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Investigation of Elastic Deformation Mechanism in As-Cast and Annealed Eutectic and Hypoeutectic Zr–Cu–Al Metallic Glasses by Multiscale Strain Analysis

机译:多尺度应变分析研究铸态和退火共晶和亚共晶Zr-Cu-Al金属玻璃的弹性变形机理

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摘要

Elastic deformation behaviors of as-cast and annealed eutectic and hypoeutectic Zr–Cu–Al bulk metallic glasses (BMG) were investigated on a basis of different strain-scales, determined by X-ray scattering and the strain gauge. The microscopic strains determined by Direct-space method and Reciprocal-space method were compared with the macroscopic strain measured by the strain gauge, and the difference in the deformation mechanism between eutectic and hypoeutectic Zr–Cu–Al BMGs was investigated by their correlation. The eutectic Zr50Cu40Al10 BMG obtains more homogeneous microstructure by free-volume annihilation after annealing, improving a resistance to deformation but degrading ductility because of a decrease in the volume fraction of weakly-bonded regions with relatively high mobility. On the other hand, the as-cast hypoeutectic Zr60Cu30Al10 BMG originally has homogeneous microstructure but loses its structural and elastic homogeneities because of nanocluster formation after annealing. Such structural changes by annealing might develop unique mechanical properties showing no degradations of ductility and toughness for the structural-relaxed hypoeutectic Zr60Cu30Al10 BMGs.
机译:在不同应变尺度的基础上,通过X射线散射和应变仪确定了铸态和退火共晶和亚共晶Zr-Cu-Al大块金属玻璃(BMG)的弹性变形行为。将直接空间法和倒数空间法确定的微观应变与应变仪测量的宏观应变进行比较,并通过它们的相关性研究了共晶和亚共晶Zr-Cu-Al BMG的变形机制的差异。 Zr 50 Cu 40 Al 10 BMG共晶BMG退火后通过自由体积an灭获得更均匀的微观结构,从而提高了抗变形能力,但延展了性能因为具有较高迁移率的弱结合区域的体积分数减少了。另一方面,铸态亚共晶Zr 60 Cu 30 Al 10 BMG最初具有均匀的微观结构,但由于其结构和弹性均质性而丧失退火后纳米团簇的形成。通过退火进行的这种结构变化可能会开发出独特的机械性能,表明结构松弛的亚共晶Zr 60 Cu 30 Al 10 的塑性和韧性不会降低。 BMG。

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