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Advanced soft magnetic composite materials for AC applications with reduced iron losses

机译:用于交流应用的先进软磁复合材料,可减少铁损

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摘要

Achieving high density with soft magnetic composite (SMC) materials requires compaction pressures exceeding 700 MPa; resulting in significant work hardening of the iron powder particles, increasing the DC magnetic coercive force along with a corresponding increase in the hysteresis loss portion of the total core loss. Annealing the as-compacted component at temperatures at or above 650 degrees C reduces the coercive DC force and tends to decrease the AC core losses provided that the insulation layer is stable during the annealing cycle. Detailed in this paper are preliminary results utilising a novel electrically insulating inorganic coating applied to iron particles targeting fabrication of SMCs for low to medium frequency applications. This novel coating uniformly covers the iron powder and can withstand a curing temperature >= 650 degrees C (>= 1200 degrees F). Various curing temperatures and processing conditions were evaluated and will be discussed in terms of mechanical properties as well as magnetic performance. This new material will be compared to the existing high density SMC grade that was cured at 450 degrees C (932 degrees F).
机译:要使用软磁复合材料(SMC)实现高密度,需要压制压力超过700 MPa;导致铁粉颗粒的工作硬化明显,增加了直流磁矫顽力以及总铁损的磁滞损耗部分的相应增加。如果在退火循环中绝缘层稳定,则在650摄氏度或以上的温度下对压缩后的组件进行退火会降低直流矫顽力,并倾向于降低交流铁芯损耗。本文详细介绍了利用新颖的电绝缘无机涂层应用于铁颗粒的初步结果,该涂层针对中低频率应用的SMC制造。这种新颖的涂层均匀地覆盖了铁粉,并且可以承受> = 650摄氏度(> = 1200华氏度)的固化温度。对各种固化温度和加工条件进行了评估,并将就机械性能和磁性能进行讨论。这种新材料将与在450摄氏度(932摄氏度)下固化的现有高密度SMC等级进行比较。

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