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Flash Joule heating for ductilization of metallic glasses

机译:闪焦加热,用于金属玻璃的延展性

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Metallic glasses (MGs) inherit their amorphous structure from the liquid state, which predetermines their ability to withstand high loads approaching the theoretical limit. However, the absence of slip systems makes them very sensitive to the type of loading and extremely brittle in tension. The latter can be improved by precipitation of ductile crystals, which suppress a catastrophic propagation of shear bands in a glassy matrix. Here we report a novel approach to obtain MG-matrix composites with tensile ductility by flash Joule heating applied to Cu(47.5)Zr(47.)5Al(5) (at.%) metallic glass. This homogeneous, volumetric and controllable rapid heat treatment allows achieving uniformly distributed metastable B2 CuZr crystals in the glassy matrix. It results in a significant tensile strain of 6.8 +/- 0.5%. Moreover, optimized adjustment of the heat-treatment conditions enables tuning of microstructure to achieve desired mechanical properties.
机译:金属玻璃(MGs)从液态继承了其非晶态结构,这决定了它们承受接近理论极限的高载荷的能力。但是,由于没有滑移系统,因此它们对负载类型非常敏感,并且张力非常脆弱。后者可以通过延展可延展晶体的沉淀而得到改善,这可以抑制剪切带在玻璃状基质中的灾难性传播。在这里,我们报告了一种新颖的方法,该方法通过将闪光焦耳加热应用于Cu(47.5)Zr(47.)5Al(5)(at。%)金属玻璃来获得具有拉伸延展性的MG基复合材料。这种均匀,体积和可控的快速热处理可以在玻璃状基质中获得均匀分布的亚稳态B2 CuZr晶体。其导致6.8±0.5%的显着拉伸应变。而且,热处理条件的优化调​​整使得微结构的调整可以实现所需的机械性能。

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