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A permanent magnet material with high temperature resistance and high magnetic performance

A permanent magnetic material and high magnetic technology, applied in the direction of magnetic materials, magnetic objects, electrical components, etc., can solve the problems of poor bonding between magnetic powder and special resin, unsatisfactory high temperature resistance, and easy agglomeration of special resin, etc., to achieve compensation The effects of low operating temperature, enhanced mechanical properties, and improved temperature resistance

Active Publication Date: 2018-12-14
JIANGSU PULONG MAGNETIC ELECTRICITY CO LTD
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0002] The advantages of NdFeB magnets are high cost performance and good mechanical properties; the disadvantages are that the Curie temperature point is low, the temperature characteristics are poor, and it is easy to be pulverized and corroded. It must be adjusted by adjusting its chemical composition and adopting surface treatment methods. To improve, in order to meet the requirements of practical application
[0004] In the existing technology, the Chinese invention patent CN101740193B, the title of the invention is: a high-performance high-resistivity rare earth permanent magnet and its preparation method. Started with technology, without adding insulating additives, studied the surface coupling process of magnetic powder, the mixing process of special resin and coupled magnetic powder, the orientation molding process of magnet temperature and pressure, etc., solved the problem of weak bonding between magnetic powder and special resin, special resin on the surface of magnetic powder There are a series of problems such as incomplete coating, easy agglomeration of special resin during processing, and limited improvement in magnetic properties of magnets after molding. From the results, it can be seen that the electrical insulation performance has indeed been significantly improved, but the high temperature resistance is not ideal. How? The development of high temperature resistant permanent magnet materials has become a development trend

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0021] (1) Magnetic powder surface coupling: 100 parts by weight of Nd 2 Fe 14 B magnetic powder and 0.2 weight parts of graphene oxide powder are stirred and mixed evenly to form mixed magnetic powder; then 0.1 weight part of titanate coupling agent NDZ401 and 30 weight parts of xylene organic solvent are added to 100.2 weight parts of magnetic powder, Mix the above solution evenly through high-speed shear stirring at a speed of 2000 rpm for 0.5h, and oscillate with ultrasonic wave for 0.5h so that the magnetic powder and coupling agent can be fully mixed, and then heat the mixture while stirring until the solvent is volatilized. The modified mixed magnetic powder is dried and ground for use; (2) then the modified mixed magnetic powder is mixed with 0.1 parts by weight of ferrocene magnetic powder, dried, and then 1 part by weight of bisphenol A epoxy resin is mixed with Add the mixture of acetone to the dried mixed magnetic powder, stir at a stirring speed of 2000 rpm for 0...

Embodiment 2

[0025] (1) Magnetic powder surface coupling: 100 parts by weight of Nd 2 Fe 14 B magnetic powder and 3 parts by weight of graphene oxide powder are stirred and mixed evenly to form mixed magnetic powder, 2 parts by weight of titanate coupling agent NDZ401 and alcohol of 35 parts by weight are added to 103 parts by weight of mixed magnetic powder, passed through 500 Mix the above solution evenly with high-speed shear stirring at a speed of rpm for 1 hour, and oscillate for 1 hour to make the mixed magnetic powder and coupling agent fully mixed, and then heat the mixture while stirring until the solvent is volatilized, and the modified (2) then mix the modified mixed magnetic powder with 0.3 parts by weight of ferrocene magnetic powder, dry, then mix 6.5 parts by weight of bisphenol A epoxy resin with organic solvent acetone Add the mixed solution to the surface-coupled mixed magnetic powder, stir at a stirring speed of 500-2000 rpm for 1 hour, mix the above mixed solution even...

Embodiment 3

[0029] (1) Magnetic powder surface coupling: 100 parts by weight of Nd 2 Fe 14B magnetic powder and 2 weight parts of graphene oxide powder are stirred and mixed evenly to form mixed magnetic powder, and 5 weight parts of titanate coupling agent NDZ401 and 30 weight parts of xylene are added to 102 weight parts of mixed magnetic powder. High-speed shear stirring at 800 rpm for 1.5 hours Mix the above solution evenly, and oscillate ultrasonically for 1.5 hours so that the mixed magnetic powder and coupling agent can be fully mixed, and then heat the mixture while stirring until the solvent is volatilized. The modified mixed magnetic powder is dried and ground for use; (2) then the modified mixed magnetic powder is mixed with 0.2 parts by weight of ferrocene magnetic powder, dried, and then mixed with bisphenol A epoxy resin and organic solvent acetone Add liquid to the mixed magnetic powder after surface coupling, stir at a stirring speed of 500 ~ 2000 rpm for 1.5h to mix the ...

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Abstract

The invention discloses a permanent-magnet material resistant to high temperature and with high magnetic performance. The mass of the permanent-magnet material comprises 100 parts of Nd2Fe14B magnetic powder, 0.1-0.3 part of ferrocene magnetic powder, 0.1-5 parts of titanate coupling agent, 1-10 parts of bisphenol A epoxy resin and 0.2-3 parts of graphene oxide powder, and a cured material is formed after uniformly mixing the raw materials in a composite environment of a temperature field with a constant temperature being 20-200 DEG C and an orientation field with field magnetic intensity being 0.5-3T. With the permanent-magnet material provided by the invention, the defect of unfavorable temperature resistance of a bonded NdFeB material is improved, the application range of the bonded NdFeB material is expanded, the defect of low application temperature of the bonded NdFeB material can be made up, the magnetic performance of the magnet under high temperature is greatly improved, the weight loss of the magnet can be effectively reduced, and the corrosion resistance of the magnet is improved.

Description

technical field [0001] The invention relates to a rare earth permanent magnet material, which belongs to the technical field of materials, in particular to a permanent magnet material with high temperature resistance and high magnetic performance. Background technique [0002] The advantages of NdFeB magnets are high cost performance and good mechanical properties; the disadvantages are that the Curie temperature point is low, the temperature characteristics are poor, and it is easy to be pulverized and corroded. It must be adjusted by adjusting its chemical composition and adopting surface treatment methods. Improvement can meet the requirements of practical application. [0003] NdFeB magnets are divided into sintered type and bonded type according to different production methods. Compared with sintered permanent magnets, bonded magnets have many advantages such as high cost performance, convenient forming of special-shaped magnets, high processing precision, good toughne...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): H01F1/057
CPCH01F1/0576
Inventor 周连明
Owner JIANGSU PULONG MAGNETIC ELECTRICITY CO LTD
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