一种推料组件及分拣系统

By optimizing the pusher plate structure in the pusher assembly, adopting a layered design of rigid support layer and flexible pusher layer, and weight reduction holes, the problems of easy wear and jamming between the pusher plate and the conveyor belt are solved, thereby improving the durability and stability of the pusher plate.

CN224512501UActive Publication Date: 2026-07-17

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Filing Date
2025-08-04
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

The pusher plate and conveyor belt of the existing pusher assembly are prone to wear and may jam, resulting in a short service life.

Method used

The pusher assembly is designed as a linear drive unit, and the connection point with the pusher plate is located between the start and end sides. The pusher plate adopts a stacked structure of a rigid support layer and a flexible pusher layer. The flexible pusher layer is used to contact the material, and weight reduction holes are set on the pusher plate to reduce the weight.

Benefits of technology

It reduces friction between the push plate and the conveyor belt, reduces wear, extends service life, prevents jamming, and reduces vibration through flexible contact, thus improving operational stability.

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    Figure CN224512501U_ABST
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Abstract

本实用新型涉及快递分拣技术领域,具体涉及一种推料组件及分拣系统。推料组件包括直线驱动件和推板,推板与直线驱动件连接,推板包括在其长度方向上相背设置的始侧边和末侧边,直线驱动件与推板的连接位置位于始侧边和末侧边之间,且连接位置与始侧边之间的距离,小于连接位置与末侧边之间的距离;如此设置,可以确保当直线驱动件与推板因碰撞或过度使用等原因而产生松动时,下垂的是远离传送带起始端的末侧边,而不是靠近传送带起始端的始侧边,由于末侧边下垂至推板与传送带接触时,传送带并不会为推板施加驱使推板进一步转动的作用力,所以推板与传送带的摩擦力比较小,可以减少推板与传送带的磨损,且不会导致推板与传送带卡死。
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Claims

1. A feeding assembly, used in a sorting system, characterized in that, include: Linear drive components; A pusher plate is connected to the linear drive member. The pusher plate includes a starting side and a ending side disposed opposite to each other in its length direction. The connection position between the linear drive member and the pusher plate is located between the starting side and the ending side, and the distance between the connection position and the starting side is less than the distance between the connection position and the ending side. The pusher plate includes a rigid support layer and a flexible pushing layer stacked in its thickness direction. The flexible pushing layer is used to contact the material.

2. The pusher assembly of claim 1, wherein, The push plate is provided with several weight-reducing holes.

3. The pusher assembly of claim 2, wherein, The weight reduction hole is a through hole provided along the thickness direction of the push plate.

4. The pusher assembly of claim 1, wherein, The linear drive component is a telescopic cylinder, which includes a drive body and a telescopic shaft. The telescopic shaft passes through the drive body and is connected to the push plate. The pushing assembly also includes a shock-absorbing rubber sleeve, which is fitted onto the telescopic shaft and located between the push plate and the drive body.

5. The feeding assembly according to claim 1, characterized in that, The linear drive includes a telescopic shaft, and the pusher assembly further includes a first clamping block and a second clamping block mounted on the telescopic shaft. The rigid support layer is clamped between the first clamping block and the second clamping block. The second clamping block is located on the side of the rigid support layer near the flexible pusher layer. The flexible pusher layer is provided with a receiving hole to receive the second clamping block.

6. The pusher assembly of any one of claims 1-5, wherein, The rigid support layer is a carbon fiber layer.

7. The pusher assembly of claim 6, wherein, The flexible pusher layer is a foam layer.

8. The pusher assembly of any one of claims 1-5, wherein, The pusher plate also includes a plurality of screws, which pass through the flexible pusher layer and the rigid support layer to connect the flexible pusher layer and the rigid support layer.

9. The pusher assembly of claim 8, wherein, The head of the screw is located on the side of the flexible pusher layer away from the rigid support layer, and the tail of the screw protrudes from the rigid support layer.

10. A sorting system characterized in that, include: A conveyor belt, comprising a starting end and an ending end arranged opposite to each other; The material pusher assembly is the material pusher assembly according to any one of claims 1-9, wherein the material pusher assembly is installed on one side of the conveyor belt, and the starting side of the material pusher assembly is closer to the starting end than the ending side.