Pushing mechanism of transition mesh belt

By designing a material pushing mechanism without power drive, using the clamping group to push the retained tail material with the mesh belt, the problem of tail bottle retention caused by power drive of the transition plate is solved, and efficient cleaning and low-cost solutions are achieved.

CN222892282UActive Publication Date: 2025-05-23TRUKING TECH LTD
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Patent Information

Application Number
CN202421441154.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-06-24
Publication Date
2025-05-23
Estimated Expiration
2034-06-24

AI Technical Summary

Technical Problem

在立式超声波洗瓶机的进瓶端,过渡板无动力驱动导致尾瓶滞留无法清除,现有技术结构复杂增加成本。

Method used

A material pushing mechanism for transitional mesh belt is designed, including a push block, a first clamping group and a second clamping group. The push block does not require power drive and is connected to the mesh belt through the clamping group, pushing the trapped tail material into the next mesh belt.

Benefits of technology

It realizes that the tail material stuck on the transition plate can be pushed without power driving, avoid waste, improve cleaning efficiency, reduce costs, and prevent push blocks from colliding with equipment through the detection mechanism, improving safety.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a material pushing mechanism of a transition mesh belt, which is used for being placed on the mesh belt with a transition plate, the material pushing mechanism comprises a pushing block, the pushing block is provided with a first clamping group and a second clamping group which can be clamped with the mesh belt, and the distance between the first clamping group and the second clamping group is larger than the length of the transition plate. The problem that a large number of tail bottles cannot be removed due to the fact that the transition plate is driven without power is solved.
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Claims

1. A material pushing mechanism for a transition mesh belt, used for being placed on a mesh belt (3) with a transition plate (2), characterized in that: The pushing mechanism comprises a pushing block (1), the pushing block (1) is provided with a first clamping group (11) and a second clamping group (12) which can be clamped with the mesh belt (3), the spacing between the first clamping group (11) and the second clamping group (12) is greater than the length of the transition plate (2), the mesh belt (3) comprises a plurality of mesh belt shafts (31), the mesh belt shafts (31) are provided with a plurality of connecting rods (32) which are staggeredly connected with adjacent mesh belt shafts (31), the first clamping group (11) and the second clamping group (12) comprise a plurality of spaced clamping parts (111), the clamping parts (111) are clamped with the gaps between the plurality of mesh belt shafts (31) and the plurality of connecting rods (32) on the mesh belt (3).

2. The pusher mechanism of the transition mesh belt according to claim 1 is characterized in that: The pushing mechanism further comprises a detection mechanism (4) arranged at the tail of the last mesh belt (3) for detecting the pushing block (1); the detection mechanism (4) is connected to the driving mechanism of the mesh belt (3).

3. The material pushing mechanism of the transition mesh belt according to claim 1 is characterized in that: The height of the upper surface of the transition plate (2) is lower than the height of the upper surface of the mesh belt (3).

4. The material pushing mechanism of the transition mesh belt according to claim 1 is characterized in that: The push block (1) further comprises a connecting block (13) connecting the first clamping group (11) and the second clamping group (12).

5. The material pushing mechanism of the transition mesh belt according to claim 2 is characterized in that: The detection mechanism (4) is a photoelectric detector.

6. The material pushing mechanism of the transition mesh belt according to claim 1 is characterized in that: The push block (1) is placed at the front end of the material (5) along the transport direction of the mesh belt (3).