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Effect of geometrical constraint condition on the formation of nanoscale twins in the Ni-based metallic glass composite

机译:几何约束条件对镍基金属玻璃复合材料中纳米孪晶形成的影响

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We investigated the effect of geometrically constrained stress-strain conditions on the formation of nanotwins in α-brass phase reinforced Ni_(59)Zr_(20)Ti_(16)Si_2Sn_3 metallic glass (MG) matrix deformed under macroscopic uniaxial compression. The specific geometrically constrained conditions in the samples lead to a deviation from a simple uniaxial state to a multi-axial stress state, for which nanocrystallization in the MG matrix together with nanoscale twinning of the brass reinforcement is observed in localized regions during plastic flow. The nanocrystals in the MG matrix and the appearance of the twinned structure in the reinforcements indicate that the strain energy is highly confined and the local stress reaches a very high level upon yielding. Both the effective distribution of reinforcements on the strain enhancement of composite and the effects of the complicated stress states on the development of nanotwins in the second-phase brass particles are discussed.
机译:我们研究了几何约束应力-应变条件对在宏观单轴压缩下变形的α-黄铜相增强Ni_(59)Zr_(20)Ti_(16)Si_2Sn_3金属玻璃(MG)基体中纳米孪晶形成的影响。样品中特定的几何约束条件导致从简单的单轴状态到多轴应力状态的偏离,为此,在塑性流动过程中,在局部区域观察到MG基体中的纳米结晶以及黄铜增强物的纳米级孪晶。 MG基体中的纳米晶体和增强物中孪晶结构的出现表明,应变能受到高度限制,屈服时局部应力达到很高的水平。讨论了增强材料对复合材料应变增强的有效分布以及复杂应力状态对第二相黄铜粒子中纳米孪晶发展的影响。

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