$^{circ}{hbox{C}}$ and Properties of Fe-Al Cores Made From Fe-Al Powders Annealed in a Damp Hydrogen Atmosphere
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Properties of Fe-Al Cores Made From Fe-Al Powders Annealed in a Damp Hydrogen Atmosphere

机译:在潮湿氢气氛中退火的铁铝粉制成的铁铝芯的性能

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摘要

Gas-atomized Fe-4, 6wt.%Al powders were annealed in a damp hydrogen atmosphere with a dew point of 0 $^{circ}{hbox{C}}$ and $-17 ^{circ}{hbox{C}}$ in order to cover the powder surface with a high electrical resistivity layer of ${rm Al}_{2}{rm O}_{3}$ and then compressed into cores. The powders should be oxidized at a temperature higher than 800 $^{circ}{hbox{C}}$ in order to oxidize the aluminum alone on the surface of powder, as confirmed by simulation using the STANJAN program. An Al-rich layer, i.e., an ${rm Al}_{2}{rm O}_{3}$ layer, was formed on the surface of the Fe-Al powder, as confirmed by SEM. Loss of the cores made from the selectively oxidized powders was much lower than those of the cores with phosphate coats, so the selectively oxidized powder can be used to fabricate electrical actuators with high levels of performance.
机译:将气体雾化的Fe-4、6wt。%Al粉末在湿氢气氛中,露点为0的条件下进行退火。<配方公式type =“ inline”> $ ^ {circ} {hbox {C }} $ $-17 ^ {circ} {hbox {C}} $ 为了用 $ {rm Al} _ {2} {rm O} _ {3} $ 的高电阻层覆盖粉末表面tex> ,然后压缩为核心。粉末应在高于800的温度下氧化。 $ ^ {circ} {hbox {C}} $ 正如使用STANJAN程序进行的模拟所证实的那样,氧化铝会使粉末表面的铝单独氧化。富铝层,即<配方式type =“ inline”> $ {rm Al} _ {2} {rm O} _ {3} $

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