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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Effect of processing parameters on the magnetic properties and microstructures of molybdenum permalloy compacts made by powder metallurgy
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Effect of processing parameters on the magnetic properties and microstructures of molybdenum permalloy compacts made by powder metallurgy

机译:工艺参数对粉末冶金钼坡莫合金压块磁性能和组织的影响

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摘要

Effects of compaction and annealing process on the magnetic properties and microstructures of molybdenum permalloy (MP) powder cores have been investigated. MP compacts, with density as high as 92% of the theoretical value, were obtained under 1800MPa compaction pressure. The MP powder cores show an enhanced effective magnetic permeability of 160 after post-annealing at 690 °C, which is attributed to the relief of internal stress rather than the phase transformation evidenced by the XRD analysis. However, higher annealing temperature destroys the insulating layer, resulting in the drop of the electrical resistivity, the effective magnetic permeability as well as the frequency stability. The results show that the samples compacted at 1800 MPa and annealed at 690 °C exhibit excellent magnetic properties, with core loss of 780mw/cm~3 (100 kHz, 100 mT) and effective magnetic permeability of 160 whose frequency stability is up to 1 MHz.
机译:研究了压制和退火工艺对高合金钼磁粉磁性能和微观结构的影响。在1800MPa的压实压力下获得密度高达理论值92%的MP压块。 MP压粉磁芯在690°C的温度下进行退火后,其有效磁导率提高了160,这归因于内部应力的释放,而不是XRD分析所证明的相变。但是,较高的退火温度会破坏绝缘层,导致电阻率,有效磁导率以及频率稳定性下降。结果表明,在1800 MPa压缩和690°C退火的样品表现出优异的磁性能,铁损为780mw / cm〜3(100 kHz,100 mT),有效磁导率为160,频率稳定性高达1兆赫

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