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Microstructure Mechanical Properties and Tribological Properties of NiAlComposites Reinforced by CrMnFeCoNiHigh-Entropy Alloy

机译:CrMnFeCoNi高熵合金增强NiAl复合材料的组织力学性能和摩擦学性能

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摘要

NiAl-based composites reinforced by CrMnFeCoNi high-entropy alloy (HEA) particles were fabricated by mechanical alloying (MA) and spark plasma sintering (SPS). The microstructure, mechanical, and tribological properties of the NiAl-HEA composites were investigated. Microstructural analyses show that after SPS, the HEA phase homogenously distributed in the NiAl matrix. Non-uniform diffusion of various elements occurred during the high temperature sintering process. Transmission electron microscope (TEM) observation of the composites revealed that many nano particle of Al2O3 generated at the grain boundary. The yield strength significantly increased after adding HEA particles. The compressive strength of the composites increased with the contents of HEA increasing, which should be attributed to the second phase hardening effect of HEA particles and fine grain strengthening effect. The composite of 10 wt.% HEA exhibited significant room temperature compressive properties, with the ultimate compressive strength of 2692 MPa and the compressive strain of 34.2%, respectively. The results of the wear tests show that the addition of HEA will reduce the wear resistance of composites to some extent and slightly increase the coefficients of friction (COFs) of the composites.
机译:通过机械合金化(MA)和火花等离子体烧结(SPS)制备了以CrMnFeCoNi高熵合金(HEA)颗粒增强的NiAl基复合材料。研究了NiAl-HEA复合材料的微观结构,力学性能和摩擦学性能。显微组织分析表明,SPS后,HEA相均匀分布在NiAl基体中。在高温烧结过程中发生了各种元素的不均匀扩散。透射电子显微镜(TEM)对复合材料的观察表明,许多Al2O3纳米颗粒在晶界产生。添加HEA颗粒后,屈服强度显着提高。复合材料的抗压强度随HEA含量的增加而增加,这应归因于HEA颗粒的第二相硬化作用和细晶粒强化作用。 10 wt。%HEA的复合材料表现出显着的室温压缩性能,极限压缩强度为2692 MPa,压缩应变为34.2%。磨损测试的结果表明,添加HEA会在一定程度上降低复合材料的耐磨性,并稍微增加复合材料的摩擦系数(COFs)。

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