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Correlation between structural heterogeneity and plastic deformation for phase separating FeCu metallic glasses

机译:FeCu金属玻璃相分离结构异质性与塑性变形的相关性

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摘要

Unlike crystalline metals, the plastic deformation of metallic glasses (MGs) involves a competition between disordering and structural relaxation ordering, which is not well understood, yet. Molecular dynamics (MD) simulations were performed to investigate the evolutions of strain localizations, short-range order (SRO) as well as the free volume in the glass during compressive deformation of Fe50Cu50 MGs with different degrees of phase separation. Our findings indicate that the free volume in the phase separating MGs decreases while the shear strain localizations increase with increasing degree of phase separation. Cu-centered clusters show higher potential energies and Voronoi volumes, and bear larger local shear strains. On the other hand, Fe-centered pentagon-rich clusters in Cu-rich regions seem to play an important role to resist the shear transformation. The dilatation or annihilation of Voronoi volumes is due to the competition between ordering via structural relaxation and shear stress-induced deformation. The present study could provide a better understanding of the relationship between the structural inhomogeneity and the deformation of MGs.
机译:与晶体金属不同,金属玻璃(MGs)的塑性变形涉及无序和结构弛豫有序之间的竞争,目前尚不十分清楚。进行了分子动力学(MD)模拟,以研究在不同相分离程度的Fe50Cu50 MG压缩变形过程中,应变局部化,短程有序(SRO)以及玻璃中的自由体积的演变。我们的发现表明,随着相分离度的增加,相分离MG中的自由体积减小,而剪切应变局部化则增加。以铜为中心的团簇显示出较高的势能和Voronoi体积,并具有较大的局部剪切应变。另一方面,富铜区的富铁中心五边形簇似乎在抵抗剪切转变中起着重要作用。 Voronoi体积的膨胀或an灭是由于通过结构松弛的有序化和剪切应力引起的变形之间的竞争。本研究可以提供更好的理解之间的MGs的结构不均匀性和变形的关系。

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