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首页> 外文期刊>Journal of magnetism and magnetic materials >Process optimization and magnetic properties of soft magnetic composite cores based on phosphated and mixed resin coated Fe powders
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Process optimization and magnetic properties of soft magnetic composite cores based on phosphated and mixed resin coated Fe powders

机译:磷酸化和混合树脂包覆铁粉的软磁复合芯的工艺优化和磁性能

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摘要

Fe powders based soft magnetic composites (SMCs) with organic- inorganic multiple-layer coating were fabricated by improved isolation coating followed by pressing and curing. Phosphate and organic resin were selected as the insulting layers. The influences of phosphating process and the composition of organic coating on the magnetic properties of the SMCs and soft magnetic cores have been systematically investigated. The phosphating process was modified for simple and easy operation, suitable for carbonyl iron powders with small particle size. The optimized phosphating method created a complete and continuous phosphate layer on the surface of micron sized particles. Without resin coating, the magnetic cores fabricated with the phosphated powders prepared with 0.5-0.7 wt% phosphoric acid exhibit relatively high permeability and quality factor at high frequency. In addition, a new type of mixed resin with good thermal stability was employed for insolating coating, which provides distinctly higher resistivity and better protective effect than silicone. The optimal content of the mixed resin content is about 3 wt% for fabricating the magnetic cores with low eddy current loss and hysteresis loss by producing a protective layer to isolate magnetic particles and reduce the internal stress. The SMC cores prepared with optimized phosphating process and organic coating exhibit high relative density (93.7%), high electric resistivity (2.23 x 10~7 Ω·cm), stable permeability (in the frequency range from 5 to 1000 kHz), high quality factor (44.8 at 700 kHz) and relatively low magnetic loss (159.0 kW/m~3 at 100 kHz).
机译:通过改进隔离涂层,然后进行压制和固化,制造了具有有机-无机多层涂层的铁粉基软磁复合材料(SMC)。选择磷酸盐和有机树脂作为绝缘层。已经系统地研究了磷化工艺和有机涂层组成对SMC和软磁芯磁性能的影响。对磷化工艺进行了修改,使其操作简便,适用于小粒径的羰基铁粉。优化的磷化方法在微米级颗粒的表面上形成了一个完整而连续的磷酸盐层。在没有树脂涂层的情况下,由用0.5-0.7 wt%磷酸制备的磷酸化粉末制成的磁芯在高频下显示出较高的磁导率和品质因数。此外,采用一种新型的具有良好热稳定性的混合树脂作为绝缘涂层,与硅树脂相比,它具有明显更高的电阻率和更好的保护效果。混合树脂含量的最佳含量为约3wt%,用于通过产生隔离磁性颗粒并减小内应力的保护层来制造具有低涡流损耗和磁滞损耗的磁芯。经过优化的磷化工艺和有机涂层制备的SMC磁芯具有高相对密度(93.7%),高电阻率(2.23 x 10〜7Ω·cm),稳定的磁导率(在5至1000 kHz的频率范围内),高质量系数(700 kHz时为44.8)和相对较低的磁损耗(100 kHz时为159.0 kW / m〜3)。

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