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金属玻璃形成液体中的滞弹性到塑性转变。

Anelastic to plastic transition in metallic glass-forming liquids.

作者信息

Harmon John S, Demetriou Marios D, Johnson William L, Samwer Konrad

机构信息

Keck Engineering Laboratories, California Institute of Technology, Pasadena, California 91125, USA.

出版信息

Phys Rev Lett. 2007 Sep 28;99(13):135502. doi: 10.1103/PhysRevLett.99.135502.

Abstract

The configurational properties associated with the transition from anelasticity to plasticity in a transiently deforming metallic glass-forming liquid are studied. The data reveal that the underlying transition kinetics for flow can be separated into reversible and irreversible configurational hopping across the liquid energy landscape, identified with beta and alpha relaxation processes, respectively. A critical stress characterizing the transition is recognized as an effective Eshelby "backstress," revealing a link between the apparent anelasticity and the "confinement stress" of the elastic matrix surrounding the plastic core of a shear transformation zone.

摘要

研究了在瞬态变形的金属玻璃形成液体中,与从滞弹性向塑性转变相关的构型特性。数据表明,流动的潜在转变动力学可分为跨越液体能量景观的可逆和不可逆构型跳跃,分别与β和α弛豫过程相关。表征该转变的临界应力被认为是一种有效的埃舍尔比“背应力”,揭示了表观滞弹性与围绕剪切转变区塑性核心的弹性基体“约束应力”之间的联系。

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