气体输送提升的粉料再利用装置

By installing reuse pipelines in powder processing equipment, the classified recycling and reuse of dust and residual powder can be achieved, solving the problems of resource waste and environmental pollution, and improving the environmental protection and economy of powder processing.

CN224511518UActive Publication Date: 2026-07-17

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Filing Date
2025-09-22
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

Existing powder processing equipment lacks an effective classification and recycling mechanism, resulting in resource waste, low production efficiency, and environmental pollution, failing to maximize the utilization and environmentally friendly treatment of powder materials.

Method used

Design a gas conveying and lifting powder recycling device. By setting up recycling pipelines, dust and residual powder generated during screening and packaging are classified and recycled. The device includes recycling pipeline I, recycling pipeline II and recycling pipeline III. Dust and settled powder are sent to silos or mixing silos for recycling, and residual powder is collected in dust collection bags.

Benefits of technology

It maximizes the utilization of powder resources, reduces waste, improves production efficiency, reduces environmental pollution risks, and meets environmental protection requirements.

✦ Generated by Eureka AI based on patent content.

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Abstract

本实用新型涉及粉料加工技术领域,具体涉及一种气体输送提升的粉料再利用装置。本实用新型包括上料管路、打包管路、再利用管路,上料管路的上料端与混合仓相连,其输入端分别连接检查筛和抽气机,抽气机在上料管路形成负压,将上料管路内的粉料提升至检查筛内;检查筛至少包括一层筛网;打包管路包括包装机和位于包装机一侧的流水线,再利用管路包括如下管路:回收管路Ⅰ、回收管路Ⅱ、回收管路Ⅲ。本实用新型通过回收管路Ⅰ、回收管路Ⅱ、回收管路Ⅲ,将检查筛和打包机构顶部的扬尘、除尘机下沉粉料及剩余粉料分类回收,分别送至料仓和混合仓再利用,或收集到集尘袋,实现粉料资源最大化利用,减少浪费。
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Claims

1. A gas delivery elevated powder recycling device, characterized by, This includes feeding pipeline (2), packaging pipeline, and reuse pipeline, wherein: The feeding pipeline (2) is a curved pipe. Its feeding end (1) is connected to the mixing chamber, and its input end (31) is connected to the inspection sieve (3) and the vacuum pump (6) respectively. The vacuum pump (6) creates negative pressure in the feeding pipeline (2) to lift the powder in the feeding pipeline (2) into the inspection sieve (3). The inspection sieve (3) includes at least one screen (32). The packaging pipeline, located below the inspection sieve (3), includes a packaging machine (4) and a production line (5) located on one side of the packaging machine (4). The packaging machine (4) includes a packaging mechanism (41) connected to the inspection sieve (3) and an output end (42) located below the packaging mechanism (41). The packaging mechanism (41) packages the sieved powder and outputs the finished powder packaging bags downward through the output end (42). The production line (5) includes a conveyor belt (51) and a leveling mechanism (52) located on the conveyor belt (51). The powder packaging bags are conveyed by the conveyor belt (51) to the leveling mechanism (52) for sorting. Reusable piping includes the following: The recycling pipeline I (8) includes an inlet I connected to the top of the inspection screen (3), an inlet II connected to the top of the packaging mechanism (41), and an outlet I connected to the silo. The dust collected at inlet I is separated by a dust collector (7), and the separated powder is then combined with the dust collected at inlet II and transported to the silo for reuse. The recycling pipeline II (9) includes an inlet III connected to the dust collector (7) and an outlet II connected to the mixing chamber. The inlet III transports the settled powder to the mixing chamber for reuse. The recycling pipeline Ⅲ (10) includes an inlet Ⅳ connected to the recycling pipeline Ⅱ (9) and an outlet Ⅲ connected to the dust collection bag. The inlet Ⅳ transports the remaining powder to the dust collection bag for collection.

2. The gas delivery elevated powder recycling apparatus of claim 1, wherein, The silo temporarily stores powder, and an outlet I connected to the recovery pipeline I (8) is provided on one side of the silo.

3. The gas delivery elevated powder recycling apparatus of claim 2, wherein, The mixing chamber is located below the silo and is connected to the feeding pipeline (2); the mixing chamber is provided with an outlet II connected to the recovery pipeline II (9).

4. The gas delivery elevated powder recycling apparatus of claim 1, wherein, The dust collector (7) includes a main body and a housing (61) located outside the main body. The top of the housing (61) is provided with a dust collection port (62), and the side of the housing (61) is provided with a dust outlet (63). The bottom of the housing (61) is equipped with an air extractor (6) and the inlet III of the recycling pipeline II (9). The dust collection port (62) is connected to the top of the inspection screen (3) through a pipeline. A portion of the dust is transported through the dust outlet (63) to the outlet I of the recycling pipeline I (8), and another portion of the dust enters the inlet III of the recycling pipeline II (9) through the inlet III below.

5. The gas delivery elevated powder recycling apparatus of claim 1, wherein, A flow regulating valve is installed on the feeding pipeline (2).