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Mechanical and tribological properties of Fe/Cr-FeAl2O4-Al2O3 nano/micro hybrid composites prepared by Spark Plasma Sintering

机译:放电等离子体烧结制备的Fe / Cr-FeAl2O4-Al2O3纳米/微杂化复合材料的力学和摩擦学性能

摘要

Fe/Cr–Al2O3 nanocomposite powders are prepared by H2 selective reduction of oxide solid solutions. These powders, an alumina powder and a starting oxide powder, are sintered by spark plasma sintering. The microstructure of the resulting materials is studied. The composites show a lower microhardness and higher fracture strength than unreinforced alumina. The friction coefficient against an alumina ball is lower, revealing the role of the intergranular metal particles, whereas FeAl2O4 grains formed during SPS are beneficial for higher cycle numbers.
机译:Fe / Cr-Al2O3纳米复合粉末是通过H2选择性还原氧化物固溶体制备的。这些粉末,氧化铝粉末和起始氧化物粉末通过火花等离子体烧结而被烧结。研究了所得材料的微观结构。与未增强的氧化铝相比,复合材料具有较低的显微硬度和较高的断裂强度。相对于氧化铝球的摩擦系数较低,显示出晶间金属颗粒的作用,而在SPS期间形成的FeAl2O4晶粒有利于提高循环次数。

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