一种压实造粒装置

By designing a compaction and granulation device, the material is squeezed into the mesh by utilizing the opposite rotation of the granulation wheel and the pressing wheel, which solves the problem of low material compaction efficiency in the existing technology and achieves efficient material compaction and granulation effect.

CN224507008UActive Publication Date: 2026-07-17WEIFANG ZHENGYUAN POWDER ENG EQUIP

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
WEIFANG ZHENGYUAN POWDER ENG EQUIP
Filing Date
2025-08-08
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

In existing technologies, materials have complex structures and low compaction efficiency during crushing and grading processes, making it impossible to efficiently compact and granulate materials.

Method used

A compaction granulation device was designed, including a shell, a granulation wheel, and a pressing wheel. By rotating the granulation wheel and the pressing wheel in opposite directions, the material is squeezed into the mesh, thereby separating the material from the gas and forming compacted granules.

Benefits of technology

It achieves efficient compaction and granulation of materials, effective separation of materials and gas, and improves compaction efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

本实用新型公开了一种压实造粒装置,包括壳体,壳体的下端固定安装有造粒壳体,造粒壳体内设有造粒轮,壳体内设有位于所述造粒壳体上部的进料腔,造粒壳体的内腔与进料腔连通,壳体内转动安装有空心轴,空心轴内套有中心轴,中心轴的下端伸出所述空心轴并固定安装有所述造粒轮,所述空心轴上固定安装有位于所述进料腔内的压料轮,所述造粒壳体包括下盘体和筒体,所述筒体与所述下盘体固定安装在一起,所述筒体上均匀分布有网孔。进入进料腔的物料通过压料轮被赶到造粒壳体,通过造粒轮的转动,将物料挤入造粒壳体的网孔内,空气被挤出,物料经过反复压实由网孔挤出形成压实颗粒强行与气体分离,高效的实现了物料的压实和造粒。
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Claims

1. A compaction granulation apparatus characterized by, The device includes a housing, a granulation housing fixedly mounted at the lower end of the housing, a granulation wheel inside the granulation housing, a feeding chamber located at the upper part of the housing, the inner cavity of the granulation housing communicating with the feeding chamber, a hollow shaft rotatably mounted inside the housing, a central shaft sleeved inside the hollow shaft, the lower end of the central shaft extending out of the hollow shaft and fixedly mounted with the granulation wheel, a pressing wheel fixedly mounted on the hollow shaft within the feeding chamber, the granulation housing including a lower disc and a cylinder, the cylinder being fixedly mounted together with the lower disc, and the cylinder having uniformly distributed mesh holes.

2. The compacting granulator of claim 1 wherein, The granulating wheel and the pressing wheel rotate in opposite directions.

3. The compacting granulator of claim 1 wherein, The pressure roller includes an annular body, on which multiple pressure plates are fixedly mounted. The upper ends of the pressure plates are inclined along the rotation direction of the pressure roller.

4. The compacting granulator of claim 1 wherein, The granulating wheel includes multiple extrusion sections, and a guide gap is provided between adjacent extrusion sections.

5. The compacting granulator of claim 4 wherein, The extrusion section includes a head and a root, with the head deflected relative to the root in the opposite direction of rotation of the granulating wheel.

6. The compacting granulator of claim 1 wherein, A lower gap is provided between the lower surface of the granulating wheel and the lower disc body.

7. The compacting granulator of claim 5 wherein, The side surface of the head includes an inner plane adjacent to the central axis and an outer arc-shaped surface adjacent to the inner cavity wall of the granulation shell, the center of which coincides with the axis of the granulation wheel.

8. The compacting granulator of claim 7 wherein, The angle α between the line connecting the intersection of the inner plane and the outer arc surface and the axis of the granulating wheel and the inner plane is ≥25° and ≤45°.

9. The compacting granulator of claim 8 wherein, The head includes a second arcuate surface connected to the outer arcuate surface, and the head also includes a third arcuate surface connected to the inner plane, wherein the radius of the third arcuate surface is smaller than the radius of the second arcuate surface.