A fluid magnetizing device

CN122295740APending Publication Date: 2026-06-26GUANGDONG HENT TECH
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
GUANGDONG HENT TECH
Filing Date
2023-11-30
Publication Date
2026-06-26

AI Technical Summary

Technical Problem

In the existing fluid magnetization devices, the cross-section of the fluid channel is large, resulting in the fluid flowing in a columnar shape, the magnetization effect is weak, and the flow rate is low, so it is impossible to achieve large flow of water effluent.

Method used

A fluid magnetization device is designed, and three magnetization flow channels are formed to magnetize the fluid three times by providing a first magnetic block assembly and a second magnetic block assembly in the outer casing. The second magnetization flow channel is configured to form a rotating state of the fluid, increasing the magnetization area and travel distance of the fluid.

Benefits of technology

The device significantly strengthens the magnetization effect of the fluid through the design of the three-magnetization flow channel. Through the design of the rotating fluid, the magnetization area and travel distance of the fluid are increased, thereby achieving large-flow fluid outflow.

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Abstract

A fluid magnetization device includes an outer shell (1) with a fluid inlet and a fluid outlet, and a first magnetic block assembly (3) and a second magnetic block assembly (2) arranged sequentially along the fluid flow direction within the outer shell (1). By setting the first magnetic block assembly (3) and the second magnetic block assembly (2) within the outer shell (1), three magnetization channels are formed, and the fluid is magnetized three times, greatly enhancing the magnetization effect of the fluid. By setting the second magnetization channel (7), the fluid enters the second magnetization channel (7) in a rotating state, and at the same time, the originally columnar fluid is diverted to the surrounding areas and enters the second magnetization channel (7), greatly increasing the magnetization area of ​​the fluid and better ensuring the overall magnetization effect of the fluid. This method can achieve a large flow rate of fluid while ensuring the magnetization effect.
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