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Evolution of the Mechanical Properties of Ti-Based Metallic Glass During Depth-Sensing Load-Unload Nanoindentation Cycles

机译:深度感测加载/卸载纳米压痕周期中钛基金属玻璃力学性能的演变

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摘要

The mechanical behaviour of Ti-based bulk metallic glass during consecutive load-unload nanoin-dentation cycles, using progressively larger forces, is investigated. Indentation cycles allow evaluating the contact stiffness and, therefore, the hardness and Young's modulus as a function of the penetration depth. The indentation hardness shows a gradual decrease as the applied load increases, evidencing the occurrence of an indentation size effect. An increase of contact stiffness is also observed during the indentation cycling process, an effect which is accompanied with a slight reduction of the Young's modulus. These observations are consistent with the presumption that metallic glasses become structurally modified during the course of nanoindentation experiments. In particular, a deformation-induced increase in the amount of free volume occurs within the amorphous structure, leading to a concomitant mechanical softening.
机译:研究了钛基块状金属玻璃在连续的载荷-卸载纳米压痕循环中的机械行为,使用了逐渐增大的力。压痕循环可以评估接触刚度,因此可以评估硬度和杨氏模量与渗透深度的关系。压痕硬度随着施加的载荷的增加而逐渐降低,这证明了压痕尺寸效应的发生。在压痕循环过程中还观察到了接触刚度的增加,该作用伴随着杨氏模量的略微降低。这些观察结果与在纳米压痕实验过程中金属玻璃被结构改性的假设相一致。特别地,在非晶结构内发生由变形引起的自由体积的增加,导致伴随的机械软化。

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