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A β-shaped path fluid magnetization method and magnetization device

A fluid magnetization and path technology, applied in chemical instruments and methods, magnetic field/electric field water/sewage treatment, water/sludge/sewage treatment, etc. Guaranteed effect of magnetization

Active Publication Date: 2021-07-23
YANGZHOU UNIV
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Although the fluid in this scheme cuts the magnetic force lines in the working field, the fluid flows in a single direction, and the polar direction of the molecular chain is consistent with the direction of the magnetic field, which reduces the effect of the molecular chains cutting the magnetic force lines.

Method used

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  • A β-shaped path fluid magnetization method and magnetization device
  • A β-shaped path fluid magnetization method and magnetization device
  • A β-shaped path fluid magnetization method and magnetization device

Examples

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Embodiment 1

[0045] A fluid magnetization method with a β-shaped path, which makes the fluid flow along a β-shaped path in a magnetic field. The β-shaped path is composed of a "1"-shaped path and a "ξ"-shaped path in series, and the "ξ"-shaped path is composed of a plurality of " S"-shaped paths are connected in series. The magnetized cavity with the direction of the magnetic field line and the same flow direction as the water flow is the "1" path magnetized cavity. In the "1" path magnetized cavity parallel to the magnetic force line, the water flow slowly passes through, and the water molecules are rearranged and arranged, that is, the water molecule group will expand. For long molecular chains, the curved molecular chains will expand into straight molecular chains, creating conditions for cutting magnetic force lines and breaking molecular chains in subsequent steps. After preliminary magnetization, the water flows through the magnetic field repeatedly vertically, obliquely, and paralle...

Embodiment 2

[0047] A β-shaped path fluid magnetization device, comprising an outer barrel 6, a magnetic shield 3, an inner barrel 24 and a magnetization assembly 2 arranged in the inner barrel 24, the inner barrel 24 is placed in the outer barrel 6, and the magnetic shield 3 is set Between the inner barrel 24 and the outer barrel 6;

[0048] The magnetization assembly 2 includes two perforated magnets 22 and two non-porous magnets 21, the perforated magnets 22 are 60mm in outer diameter, 12mm in inner diameter, 10mm in thickness, and N35 NdFeB rare earth permanent magnets with a surface magnetic strength of 4000GS; The magnet is an N35 NdFeB rare earth permanent magnet with an outer diameter of 54mm, a thickness of 10mm, and a surface magnetic strength of 4000GS. Porous magnets 22 and non-porous magnets 21 are arranged in parallel and at intervals. The surfaces of the porous magnets 22 and the non-porous magnets 21 are nickel-plated at the bottom, UV adhesive film is sprayed at the middle...

Embodiment 3

[0053] A β-shaped path fluid magnetization device, comprising an outer barrel 6, a magnetic shield 3, an inner barrel 24 and a magnetization assembly 2 arranged in the inner barrel 24, the inner barrel 24 is placed in the outer barrel 6, and the magnetic shield 3 is set Between the inner barrel 24 and the outer barrel 6;

[0054] The magnetization assembly 2 includes 4 perforated magnets 22 and 4 non-porous magnets 21, the perforated magnets 22 are NdFeB rare earth permanent magnets with an outer diameter of 80mm, an inner diameter of 20mm, a thickness of 20mm, and a surface magnetic strength of 6000GS; It is a NdFeB rare earth permanent magnet with an outer diameter of 70mm, a thickness of 20mm, and a surface magnetic strength of 6000GS. Porous magnets 22 and non-porous magnets 21 are arranged in parallel and at intervals. The surfaces of the porous magnets 22 and the non-porous magnets 21 are coated with epoxy resin on the bottom layer, and the middle layer is sprayed with U...

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Abstract

The present invention proposes a β-shaped path fluid magnetization method and magnetization device. The "S"-shaped path magnetization cavity is formed by cutting the magnetization cavity, the paramagnetic magnetization cavity and the hole magnetization cavity, and the magnetization cavity is passed through multiple sets of "S"-shaped paths. The "ξ"-shaped path magnetization cavity is formed in series, and the "1"-shaped path magnetization cavity is formed between the inner barrel and the magnetic shield, and then forms a β-shaped magnetization path with the "ξ"-shaped path magnetization cavity. The flow direction of the fluid in the "1"-shaped path is parallel to the direction of the magnetic field lines, and the fluid in the "ξ"-shaped path repeatedly flows through the magnetic field vertically, obliquely, and parallel to the magnetic field lines. The present invention solves the problem of molecular chains cutting magnetic force lines from the microscopic level, and cleverly uses the combination of porous magnets and non-porous magnets to form a unique "β"-shaped path, which ensures the magnetization effect of the present invention.

Description

technical field [0001] The invention relates to a fluid magnetization technology, in particular to a fluid magnetization method and a magnetization device with a β-shaped path. Background technique [0002] After the fluid passes through the magnetic field, it becomes a "magnetized" fluid, and the effective "magnetization" will affect its physical and chemical properties and become active. Since the 1980s, various magnetized cups and pots have emerged in an endless stream. This so-called "magnetized" water or fluid can only be called false "magnetized" water or fluid. This is because water, fluid must move in a magnetic field to be "magnetized". In addition, for some magnetization devices, the magnetic field strength is relatively low, which is not enough to change the molecular structure of the fluid, and the actual effect is limited; for some magnetization devices, the fluid flows along the direction of the magnetic field, and the magnetic field has little effect on the ...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): C02F1/48
CPCC02F1/481
Inventor 孙王虎
Owner YANGZHOU UNIV