一种多孔碳原料加工用多层筛分装置

By combining the power motor and worm gear in the anti-clogging mechanism, dynamic cleaning and vibration unblocking of porous carbon raw materials are achieved, solving the problems of clogging and cumbersome cleaning in porous carbon raw material processing devices, and improving screening efficiency and stability.

CN224507601UActive Publication Date: 2026-07-17WUHAN GULI NEW ENERGY TECH CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
WUHAN GULI NEW ENERGY TECH CO LTD
Filing Date
2025-08-07
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

Existing multi-layer screening devices for processing porous carbon raw materials are prone to clogging, resulting in reduced screening efficiency and cumbersome cleaning and maintenance.

Method used

A multi-layer screening device for processing porous carbon raw materials was designed. It adopts an anti-clogging mechanism, which includes a support plate, a power motor, a worm gear, a worm wheel, a cleaning rod, and a striking rod to achieve dynamic cleaning and vibration-based unclogging, thereby enhancing structural stability and seismic performance.

Benefits of technology

It effectively prevents porous carbon raw materials from clogging during the screening process, improves screening efficiency, reduces noise and mechanical wear, reduces the need for manual cleaning, and ensures the efficient and stable operation of the equipment.

✦ Generated by Eureka AI based on patent content.

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Abstract

本实用新型公开了一种多孔碳原料加工用多层筛分装置,涉及多层筛分技术领域,包括箱体的内部设置有防堵机构,所述防堵机构包括支撑板,支撑板的外表面与箱体的内壁固定连接,支撑板的上表面固定连接有第一动力电机,第一动力电机动力的输出端贯穿支撑板并固定连接有限位筒,限位筒的底面转动连有防护筒,防护筒的底面与箱体的内底壁固定连接。通过蜗杆、蜗轮以及清理杆和敲打杆的配合,实现了对过滤网的动态清理和振动疏堵,确保筛分过程持续高效进行,此外限位筒和防护筒的设置不仅增强了装置的结构稳定性,还为内部组件的运转提供了保护。
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Claims

1. A multi-layer screening device for processing of porous carbon raw material, comprising a housing (1), characterized in that: The box (1) is equipped with an anti-blocking mechanism (3). The anti-blocking mechanism (3) includes a support plate (301). The outer surface of the support plate (301) is fixedly connected to the inner wall of the box (1). A first power motor (302) is fixedly connected to the upper surface of the support plate (301). The output end of the first power motor (302) passes through the support plate (301) and is fixedly connected to a limiting cylinder (303). A protective cylinder (304) is rotatably connected to the bottom surface of the limiting cylinder (303). The bottom surface of the protective cylinder (304) is fixedly connected to the inner bottom wall of the box (1). A second power motor (305) is fixedly connected to the inner bottom wall of the box (1). A worm gear (306) is fixedly connected to the output end of the second power motor (305). Three first worm wheels (307) and three second worm wheels (308) are threadedly connected to the outer surface of the worm gear (306). The left side of each first worm wheel (307) and the left side of each second worm wheel (308) are rotatably connected to a limited... Positioning posts (313), the outer surface of each positioning post (313) is fixedly connected to the inner wall of the limiting cylinder (303), a cleaning rod (310) is fixedly connected to the inner wall of each first worm gear (307), the outer surface of each cleaning rod (310) is rotatably connected to the inner wall of the limiting cylinder (303), and a striking rod (309) is fixedly connected to the inner wall of each second worm gear (308), the outer surface of each striking rod (309) is rotatably connected to the inner wall of the limiting cylinder (303). The outer surface of the limiting cylinder (303) is fixedly connected with three sets of support rods (311), and the inner wall of the box (1) is fixedly connected with three filter screens (312). The bottom surface of each filter screen (312) is in contact with the upper surface of each support rod (311), the inner wall of each filter screen (312) is in contact with the outer surface of the limiting cylinder (303), and the upper surface of the filter screen (312) is in contact with the outer surface of the cleaning rod (310) and the outer surface of the striking rod (309).

2. The multi-layer screening device for processing a porous carbon raw material according to claim 1, characterized by: The bottom surface of the box (1) is fixedly connected to six springs (314), and the bottom end of each spring (314) is fixedly connected to a base (2).

3. The multi-layer screening device for processing a porous carbon raw material according to claim 2, characterized by: The bottom surface of the housing (1) is fixedly connected to six sleeves (322), and the outer surface of each sleeve (322) is in contact with the inner wall of the spring (314).

4. The multi-layer screening apparatus for processing a porous carbon raw material according to claim 3, characterized by: Each sleeve (322) has a support column (321) slidably connected to its inner wall, and the bottom surface of each support column (321) is fixedly connected to the upper surface of the base (2).

5. The multi-layer screening device for processing a porous carbon raw material according to claim 4, characterized by: A fixing block (315) is fixedly connected to the upper surface of the base (2), and a third power motor (316) is fixedly connected to the upper surface of the fixing block (315).

6. The multi-layer screening apparatus for processing a porous carbon raw material according to claim 5, characterized by: The output end of the third power motor (316) is fixedly connected to a protrusion (317), and a support block (320) is rotatably connected to the outer surface of the protrusion (317). The bottom surface of the support block (320) is fixedly connected to the upper surface of the base (2).

7. The multi-layer screening apparatus for processing a porous carbon raw material according to claim 1, characterized by: The bottom surface of the box (1) is fixedly connected with transmission columns (319), and the bottom surfaces of the transmission columns (319) are in contact with the outer surfaces of the protrusions (317).

8. The multi-layer screening apparatus for processing a porous carbon raw material according to claim 6, characterized by: The upper surfaces of the bases (2) are fixedly connected with two limiting rods (318), and the side surfaces, which are close to each other, of the two limiting rods (318) are in contact with the inner walls of the transmission columns (319).