High strength and high efficiency fluid magnetizing tube, magnetizing device and system

A fluid magnetization and magnetization device technology, applied in the chemical/physical/physicochemical process of energy application, magnetic field/electric field water/sewage treatment, etc., can solve low work efficiency, reduce magnetic energy product utilization rate and magnetic susceptibility, and reduce magnetization Magnetic field strength etc.

Inactive Publication Date: 2006-08-23
朱澄清
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0005] But this invention still has some unavoidable shortcomings due to the use of axially magnetized magnetic rings:
Therefore, only about half of the axial length of the magnetized tube is utilized, so the utilization rate and magnetic susceptibility of the magnetic energy product per unit length and unit volume are reduced;
[0007] 2) Due to the axially magnetized magnetic ring, the sleeve of the magnetic tube can only be made of non-ferromagnetic materials, so that the magnetized magnetic field of the magnetized tube is easily affected by the adjacent ferromagnetic elements and magnetic fields, especially if multiple magnetized tubes are arranged in parallel When the tube is ferromagnetic, it is necessary to use a magnetized tube with an inner magnetic tube structure. Compared with magnetized tubes with the same diameter or the same outer diameter, the magnetic ring volume of the inner magnetic tube is much smaller than that of the outer magnetic tube. Therefore, the intensity of the magnetization field of the magnetization tube with the inner magnetization tube structure is much lower than that of the magnetization tube with the outer magnetization tube structure, and it is difficult to increase the magnetization field intensity of the magnetization tube; Magnetized tube, the magnetized magnetic field is concentrated between the two magnetic tubes, and there is still a magnetic field on the other side of the sleeve of the non-magnetic material. For the single-tube magnetized tube, this part of the magnetic field cannot be used, regardless of whether this part of the magnetic field is Due to the existence of this part of the magnetic field, the intensity of the magnetizing magnetic field will inevitably be reduced
Therefore, it is difficult to improve the utilization rate and magnetic susceptibility of the magnetic energy product per unit length and unit volume of the magnetized tube and the magnetized device using the axially magnetized magnetic ring.
[0008] 3) Due to the use of axially magnetized magnetic rings, it is necessary to ensure that the magnetization directions of the axially adjacent magnetic rings point in the opposite direction, and the magnetization directions of the radially adjacent magnetic rings also point in the opposite direction, so great attention must be paid to the polarity of the magnetic rings during assembly , which makes the assembly work more difficult, the work efficiency is low, and quality problems are prone to occur

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment Construction

[0079] Since the structure of the present invention is very simple, illustrations can be omitted to help explain, and only a few more specific application examples are introduced to help understand the present invention.

[0080] 1 Magnetizing tube whose axis is a plane curve

[0081] Coaxial casing and catheter whose axis is the same as the plane curve, the wedge-shaped spacer and the magnetic ring are arranged at intervals depending on the curvature radius of the curve. The thickness of the wedge-shaped spacer is at the far end of the center of curvature of the plane curve. The plane curve can also be of variable curvature, and the wedge-shaped included angle of the wedge-shaped spacer also changes accordingly. The cover plates at both ends have coaxial outer and inner cylindrical surfaces that match the shaft or hole of the sleeve or conduit, or with edge The width and the width of the fluid channel are higher than the flange where the end cover is inserted between the sleeve a...

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Abstract

The present invention provides high strength and high efficiency fluid magnetizing tube, magnetizing device and magnetizing system, and belongs to the field of fluid magnetizing technology. The fluid magnetizing tube includes a magnetic tube, a magnetic conducting tube, and a locating and guiding element to form one or several fluid channels and has straight or curved axis. The magnetic tube includes a magnetic ring, an isolating ring of non-ferromagnetic material and a duct; the magnetic conducting tube is high permeability duct or one other magnetic tube; and the end plates possess fluid channel. The magnetizing device includes a casing and several magnetizing tubes connected serially and/or in parallel. The magnetizing system has magnetizing device, conventional pump and power device to perform circular fluid magnetizing. The present invention has high strength axial and radial magnetic field and high fluid magnetizing efficiency.

Description

Technical field [0001] A high-strength and high-efficiency fluid magnetization tube, a magnetization device and a magnetization system belong to the technical field of fluid magnetization treatment. Background technique [0002] Fluid magnetization treatment technology has been widely used in many fields such as industrial and agricultural production and daily life, and has a positive effect on the improvement of production efficiency, the improvement of product quality, and the treatment of human health and certain diseases. [0003] The practical and theoretical analysis in the field of fluid magnetization treatment technology shows that the basic requirements for a magnetizing magnetic field with a good magnetization effect are: the magnetic field should cover the entire fluid channel; the direction of the magnetic field of the magnetic field for cutting the fluid is perpendicular to the direction of fluid movement; along the direction of fluid movement The gradient of the int...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C02F1/48B01J19/12
Inventor 朱澄清
Owner 朱澄清
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