Molybdenum-based ferrite core material used for transformer

A ferrite core and transformer technology is applied in the field of molybdenum-based ferrite core materials to achieve the effects of high grain boundary resistivity, strong mechanical properties and high magnetic energy product

Active Publication Date: 2014-09-17
TONGLING SANJIA TRANSFORMER
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Now the electronic communication industry needs ferrite cores with low core loss and high magnetic permeability to meet the miniaturization and high efficiency requirements of current electrical equipment, and the existing magnetic cores are difficult to meet the above requirements;

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0023] A molybdenum-based ferrite core material for a transformer is characterized in that it includes main materials and additives, and the main materials include: 57.2-66 mol of Fe2O3, 17-24.6 mol of manganese oxide, 12.5-17.6 mol of zinc oxide, 2-2.6 mol of silicon oxide, 0.04-0.1 mol of aluminum dihydrogen phosphate, 0.02-0.04 mol of yttrium oxide, 0.01-0.02 mol of rare earth composite magnetic powder; The weight ratio of the ferrite core material includes: 50-100ppm nano-carbon, 40-70ppm nickel oxide, 20-30ppm aluminum silicate;

[0024] The preparation of the rare earth composite magnetically permeable powder comprises the following steps:

[0025] Preparation of master mix:

[0026] Described premix is ​​made up of the following raw materials of weight portion:

[0027] Molybdenum powder 100, fatty acid polyethylene glycol ester 1, dodecyldimethylbenzyl ammonium oxide 0.6, stearic acid 3, aminopropyltriethoxysilane 1, deionized water 300;

[0028] Add molybdenum powd...

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Abstract

The invention discloses a molybdenum-based ferrite core material used for a transformer. The molybdenum-based ferrite core material comprises main materials and additives. The main materials comprise, by molar ratio, 57.2 mol to 66 mol of Fe2O3, 17 mol to 24.6 mol of manganese oxide, 12.5 mol to 17.6 mol of zinc oxide, 2 mol to 2.6 mol of silicon oxide, 0.04 mol to 0.1 mol of aluminum dihydrogen phosphate, 0.02 mol to 0.04 mol of yttrium oxide and 0.01 mol to 0.02 mol of rare-earth composite magnetic powder. The additives comprise, by weight ratio of components to the ferrite core material, 50 ppm to 100 ppm of nano carbon, 40 ppm to 70 ppm of nickel oxide and 20 ppm to 30 ppm of aluminum silicate. The rare-earth composite magnetic powder added into the molybdenum-based ferrite core material is high in magnetic energy product, stable in magnetism and simple in preparing method, and the finished product has the advantages of being high in crystal boundary resistivity, low in gas hole ratio and large and even in crystal particle.

Description

[0001] technical field [0002] The invention mainly relates to the field of manufacture of oxide magnetic materials, in particular to a molybdenum-based ferrite core material for transformers. Background technique [0003] With the development of communication technology and digitalization of electronic products, new requirements are put forward for soft ferrite and components. High-performance and high-permeability magnetic cores are widely used in various basic materials for telecommunications and information, such as common-mode filters, Saturated inductors, current transformers, leakage protectors, insulation transformers, signal and pulse transformers and other fields have been widely used. Now the electronic communication industry needs ferrite cores with low core loss and high magnetic permeability to meet the miniaturization and high efficiency requirements of electrical equipment. The existing magnetic cores are difficult to meet the above requirements; [0004] ...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): H01F1/36C04B35/40C04B35/622
Inventor 李新满
Owner TONGLING SANJIA TRANSFORMER
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