A cyclone magnetic composite filtration and separation device for industrial liquid processing

By using a cyclone magnetic composite filtration and separation device with a magnetic suction groove and a sealing rotary drum structure, high-efficiency separation of iron filings and sand and gravel can be achieved without stopping the machine for cleaning. This solves the problems of low separation efficiency and frequent maintenance in existing technologies, and improves the separation accuracy and reliability of the device.

CN122298574APending Publication Date: 2026-06-30DADONG LINGANG IND PARK ZONE HEBEN PRECISION MACHINERY
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
DADONG LINGANG IND PARK ZONE HEBEN PRECISION MACHINERY
Filing Date
2026-06-03
Publication Date
2026-06-30

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Abstract

This invention discloses a cyclone magnetic composite filtration and separation device for industrial processing liquids, belonging to the technical field of liquid purification and separation devices. It includes a tank, a conical section, a liquid inlet, a central cylinder, and a purified liquid drain pipe. The conical section has multiple magnetic suction grooves arranged in a ring on its side wall. Each magnetic suction groove contains an electromagnet rod and a 180° rotatable sealing cylinder with a through hole. When the processed liquid rotates within the tank, larger particles such as iron filings and sand are thrown towards the inner wall of the tank and the conical section under centrifugal force. By setting multiple magnetic suction grooves, each containing an electromagnet rod capable of adsorbing iron filings from impurities, while non-magnetic impurities such as sand continue to sink along the wall, the iron filings and sand are gathered together on the inner wall of the conical section through cyclone flow. Then, the iron filings are selectively captured by fixed-point magnetic attraction, ensuring the separate processing of iron filings and sand, thus improving separation accuracy.
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