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Tensile deformation mechanisms of an in-situ Ti-based metallic glass matrix composite at cryogenic temperature

机译:低温下原位钛基金属玻璃基复合材料的拉伸变形机理

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摘要

Remarkable tensile ductility was first obtained in an in-situ Ti-based bulk metallic glass (BMG) composite at cryogenic temperature (77 K). The novel cryogenic tensile plasticity is related to the effective accommodation of ductile body-centered cubic dendrites at 77 K, characteristic of the prevailing slip bands and dislocations, as well as lattice disorder, which can effectively hinder the propagation of critical shear bands. The greatly increased yield strength of dendrites contributes to the high yield strength of composite at 77 K. A trend of stronger softening is observed at low temperature, and a criterion is proposed to understand the softening behavior. The current research could also provide a guidance to the promising cryogenic application of these new advanced BMG composites.
机译:首先在低温(77 K)的原位Ti基块状金属玻璃(BMG)复合材料中获得了显着的拉伸延展性。新型低温拉伸可塑性与有效固溶体中心立方枝晶在77 K时的有效容纳,主要滑移带和位错以及晶格紊乱有关,可以有效地阻止临界剪切带的传播。树枝状晶体的屈服强度大大提高,有助于复合材料在77 K时具有较高的屈服强度,在低温下观察到软化趋势更强,并提出了一种理解软化行为的准则。当前的研究还可以为这些新型先进的BMG复合材料的有希望的低温应用提供指导。

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