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首页> 外文期刊>Diffusion and Defect Data. Solid State Data, Part B. Solid State Phenomena >Mechanical response of bulk metallic glasses: Investigation by mechanical spectroscopy and compression tests. Elastic, viscoelastic and viscoplastic components
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Mechanical response of bulk metallic glasses: Investigation by mechanical spectroscopy and compression tests. Elastic, viscoelastic and viscoplastic components

机译:大块金属玻璃的机械响应:通过机械光谱学和压缩测试进行调查。弹性,粘弹性和粘塑性组件

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摘要

The present paper addresses the mechanical behaviour of several bulk metallic glasses (BMG). Both small and large deformations are investigated, using mechanical spectroscopy and compression tests, respectively. In the case of a given BMG, the influence of temperature and strain rate (or frequency) on the mechanical response exhibits an attractive similarity when either small or large deformations are applied. Equivalence between temperature and time is clearly evidenced. The same behaviour is observed in many BMG, whatever their chemical composition, and therefore whatever their glass transition temperature. This behaviour is also very similar to that reported in other amorphous materials: polymers or oxide glasses. The same physical model enables a good description of this behaviour. It is based on atomic mobility and localized deformation in "soft" zones. Nano-crystallization hinders strongly the atomic mobility and induces a drastic hardening at high temperature.
机译:本文讨论了几种块状金属玻璃(BMG)的机械性能。分别使用机械光谱法和压缩试验研究了小变形和大变形。对于给定的BMG,当施加小变形或大变形时,温度和应变率(或频率)对机械响应的影响表现出相似的吸引力。明显证明了温度和时间之间的等效性。在许多BMG中,无论其化学成分如何,因此无论其玻璃化转变温度如何,都观察到相同的行为。这种行为也与其他无定形材料:聚合物或氧化物玻璃中报道的行为非常相似。相同的物理模型可以很好地描述这种行为。它基于原子迁移率和“软”区域中的局部变形。纳米结晶强烈阻碍原子迁移,并在高温下引起剧烈硬化。

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