Anti-vibration transport device for ceramic buzzer production

CN224727816UActive Publication Date: 2026-09-08CHANGZHOU WUJIN JINGFENG ELECTRONICS CO LTD
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Patent Information

Application Number
CN202522145626.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-10-11
Publication Date
2026-09-08
Estimated Expiration
2035-10-11

AI Technical Summary

Technical Problem

[0003]生产线上一般使用珍珠棉材质的收集装置收集蜂鸣片,将蜂鸣片嵌设在收集装置里,随后进行运输,但在这一过程中,大都采用操作人员手动收集,手动收集时,无法做到精准施力,容易在对蜂鸣片施力时,造成损伤

Benefits of technology

[0008]本实用新型的有益效果是:通过设置有运输组件,使用导向板和收集仓自动收集蜂鸣片,气缸二带动压板均匀施力且有海绵块保护,帮助蜂鸣片完成无损收集。

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a kind of shockproof transport devices for ceramic buzzer production, including workbench and transport component being installed on workbench, the tabletop of the workbench is provided with conveyor one and conveyor two, one end of the conveyor one is connected with external production line, and the other end is fixedly installed on the tabletop of workbench, the conveyor two is fixedly installed on the tabletop of workbench, the shape of the conveyor one and conveyor two is belt conveyor, and it is composed of belt and two side plates, the transport component includes guide plate and collection bin, the guide plate is rotatably installed on one of the side plates of conveyor one, the collection bin is placed on the belt of conveyor two, the material of the collection bin is pearl wool, and buzzer is automatically collected using guide plate and collection bin, cylinder two drives pressing plate to apply force uniformly and has sponge block protection, help buzzer to complete lossless collection.
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Description

Technical Field

[0001] This utility model relates to the field of ceramic buzzer technology, and in particular to a shockproof transportation device for the production of ceramic buzzers. Background Technology

[0002] Ceramic buzzers must be protected against shock during transportation. They are made of piezoelectric ceramic materials (such as zirconium oxide or alumina), and are typically only 0.2 to 0.5 mm thick. They have no plastic deformation capacity, and any instantaneous impact or vibration may cause micro-cracks or direct breakage.

[0003] On the production line, a collection device made of pearl cotton is generally used to collect the buzzer. The buzzer is embedded in the collection device and then transported. However, in this process, the collection is mostly done manually by the operators. When collecting manually, it is impossible to apply force precisely, which can easily cause damage to the buzzer. Utility Model Content

[0004] The purpose of this application is to provide a shockproof transportation device for the production of ceramic buzzers, so as to solve the problems mentioned in the background art.

[0005] To achieve the above objectives, this application provides the following technical solution: A shockproof transport device for ceramic buzzer production includes a workbench and a transport assembly mounted on the workbench. The workbench has a first conveyor and a second conveyor. One end of the first conveyor is connected to an external production line, and the other end is fixedly mounted on the workbench. The second conveyor is also fixedly mounted on the workbench. Both the first and second conveyors are belt conveyors, each consisting of a belt and two side plates. The transport assembly includes a guide plate and a collection bin. The guide plate is rotatably mounted on one of the side plates of the first conveyor, and the collection bin is placed on the belt of the second conveyor. The collection bin is made of pearl cotton.

[0006] Preferably, a cylinder is fixedly installed on the outer wall of one side plate of the first conveyor, and a push plate is fixedly installed at the output end of the cylinder. The bottom edge of the push plate is in contact with the belt surface of the first conveyor. A motor is fixedly installed on the other side plate of the first conveyor, and the guide plate is driven by the motor. Multiple partitions are fixedly installed on the surface of the guide plate, and the guide plate is installed directly above the belt of the second conveyor, with the installation position of the guide plate corresponding to the installation position of the push plate.

[0007] Preferably, a sensor is fixedly installed on the side plate of the second conveyor. The sensor uses microwave induction. A baffle is fixedly installed on the top edge of both side plates of the second conveyor, and the height of the baffle is less than the height of the collection chamber. A pressure plate is movably arranged above the two baffles. A sponge block is fixedly installed on the bottom surface of the pressure plate. Two cylinders are installed at both ends of the bottom of the pressure plate. The two cylinders are fixedly installed on the workbench surface, and their output ends are fixedly connected to the pressure plate.

[0008] The beneficial effects of this utility model are: by setting up a transport component, using a guide plate and a collection bin to automatically collect the buzzer, the second cylinder drives the pressure plate to apply force evenly and is protected by a sponge block, which helps to complete the non-destructive collection of the buzzer. Attached Figure Description

[0009] Figure 1 This is a schematic diagram of the overall structure of this utility model; Figure 2 This is a schematic diagram of the overall (other angle) structure of this utility model.

[0010] In the diagram: 1. Workbench; 2. Transmission machine one; 3. Push plate; 4. Cylinder one; 5. Guide plate; 6. Motor; 7. Transmission machine two; 8. Collection bin; 9. Pressure plate; 10. Sensor; 11. Sponge block; 12. Cylinder two; 13. Baffle. Detailed Implementation

[0011] The preferred embodiments of this utility model will now be described in detail with reference to the accompanying drawings, so that the advantages and features of this utility model can be more easily understood by those skilled in the art, thereby providing a clearer and more definite definition of the scope of protection of this utility model. The directional terms mentioned in this utility model, such as "up," "down," "front," "back," "left," "right," "top," and "bottom," are only for reference to the accompanying drawings. Therefore, the directional terms used are for the purpose of explaining and understanding this utility model, and not for limiting this utility model.

[0012] like Figure 1-2 The illustrated anti-vibration transport device for ceramic buzzer production includes a workbench 1 and a transport assembly installed on the workbench 1. A first conveyor 2 and a second conveyor 7 are mounted on the workbench 1. One end of the first conveyor 2 is connected to an external production line, and the other end is fixedly mounted on the workbench 1. The second conveyor 7 is fixedly mounted on the workbench 1. Both the first and second conveyors 2 and the second conveyor 7 are belt conveyors, each consisting of a belt and two side plates. The transport assembly includes a guide plate 5 and a collection bin 8. The guide plate 5 is rotatably mounted on one of the side plates of the first conveyor 2. The collection bin 8 is placed on the belt of the second conveyor 7, and the material of the collection bin 8 is pearl cotton.

[0013] A cylinder 4 is fixedly installed on the outer wall of one side plate of conveyor 2. A push plate 3 is fixedly installed at the output end of cylinder 4. The bottom edge of push plate 3 is in contact with the belt surface of conveyor 2. A motor 6 is fixedly installed on the other side plate of conveyor 2. Guide plate 5 is driven by motor 6. Multiple partitions are fixedly installed on the surface of guide plate 5. Guide plate 5 is installed directly above the belt of conveyor 7. The installation position of guide plate 5 corresponds to the installation position of push plate 3.

[0014] A sensor 10 is fixedly installed on the side plate of the second conveyor 7. The sensor 10 uses microwave induction. Baffles 13 are fixedly installed on the top edges of the two side plates of the second conveyor 7. The height of the baffles 13 is less than the height of the collection chamber 8. A pressure plate 9 is movably installed above the two baffles 13. A sponge block 11 is fixedly installed on the bottom surface of the pressure plate 9. Cylinders 12 are installed at both ends of the bottom of the pressure plate 9. The two cylinders 12 are fixedly installed on the table surface of the workbench 1 and their output ends are fixedly connected to the pressure plate 9.

[0015] Example: The ceramic buzzer is transported on the conveyor 2 on the workbench 1. When it reaches the push plate 3, the transport is paused. The cylinder 4 pushes the buzzer onto the guide plate 5. The partition separates multiple buzzers. The motor 6 drives the guide plate 5 to rotate. The buzzer is transported to the collection bin 8 on the conveyor belt 7. The collection bin 8 is a collection device made of pearl cotton. The external transport device will transport the collection bin 8 to the conveyor 7. The conveyor 7 will transport the collection bin 8 to the sensor 10. After the sensor 10 senses the edge of the collection bin 8, the conveyor 7 will stop running. The collection chamber 8 is equipped with multiple collection slots. Part of the buzzer disc falls into the collection slot, and then the motor 6 drives the guide plate 5 to reset. The second conveyor 7 moves the collection chamber 8 a certain distance, aligning the next collection slot with the rotated end of the guide plate 5. This process is repeated to collect the buzzer disc. After the collection chamber 8 has collected all the buzzer discs, the second conveyor 7 transports the collection chamber 8 to below the pressure plate 9. The second cylinder 12 lowers the pressure plate 9, which in turn causes the sponge block 11 to press down on the buzzer disc above the collection chamber 8. The pressure plate 9 abuts against the baffle 13, preventing excessive pressure on the buzzer disc. The buzzer disc is completely inside the collection slot of the collection chamber 8. The operator then removes the collection chamber 8. The pearl cotton material protects the ceramic buzzer disc and provides shock absorption during transport.

Claims

1. A shockproof transport device for ceramic buzzer production, comprising a workbench (1) and a transport assembly installed on the workbench (1), characterized in that: The workbench (1) is equipped with a first conveyor (2) and a second conveyor (7). One end of the first conveyor (2) is connected to an external production line, and the other end is fixedly installed on the workbench (1). The second conveyor (7) is fixedly installed on the workbench (1). The first conveyor (2) and the second conveyor (7) are both belt conveyors, each consisting of a belt and two side plates. The transport component includes a guide plate (5) and a collection bin (8). The guide plate (5) is rotatably installed on one of the side plates of the first conveyor (2). The collection bin (8) is placed on the belt of the second conveyor (7). The material of the collection bin (8) is pearl cotton.

2. The shockproof transport device for ceramic buzzer production according to claim 1, characterized in that: A cylinder (4) is fixedly installed on the outer wall of one side plate of the transmission machine (2). A push plate (3) is fixedly installed at the output end of the cylinder (4). The bottom edge of the push plate (3) is in contact with the belt surface of the transmission machine (2). A motor (6) is fixedly installed on the other side plate of the transmission machine (2). The guide plate (5) is driven by the motor (6).

3. The shockproof transport device for ceramic buzzer production according to claim 2, characterized in that: Multiple partitions are fixedly installed on the surface of the guide plate (5). The guide plate (5) is installed directly above the belt of the second conveyor (7). The installation position of the guide plate (5) corresponds to the installation position of the push plate (3).

4. The shockproof transport device for ceramic buzzer production of claim 1, characterized in that: A sensor (10) is fixedly installed on the side plate of the second transmission machine (7). The sensor (10) uses microwave induction. A baffle (13) is fixedly installed on the top edge of both side plates of the second transmission machine (7). The height of the baffle (13) is less than the height of the collection chamber (8).

5. The shockproof transport device for ceramic buzzer production of claim 4, characterized in that: A pressure plate (9) is movably arranged above the two baffles (13). A sponge block (11) is fixedly installed on the bottom surface of the pressure plate (9). Two cylinders (12) are provided at both ends of the bottom of the pressure plate (9). The two cylinders (12) are fixedly installed on the table surface of the workbench (1) and their output ends are fixedly connected to the pressure plate (9).