一种门体组件及分选机

By introducing pop-out and side-pull devices into the sorting machine, the problems of large space occupation and difficult cleaning of outward-pushing door panels are solved, and the smooth operation of the door panels and the safe and reliable opening and closing process are realized.

CN224515035UActive Publication Date: 2026-07-17HONESORT TECHNOLOGY (ZHEJIANG) CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
HONESORT TECHNOLOGY (ZHEJIANG) CO LTD
Filing Date
2025-08-06
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

The existing sorting machine uses an outward-pushing hinge structure for the door panel, which occupies a large space in front of the equipment, is prone to interfering with surrounding facilities, is inconvenient to open and close, and is prone to material accumulation at the pivot, making cleaning difficult and posing a safety hazard.

Method used

Employing a pop-out device and a side-pull device, the door panel moves perpendicular to the panel surface via the pop-out device, while the side-pull device slides along the panel surface, avoiding rotation. This design minimizes space requirements, is easy to operate, and convenient to clean.

Benefits of technology

It enables smooth opening and closing of the door panel, avoids extra space occupation, simplifies the operation process, improves safety and cleanliness, and reduces costs.

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Abstract

本公开涉及物料分选领域,具体涉及一种门体组件及分选机,其中,门体组件包括:框架,包括用于连通分选机内部空间的开口,且,框架用于与分选机固定;门板,可移动的连接于框架,其中,门板在关闭状态覆盖开口,门板在打开状态暴露开口;侧拉装置,设置于门板,其中,门板处于打开状态下能够沿侧拉装置在门板板面的延伸方向移动;弹出装置,与框架以及侧拉装置分别连接,至少用于驱动门板沿垂直于门板板面的方向远离框架移动,以使门板从关闭状态弹出至打开状态。避免了开门阶段外扩的旋转动作,可以避免额外占用空间,工作人员无需移位便可以完成全部操作,便于操作人员在设备处活动,避免了门板的转轴处积料,门板四周清洁。
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Claims

1. A door assembly for a sorter, wherein, The door assembly includes: A frame, including an opening for communicating with the internal space of the sorting machine, and the frame for fixing to the sorting machine; A door panel, movably connected to the frame, wherein the door panel covers the opening in a closed state and exposes the opening in an open state; A side-pull device is provided on the door panel, wherein the door panel is in the open state and can move along the extension direction of the side-pull device on the door panel surface; The pop-out device is connected to the frame and the side pull device respectively, and is at least used to drive the door panel to move away from the frame in a direction perpendicular to the door panel surface, so that the door panel pops out from the closed state to the open state.

2. The door assembly of claim 1, wherein, The ejection device includes: The first slide rail is provided on the side of the frame facing the door panel; The first slider is slidably disposed on the first slide rail and is capable of moving along the first slide rail; A spring is disposed at one end of the first slide rail and connected to the first slider; The first connecting rod is hinged at one end to the first slider and at the other end to the side pull device; When the door panel is in the closed state, the spring has elastic potential energy to move the first slider. This elastic potential energy is used to drive the first slider to move along the first slide rail, thereby causing the first connecting rod to swing outward from the door panel, so that the door panel moves away from the frame in a direction perpendicular to the door panel surface.

3. The door assembly of claim 2, wherein, The ejection device further includes: The second slide rail is disposed on the side of the side pull device facing the frame, and the second slide rail is disposed parallel to the first slide rail; The second slider is slidably disposed on the second slide rail and can move along the second slide rail; The second connecting rod has one end hinged to the second slider and the other end hinged to the frame, with the middle part of the second connecting rod hinged to the middle part of the first connecting rod. When the first slider moves the first connecting rod under the elastic potential energy of the spring, the first connecting rod can move the second connecting rod, so that the door panel moves in a direction parallel to the door panel surface.

4. The door assembly of claim 3, wherein, The ejection device further includes: The first circular arc slide rail is fixed to the frame; The first arc-shaped slider is slidably disposed on the first arc-shaped slide rail; The middle parts of the first connecting rod and the middle parts of the second connecting rod are hinged to the first arc-shaped slider.

5. The door assembly according to claim 4, wherein, The ejection device further includes: The second arc-shaped slide rail is fixed to the frame; The second arc-shaped slider is slidably disposed on the second arc-shaped slide rail; The middle part of the second connecting rod is hinged to the second arc-shaped slider.

6. The door assembly according to any one of claims 1-5, wherein, The side-pull device is equipped with a section of track, which is fixed to the door panel; or, The side-pull device is provided with multiple sections of track, which can slide open in a direction parallel to the door panel surface to move the door panel until the opening is fully opened.

7. The door assembly of claim 6, wherein, The side-pull device is equipped with a limit device to prevent the door panel from sliding laterally.

8. The door assembly of claim 1, wherein, The door panel is equipped with a door lock for fixing the door panel to the frame. After the door lock changes from the closed state to the open state, the pop-out device drives the door panel to move away from the frame in a direction perpendicular to the door panel surface.

9. The door assembly of claim 1, wherein, The inside of the door panel is provided with a lead layer.

10. A sorter characterized by Used for material sorting, including: shell; A conveying device, disposed within the housing, is used for conveying materials; An identification device, disposed within the housing, is used to identify the material being transported by the transmission device via an optomechanical method; A sorting device, disposed within the housing, is used to sort the materials according to the identification result of the identification device; The door assembly as described in any one of claims 1-9 is fixed to the outer casing.