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Fracture in metallic glasses: mechanics and mechanisms

机译:金属玻璃的断裂:力学和机理

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Significant progress in understanding the mechanical behavior of metallic glasses (MGs) was made over the past decade, particularly on mechanisms of plastic deformation. However, recent research thrust has been on exploring the mechanics and physics of fracture. MGs can be very brittle with K-Ic values similar to silicate glasses and ceramics or very tough with K-Ic akin to high toughness crystalline metals. Even the tough MGs can become brittle with structural relaxation following annealing at temperatures close to glass transition temperature (T-g). Detailed experimental studies coupled with complementary numerical simulations of the recent past have provided insights on the micromechanisms of failure as well as nature of crack tip fields, and established the governing fracture criteria for ductile and brittle glasses. In this paper, the above advances are reviewed and outstanding issues in the context of fracture of amorphous alloys that need to be resolved are identified.
机译:在过去的十年中,在理解金属玻璃(MGs)的机械性能方面取得了重大进展,尤其是在塑性变形机制方面。但是,最近的研究重点是探索断裂的力学和物理。 MG的K-Ic值可能与硅酸盐玻璃和陶瓷类似,非常脆,或者与高韧性的结晶金属类似,K-Ic则非常坚韧。在接近玻璃化转变温度(T-g)的温度下退火后,即使是坚韧的MG也会因结构松弛而变脆。详细的实验研究以及最近的补充数值模拟提供了关于破坏的微观机制以及裂纹尖端场性质的见解,并确定了韧性和脆性玻璃的主要断裂准则。在本文中,对上述进展进行了回顾,并指出了需要解决的非晶态合金断裂问题中的突出问题。

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