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Characterization of plastic flow in two Zr-based bulk metallic glasses

机译:两种基于Zr的块状金属玻璃中塑性流动的表征

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Plastic deformation behaviors of Zr_(65)Al_(10)Ni_(10)Cu_(15) and Zr_(52.5)AI_(10)Ni_(10)Cu_(15)Be_(12.5) bulk metallic glasses (BMGs) are studied by using the depth-sensing nanoindentation, microindentation and uniaxial compression. The Be-containing BMG exhibits a significantly improved overall plastic strain compared with the Be-free alloy during compressive tests. Both BMGs show a loading-rate-dependent serrated flow during nanoindentation measurements, but the Be-containing alloy exhibits a much lower critical loading rate for the disappearance of the serration than the Be-free BMG. The shear band patterns developed during plastic deformation are investigated by microindentation technique, wherein much higher shear band density is found in the Be-containing alloy than in the Be-free alloy, indicating an easier nucleation of shear bands in the former BMG. The difference in the plastic deformation behavior of the two BMGs can be explained by a free volume model.
机译:研究了Zr_(65)Al_(10)Ni_(10)Cu_(15)和Zr_(52.5)Al_(10)Ni_(10)Cu_(15)Be_(12.5)大块金属玻璃(BMG)的塑性变形行为使用深度感应纳米压痕,微压痕和单轴压缩。在压缩测试中,含Be的BMG与不含Be的合金相比,具有显着改善的整体塑性应变。两种BMG在纳米压痕测量过程中均显示出与加载速率有关的锯齿状流动,但与不含Be的BMG相比,含Be合金对于锯齿的消失表现出低得多的临界加载速率。通过微压痕技术研究了在塑性变形过程中形成的剪切带模式,其中含Be的合金中的剪切带密度比不含Be的合金中的剪切带密度高得多,这表明前BMG中剪切带的形核更容易。两个BMG的塑性变形行为的差异可以通过自由体积模型来解释。

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