Magnetic and Mechanical Properties of Iron-Based Soft Magnetic Composites Coated with Silane Synergized by Bi2O3

被引:0
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作者
Wangchang Li
Wanjia Li
Yao Ying
Jing Yu
Jingwu Zheng
Liang Qiao
Juan Li
Lingxiang Zhang
Lun Fan
Naoki Wakiya
Hisao Suzuki
Daxin Bao
Shenglei Che
机构
[1] Zhejiang University of Technology,College of Materials Science and Engineering
[2] Zhejiang University of Technology,Research Center for Magnetic and Electronic Materials
[3] Research Institute of Electronics,Department of Electronics and Materials Science
[4] Shizuoka University,undefined
[5] Shizuoka University,undefined
[6] Hengdian Group DMEGC Magnetics Co.,undefined
[7] Ltd,undefined
来源
关键词
Insulation coating; soft magnetic composites; Bi; O; silane; transverse rupture strength;
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中图分类号
学科分类号
摘要
Fe-based soft magnetic composites (SMCs) co-coated with Bi2O3 and silane, used as the low melting point binder and the insulating layer, respectively, were successfully prepared. The SMCs show improved mechanical strength, thermal stability, and insulation compared to other soft magnetic composite materials. The obtained SMCs exhibit a high Bm of 1.2607 T at 5000 A/m, 50 Hz, a high μmax of 497, and a low Pcm of 81.8 W/kg at 50 kHz and 50 mT for a completely homogeneous thin insulating coating. In addition, the transverse rupture strength of such materials is up to 81.2 MPa, which is extremely important for high-speed motors. Furthermore, the permeability and magnetic loss are stable under stress. Nonlinear curve fitting was used to build the loss model and then separated into the hysteresis loss, the eddy current loss, and the excess loss. The loss mechanism of SMCs with different coatings and micro-stress was explored and verified via this model. When compared to traditional SMCs, this material coated with Bi2O3 and silane shows a lower loss and a higher transverse rupture strength. This research expands the application fields of iron-based SMCs, especially in practical applications of soft magnetic components in high-speed motors.
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页码:2425 / 2435
页数:10
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