Structural heterogeneity and plasticity of a Zr-based metallic glass modulated by high-temperature deformation

Wenting Lu, Bo Huang, Shansi Liao, Penghua Liu, Hui Lv, Jiayi Wu, Jun Yi, Qing Wang, Gang Wang
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Abstract

Metallic glasses (MGs) are of high strength but limited plasticity at room temperature (RT) due to localized shear in the intrinsically heterogeneous structure. Here, we investigate the variation of structural heterogeneity and plasticity of a Zr-based MG after high-temperature (T) tension under different stresses (σ) at 579 K (0.9Tg, where Tg is the glass transition temperature). The correlation length (ξ) of the heterogeneous structure and the average Young's modulus (E¯) increase with σ when σ is below 160 MPa; when σ exceeds 160 MPa, both ξ and E¯ decrease with σ, leading to the improvement of the plasticity. This research could be enlightening for improving the plasticity of MGs at RT through tuning their structural heterogeneity with high-T deformation.
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高温变形调制的锆基金属玻璃的结构异质性和可塑性
金属玻璃(MGs)具有很高的强度,但由于其内在异质结构中的局部剪切作用,在室温(RT)下塑性有限。在此,我们研究了一种锆基 MG 在 579 K(0.9Tg,其中 Tg 为玻璃化转变温度)不同应力 (σ)作用下受到高温 (T) 拉伸后结构异质性和塑性的变化。当 σ 低于 160 MPa 时,异质结构的相关长度(ξ)和平均杨氏模量(E¯)随 σ 的增大而增大;当 σ 超过 160 MPa 时,ξ 和 E¯ 均随σ 的增大而减小,从而提高了塑性。这项研究对于通过高T变形调整MG的结构异质性来改善MG在RT下的塑性具有启发意义。
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