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Wear behaviour of Zr-based in situ bulk metallic glass matrix composites

机译:Zr基原位块状金属玻璃基复合材料的磨损行为

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摘要

Zr-based bulk metallic glass (BMG) and its in situ BMG matrix composites with diameter of 3 mm were fabricated by conventional Cu-mould casting method and the dry sliding wear behaviour of the BMG and composites was investigated. Compared to the pure BMG, the composites exhibited a markedly improved wear resistance from 10 to 48% due to the existence of various volume fractions of the ductile beta-Zr dendritic phase embedded in the glassy matrix. The composites showed lower friction coefficient and wear rate than the pure BMG. Meanwhile, the surface wearing of the composite with a proper amount of beta-Zr dendrites was less severe compared to that of the pure BMG. The worn surface of the composite was covered with mild grooves and some fine wear debris, which exhibited the characteristic of a mild abrasive wear. The improvement of the wear resistance of the composite with the proper amount of beta-Zr crystalline phase is attributed to the fact that the beta-Zr crystalline phase distributed in the amorphous matrix has some effective load bearing, plastic deformation and work hardening ability to decrease strain accumulation and the release of strain energy in the glassy matrix, restrict the expanding of shear bands and cracks, and occur plastic deformation homogeneously.
机译:采用传统的铜模铸造法制备了Zr基块状金属玻璃(BMG)及其原位直径为3 mm的BMG基体复合材料,并研究了BMG及其复合材料的干滑磨损行为。与纯BMG相比,由于嵌入玻璃态基质的延展性β-Zr树突状相存在各种体积分数,因此复合材料的耐磨性显着提高了10%至48%。该复合材料的摩擦系数和磨损率均低于纯BMG。同时,与纯BMG相比,具有适量的β-Zr树突的复合材料的表面磨损不那么严重。复合材料的磨损表面覆盖有轻微的沟槽和一些细小的磨损碎片,这些碎片表现出轻微的磨料磨损的特征。适当数量的β-Zr晶相的复合材料的耐磨性的提高归因于以下事实:分布在无定形基体中的β-Zr晶相具有一定的有效承载力,塑性变形和加工硬化能力降低玻璃基体中的应变积累和应变能的释放,限制了剪切带和裂纹的扩展,并均匀地发生了塑性变形。

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