一种氧化铝领域赤泥压滤工序节约用地和投资的配置结构

By optimizing the equipment layout of the red mud filter press workshop in alumina production, efficient collaborative operation of the equipment was achieved, construction and production costs were reduced, and equipment management was simplified.

CN224513358UActive Publication Date: 2026-07-17GUIYANG ALUMINUM MAGNESIUM DESIGN & RESEARCH INSTITUTE CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
GUIYANG ALUMINUM MAGNESIUM DESIGN & RESEARCH INSTITUTE CO LTD
Filing Date
2025-06-27
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

The existing equipment configuration in red mud filter press workshops for alumina production results in excessively high construction and production costs, and inconvenient equipment management.

Method used

Ten diaphragm filter presses are arranged in parallel on the same floor, with four presses in three rows. Three mobile belt conveyors are installed below each row of diaphragm filter presses. The red mud slurry feed pump and pressing water pump are centrally managed, and the auxiliary equipment area is centrally located, resulting in an optimized equipment layout.

Benefits of technology

It reduces the height of the factory building and the number of equipment, improves resource utilization, reduces construction and production costs, and facilitates equipment management and operation.

✦ Generated by Eureka AI based on patent content.

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Abstract

本实用新型公开了一种氧化铝领域赤泥压滤工序节约用地和投资的配置结构,包括有主生产区和辅助配套区,主生产区设置有10台隔膜式压滤机,10台隔膜式压滤机设置在同一层、且分为平行的3排设置,每排至多设置有4台隔膜式压滤机,在3排隔膜式压滤机正下方的主生产区底层平行设置有3条移动式胶带输送机。以单台喂料泵和压榨水泵对应多台压滤机,单条移动式胶带输送机对应多台压滤机卸饼接料的方式,提高了设备的资源利用率。在不影响生产效率的前提下,实现了设备的高效协同运作。本实用新型降低了车间建筑高度,使其布局更加合理。这不仅减少了建筑施工的难度和成本,还为后续的设备安装、维护和操作提供了便利,而且并未增加生产操作难度。
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Claims

1. A configuration structure for saving land and investment in a red mud filter pressing process in the field of alumina, characterized by: It includes a main production area (5) and an auxiliary supporting area (6). The main production area (5) is equipped with 10 diaphragm filter presses (2). The 10 diaphragm filter presses (2) are set on the same layer and are arranged in three parallel rows. Each row is equipped with a maximum of 4 diaphragm filter presses (2). Three mobile belt conveyors (3) are arranged in parallel on the bottom layer of the main production area (5) directly below the three rows of diaphragm filter presses (2).

2. The configuration structure for saving land and investment in the red mud filter pressing process in the field of alumina, according to claim 1, characterized in that: It also includes 5 red mud slurry feeding pumps (1) and 5 pressing water pumps (4), with each red mud slurry feeding pump (1) and pressing water pump (4) connected to 2 diaphragm filter presses (2).

3. The configuration structure for saving land and investment in the red mud filter pressing process in the field of alumina, according to claim 2, characterized in that: The five red mud slurry feeding pumps (1) and five pressing water pumps (4) are respectively located in a certain area.

4. The configuration structure for saving land and investment in the red mud filter pressing process in the field of alumina according to claim 1, characterized in that: All the auxiliary equipment areas (6) are located on one side of the feed end of the diaphragm filter press (2).