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Fabrication and Spark Plasma Sintering of Magnetic alpha-Fe/MgO Nanocomposite by Mechanical Alloying

机译:机械合金化磁性α-Fe / MgO纳米复合材料的制造和火花等离子体烧结

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Solid-state reduction has occurred during mechanical alloying of a mixture of Fe2O3 and Mg powders at room temperature. It is found that magnetic nanocomposite in which MgO is dispersed in alpha-Fe matrix with nano-sized grains is obtained by mechanical alloying of Fe2O3 with Mg for 30 min. Consolidation of the ball-milled powders was performed in a spark plasma sintering (SPS) machine up to 800-1000 degrees C. X-ray diffraction result shows that the average grain size of alpha-Fe in alpha-Fe/MgO nanocomposite sintered at 800 degrees C is in the range of 110 nm. It can be also seen that the coercivity of SPS sample sintered at 800 degrees C is still high value of 88 Oe, suggesting that the grain growth of magnetic alpha-Fe phase during SPS process tends to be suppressed.
机译:在室温下的Fe 2 O 3和Mg粉末的机械合金化过程中发生固态还原。 发现磁性纳米复合材料,其中MgO与纳米晶粒分散在α-Fe基质中,通过用Mg的Fe 2 O 3机械合金合金化30分钟获得。 在火花等离子体烧结(SPS)机器中进行球磨粉末的固结高达800-1000℃。X射线衍射结果表明,α-Fe / MgO纳米复合材料中α-Fe的平均晶粒尺寸烧结 800度C在110nm的范围内。 还可以看出,在800℃下烧结的SPS样品的矫顽力仍然高88°OE的值,表明SPS过程中磁性α-Fe相的晶粒生长趋于抑制。

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