一种炉渣过滤回收设备

The automated cleaning process achieved through the linkage components of the anti-clogging cleaning mechanism solves the problem of filter screen clogging in slag filtration and recovery equipment, improves production efficiency and safety, and extends the service life of the equipment.

CN224507539UActive Publication Date: 2026-07-17ZHEJIANG GAODA MACHINERY

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
ZHEJIANG GAODA MACHINERY
Filing Date
2025-08-18
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

In existing slag filtration and recycling equipment, the upper filter screen is prone to clogging due to irregular large particles, leading to frequent shutdowns for cleaning, which affects production efficiency, increases energy consumption, and poses safety hazards. Existing solutions are not effective.

Method used

It adopts an anti-clogging cleaning mechanism, including horizontal guide rails, vertical guide rails, support rods, cleaning screens, and linkage components. The linkage components drive the precise embedding and misalignment movement of the cleaning screen and filter screen to achieve automated cleaning and avoid secondary blockage and blockage point formation.

Benefits of technology

It achieves automated cleaning, reduces downtime, improves production efficiency, reduces energy consumption, avoids safety hazards, and extends the service life of the filter.

✦ Generated by Eureka AI based on patent content.

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Abstract

本实用新型涉及炉渣过滤设备技术领域,尤其是涉及一种炉渣过滤回收设备,包括炉渣导料管道、过滤网和防堵塞清理机构,炉渣导料管道内固定有过滤网,用于对过滤网清理的防堵塞清理机构设置在炉渣导料管道内部,且位于过滤网底部,包括横向导轨、竖向导轨、支撑杆、清理网和联动组件。本实用新型利用清理网上的矩形板与过滤网的滤孔一一对应设置,进而使联动组件在带动清理网位移时,清理网能精准嵌入过滤网的槽口间隙,对“架桥”卡滞的不规则大颗粒炉渣形成直接推力,避免传统清理方式中颗粒从滤网表面滑落时的二次卡堵,且定向移动清理模式可将滤网上堆积的炉渣集中推送至指定收集区域,能大幅度减少残留量。
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Claims

1. A slag filtering and recovering apparatus, characterized by, include: A slag feeding pipe (1) is provided, and a filter screen (2) is fixed inside the slag feeding pipe (1); The anti-clogging cleaning mechanism (3) is used to clean the filter screen (2). The anti-clogging cleaning mechanism (3) is set inside the slag feeding pipe (1) and located at the bottom of the filter screen (2). It includes a horizontal guide rail (31), a vertical guide rail (32), a support rod (33), a cleaning screen (34) and a linkage component. The horizontal guide rail (31) is horizontally fixed on the inner wall of the slag feeding pipe (1). The vertical guide rail (32) is slidably engaged on the horizontal guide rail (31) and vertically set inside the slag feeding pipe (1). The support rod (33) is slidably engaged inside the vertical guide rail (32). The cleaning net (34) is horizontally fixed on the top of the support rod (33). The filter screen (2) is provided with multiple filter holes with straight groove structure. The cleaning net (34) is provided with multiple rectangular plates at equal intervals. The rectangular plates are arranged one-to-one with the filter holes. The linkage component used to drive the cleaning net (34) is connected to the support rod (33).

2. A slag filtering and recovering apparatus according to claim 1, characterized in that, The linkage component includes a slide groove (35), a slider (36), an adjustment groove (37), and a push-pull rod (38). The slide groove (35) is located at the top of the support rod (33). The slider (36) is fixed to the bottom of the cleaning net (34) and slidably engaged in the slide groove (35). The adjustment groove (37) is recessed on the side wall of the vertical guide rail (32), and the upper and lower ends of the adjustment groove (37) are staggered. One end of the push-pull rod (38) is fixed to the cleaning net (34), and the other end is slidably engaged in the adjustment groove (37).

3. A slag filtering and recovering apparatus according to claim 2, characterized in that, The linkage assembly also includes a linkage gear ring (39), a driven gear (310), and a first docking rod (311). The linkage gear ring (39) is fixed to the bottom of the transverse guide rail (31). The driven gear (310) has a smaller diameter than the linkage gear ring (39) and meshes with the inner ring of the linkage gear ring (39). One end of the first docking rod (311) is fixed to the driven gear (310), and the other end is rotatably connected to the support rod (33).

4. A slag filtering and recovering apparatus according to claim 3, characterized in that, The linkage assembly also includes a transmission rod (312) and a second docking rod (313). The second docking rod (313) is horizontally and rotatably connected inside the slag feeding pipe (1). One end of the second docking rod (313) is fixed on the transmission rod (312), and the other end is rotatably connected to the shaft of the driven gear (310).

5. The slag filtering and recovering apparatus according to claim 1, wherein A trapezoidal protrusion is fixed on one side of the vertical guide rail (32), and a trapezoidal slot is provided on the horizontal guide rail (31), with the protrusion slidingly engaged in the slot.

6. The slag filtering and recovering apparatus according to claim 1, wherein A discharge port (4) is provided on one side of the slag feeding pipe (1). The discharge port (4) is connected to the inside of the slag feeding pipe (1), and the lowest point of the discharge port (4) is flush with the highest point of the filter screen (2). A baffle (5) is fixed obliquely on the inner wall of the slag feeding pipe (1). The baffle (5) is located above the discharge port (4).