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The Magnetic Properties of a Magnetically Soft Composite Material for Use in the Low-Frequency Range

机译:低频范围内使用的软磁性复合材料的磁性能

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The key magnetic characteristics of a magnetic composite material developed on the basis of ASC 100.29 iron powder and other magnetic composites based on different iron powders are measured and contrasted to the parameters of 3412 electrical steel (type E320). At field strengths up to H = 5–6 kA/m, the magnetic induction in the developed composite material is inferior to that in the electrical steel, whereas the developed composite surpasses the steel at stronger fields. At a field strength H = 25 kA/m, the magnetic induction in the composite material is B ~(m)= 1.95–2.0 T, while for the steel it is B ~(m)= 1.84 T, both materials having the same density of 7.7 g/cm_(3). We also measure relative magnetization losses in composite materials fabricated using air- and water-atomized iron powders, and the latter, which are purer, are found to exhibit some advantages. Owing to low hysteresis losses, the prepared composite material can be used in electrical machines that operate at higher specific powers and especially in those operating at high rotation velocities—applications in which electrical steels exhibit high losses.
机译:测量了基于ASC 100.29铁粉开发的磁性复合材料和其他基于不同铁粉的磁性复合材料的关键磁特性,并与3412电工钢(E320型)的参数进行了对比。在磁场强度高达H = 5–6 kA / m时,发达复合材料的磁感应强度低于电工钢,而发达复合材料的磁感应强度则强于电磁钢。在场强H = 25 kA / m时,复合材料中的磁感应强度为B〜(m)= 1.95–2.0 T,而对于钢而言,B =(m)= 1.84 T,两种材料都具有相同的密度为7.7 g / cm_(3)。我们还测量了使用空气和水雾化铁粉制造的复合材料中的相对磁化损耗,发现后者较纯,具有一些优点。由于低的磁滞损耗,制得的复合材料可用于以较高比功率运行的电机,尤其是在以高旋转速度运行的电机中-电工钢表现出高损耗的应用。

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