A low-carbon nano-silicon negative ion coating separation device and method

The low-carbon nano-silicon negative ion coating separation device, with its double-layer sieving structure and rotary design, solves the problems of separation accuracy and material blockage in existing devices. It achieves millimeter-level fine separation and anti-clogging of low-carbon nano-silicon negative ion coating, improving laboratory sieving efficiency and accuracy.

CN122400142APending Publication Date: 2026-07-17GUANGXI NEW DEV TRANSPORT GRP CO LTD +2
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
GUANGXI NEW DEV TRANSPORT GRP CO LTD
Filing Date
2026-05-07
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

Existing laboratory sieving devices cannot meet the requirements of millimeter-level dual separation, anti-clogging, fine collection, and stable sieving of low-carbon nano-silicon negative ion coatings, resulting in low experimental accuracy, large material loss, and discontinuous operation.

Method used

It adopts a miniaturized screen cylinder and screen plate double-layer grading structure. The screen cylinder has a larger screen hole diameter than the screen plate, forming a gradient double precision screening system. Combined with a rotary design and bidirectional spiral blades, it achieves anti-clogging and precise separation, and is equipped with an arc-shaped pressure plate to crush agglomerated materials.

Benefits of technology

It achieves millimeter-level fine separation of low-carbon nano-silicon negative ion coatings, avoiding particle mixing, preventing clogging, improving experimental accuracy and efficiency, reducing material loss, and adapting to the laboratory's small-batch high-precision sieving needs.

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Abstract

本发明公开了一种低碳纳米硅负离子涂料分离装置及方法,包括外环,外环上设有第一下料孔,外环内部固定连接有筛盘,筛盘内部设有第二下料孔,第二下料孔中部设有固定架,固定架中部连接有支撑轴,支撑轴上连接有进料斗,进料斗的一侧固定连接有进料管,进料管的端部设有料口,进料管的端部固定连接有支撑杆,支撑杆的端部转动连接有外边缘为圆形的滚动件,滚动件的底部边缘贴合于外环,滚动件靠近料斗的一侧通过连接杆固定连接有筛筒,筛筒的筛孔孔径大于筛盘的筛孔孔径,筛筒的外表面和内表面分别固定连接有旋向相反的外螺旋片和内螺旋片。该发明具备适配实验场景、结构小巧、筛分精准、不易堵料的优点,解决了现有技术的问题。
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