connected with a baffle.

[0015] Through the above technical solution, by the setting of the limiting shell, the opening on one side of the limiting shell can limit the rotation angle of the limiting plate.

[0016] As a further improvement of the above solution, limiting plates are arranged at both ends of the A rotating shaft and both ends of the B rotating shaft, and the surfaces of the limiting plates are lapped on both sides of the conveyor belt.

[0017] Through the above technical solution, by the setting of the limiting plates, the stability of the conveyor belt during rotation is improved.

[0018] Compared with the prior art, the beneficial effects of the present utility model are as follows:

[0019] By setting the cleaning component in the present utility model, when the staff uses the automatic conveyor belt to convey ceramic containers, the A servo motor is connected to an external power supply and energized. The A transmission rod drives the A rotating shaft to rotate, and drives the A round brush to rotate through the A rotating shaft to clean the side of the ceramic container. At the same time, the A rotating shaft drives the B rotating shaft to rotate through the conveyor belt. Since the B rotating shaft is fixedly connected with the A bevel gear, the A bevel gear drives the B bevel gear meshing with it to rotate, and then drives the B round brush to rotate to clean the top of the ceramic container. Thus, the automatic conveyor belt can clean the surface of the ceramic container during the conveying process, improving the functionality of the automatic conveyor belt.

[0020] By providing a lane-changing component, when an operator uses an automatic conveyor belt to transport ceramic containers, the B servo motor is connected to an external power supply to be energized, so that the B transmission rod drives the limiting plate to rotate. When the limiting plate overlaps with both ends of the opening of the limiting shell, it can guide the containers on the A conveyor belt to the B conveyor belt, or close the connection opening between the B conveyor belt and the A conveyor belt to make the containers always move along the A conveyor belt. Furthermore, the automatic conveyor belt can guide the ceramic containers on the conveyor belt to another conveyor belt, improving the applicability of the conveyor belt. BRIEF DESCRIPTION OF THE DRAWINGS

[0021] Figure 1 is a schematic diagram of the overall structure of the present utility model;

[0022] Figure 2 is a schematic diagram of the disassembled structure of the present utility model;

[0023] Figure 3 is a schematic diagram of the cleaning component structure of the present utility model;

[0024] Figure 4 is a schematic diagram of the lane-changing component structure of the present utility model.

[0025] MAIN SYMBOL DESCRIPTION:

[0026] 1. A conveyor belt; 2. Motor box; 3. Baffle; 4. Outer shell; 5. Cleaning component; 501. A circular brush; 502. A rotating shaft; 503. A transmission rod; 504. A servo motor; 505. Transmission belt; 506. B rotating shaft; 507. A bevel gear; 508. B bevel gear; 509. B circular brush; 6. Lane-changing component; 601. B servo motor; 602. B transmission rod; 603. Limiting plate; 7. Limiting shell; 8. B conveyor belt. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0027] Next, in combination with the drawings and specific embodiments, the present utility model will be further described. It should be noted that, on the premise of no conflict, the following-described embodiments or technical features can be arbitrarily combined with each other to form new embodiments. Embodiment

[0028] Please refer to Figures 1-4 , an automatic conveyor belt for ceramic container production in this embodiment includes an A conveyor belt 1, baffles 3 are fixedly connected to both sides of the A conveyor belt 1, an outer shell 4 is fixedly connected to the surface of the baffle 3, a cleaning component 5 is rotatably connected inside the outer shell 4, a lane-changing component 6 is fixedly connected inside the baffle 3, and a B conveyor belt 8 is fixedly connected to one side of the baffle 3;

[0029] The cleaning assembly 5 includes a circular brush A 501 rotatably connected inside the housing 4. One side of the circular brush A 501 is fixedly connected to a rotating shaft A 502. One side of the rotating shaft A 502 is fixedly connected to a transmission rod A 503. One end of the transmission rod A 503 is splined to the output end of a servo motor A 504. The surface of the rotating shaft A 502 is rotatably connected to a transmission belt 505. The surface of the transmission belt 505 is rotatably connected to a rotating shaft B 506. One end of the rotating shaft B 506 is fixedly connected to a bevel gear A 507. The surface of the bevel gear A 507 is meshed with a bevel gear B 508. The bottom of the bevel gear B 508 is fixedly connected to a circular brush B 509. The surface of the circular brush B 509 is rotatably connected to the housing 4. Through the setting of the housing 4, the purpose of protecting the internal cleaning assembly 5 is achieved;

[0030] The lane-changing assembly 6 includes a servo motor B 601 fixedly connected inside the baffle 3. The output end of the servo motor B 601 is splined to a transmission rod B 602. The top of the transmission rod B 602 is fixedly connected to a rotation limiting plate 603. The bottom of the rotation limiting plate 603 is rotatably connected to the baffle 3. Through the setting of the baffle 3, the purpose of preventing the containers on the conveyor belt from falling off the conveyor belt is achieved;

[0031] The transmission rod A 503 penetrates through the housing 4. The surface of the servo motor A 504 is fixedly connected to a motor box 2. One side of the motor box 2 is fixedly connected to the baffle 3. Through the setting of the motor box 2, the purpose of protecting the servo motor A 504 is achieved;

[0032] The top of the rotation limiting plate 603 is rotatably connected to a limiting shell 7. The bottom of the limiting shell 7 is fixedly connected to the baffle 3. Through the setting of the limiting shell 7, the opening on one side of the limiting shell 7 can limit the rotation angle of the limiting plate 603;

[0033] Both ends of the rotating shaft A 502 are provided with limiting plates. Both ends of the rotating shaft B 506 are provided with limiting plates. The surfaces of the limiting plates are lapped on both sides of the transmission belt 505. Through the setting of the limiting plates, the stability of the transmission belt 505 during rotation is improved.

[0034] In the embodiment of the present application, the implementation principle of an automatic conveyor belt for ceramic container production is as follows: When the staff uses the automatic conveyor belt to convey ceramic containers, the A servo motor 504 is connected to an external power supply to be energized. The A drive rod 503 drives the A rotating shaft 502 to rotate, and the A rotating shaft 502 drives the A circular brush 501 to rotate to clean the side of the ceramic container. At the same time, the A rotating shaft 502 drives the B rotating shaft 506 to rotate through the conveyor belt 505. Since the B rotating shaft 506 is fixedly connected to the A bevel gear 507, the A bevel gear 507 drives the B bevel gear 508 meshing with it to rotate, and then drives the B circular brush 509 to rotate to clean the top of the ceramic container. When the staff uses the automatic conveyor belt to convey ceramic containers, the B servo motor 601 is connected to an external power supply to be energized, so that the B drive rod 602 drives the limiting plate 603 to rotate. When the limiting plate 603 is lapped at both ends of the opening of the limiting shell 7, it can guide the containers on the A conveyor belt 1 to the B conveyor belt 8, or close the connection port between the B conveyor belt 8 and the A conveyor belt 1 to make the containers always move along the A conveyor belt 1.

[0035] The above-mentioned implementation manners are only the preferred implementation manners of the present invention, and cannot be used to limit the protection scope of the present invention. Any non-substantial changes and substitutions made by those skilled in the art on the basis of the present invention belong to the protection scope required by the present invention.

Claims

1. An automatic conveyor belt for the production of ceramic containers, including conveyor belt A (1), characterized in that: On both sides of the A conveyor belt (1), there are fixed baffles (3). On the surface of the baffles (3), there is a fixed outer shell (4). Inside the outer shell (4), there is a rotatably connected cleaning assembly (5). Inside the baffles (3), there is a fixed lane-changing assembly (6). On one side of the baffles (3), there is a fixed B conveyor belt (8).

2. The automatic conveyor belt for producing a ceramic container according to claim 1, wherein: The cleaning assembly (5) includes an A circular brush (501) rotatably connected inside the outer shell (4). On one side of the A circular brush (501), there is a fixed A rotating shaft (502). On one side of the A rotating shaft (502), there is a fixed A transmission rod (503). One end of the A transmission rod (503) is splined to the output end of the A servo motor (504). On the surface of the A rotating shaft (502), there is a rotatably connected transmission belt (505). On the surface of the transmission belt (505), there is a rotatably connected B rotating shaft (506). On one end of the B rotating shaft (506), there is a fixed A bevel gear (507). On the surface of the A bevel gear (507), there is a meshed B bevel gear (508). At the bottom of the B bevel gear (508), there is a fixed B circular brush (509). The surface of the B circular brush (509) is rotatably connected to the outer shell (4).

3. The automatic conveyor belt for producing ceramic containers according to claim 2, characterized in that: The lane-changing assembly (6) includes a B servo motor (601) fixed inside the baffle (3). The output end of the B servo motor (601) is splined to a B transmission rod (602). On the top of the B transmission rod (602), there is a fixed rotation limiting plate (603). The bottom of the rotation limiting plate (603) is rotatably connected to the baffle (3).

4. The automatic conveyor belt for the production of ceramic containers according to claim 3, wherein: The surface of the A transmission rod (503) penetrates through the outer shell (4). The surface of the A servo motor (504) is fixed with a motor box (2). On one side of the motor box (2), there is a fixed baffle (3).

5. The automatic conveyor belt for the production of ceramic containers according to claim 4, characterized in that: The top of the rotation limiting plate (603) is rotatably connected to a limiting shell (7). The bottom of the limiting shell (7) is fixed to the baffle (3).

6. The automatic conveyor belt for the production of ceramic containers according to claim 3, characterized in that: Both ends of the A rotating shaft (502) are provided with limiting plates. Both ends of the B rotating shaft (506) are provided with limiting plates. The surfaces of the limiting plates are lapped on both sides of the transmission belt (505).