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Dipping Paint Curing Amorphous U-Core Used as Reactor 被引量:3

Dipping Paint Curing Amorphous U-Core Used as Reactor
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摘要 Non-oriented silicon steel (35W310) and amorphous ribbon (FeT8 Si9B13 amorphous alloy) reactor U-cores are made by welding and dipping paint curing, respectively. Amorphous U-core used to make reactor cut sharply ed-dy current loss due to high electrical resistivity characteristic, thickness of thin ribbon and insulation of dipping paint. The amorphous alloy has high and constant magnetic permeability, and is more suitable for reactor design power to filter high order harmonic component. Keeping off high magnetostriction district with magnetic flux density of 50-100 mT can weaken influence on inductance of inductor due to elongation of magnetostriction. Amorphous al-loy has a lower temperature rise using the software Infolytica 7.2 simulation. Non-oriented silicon steel (35W310) and amorphous ribbon (FeT8 Si9B13 amorphous alloy) reactor U-cores are made by welding and dipping paint curing, respectively. Amorphous U-core used to make reactor cut sharply ed-dy current loss due to high electrical resistivity characteristic, thickness of thin ribbon and insulation of dipping paint. The amorphous alloy has high and constant magnetic permeability, and is more suitable for reactor design power to filter high order harmonic component. Keeping off high magnetostriction district with magnetic flux density of 50-100 mT can weaken influence on inductance of inductor due to elongation of magnetostriction. Amorphous al-loy has a lower temperature rise using the software Infolytica 7.2 simulation.
出处 《Journal of Iron and Steel Research International》 SCIE EI CAS CSCD 2013年第7期63-68,共6页
基金 Item Sponsored by National High-Tech Research and Development Program (863 Program) of China (2009AA03Z214)
关键词 amorphous Fe-Si-B alloy dipping paint curing power loss reactor U-core magnetic field simulation amorphous Fe-Si-B alloy dipping paint curing power loss reactor U-core magnetic field simulation
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