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Nanoscale Periodic Morphologies on the Fracture Surface of Brittle Metallic Glasses

机译:脆性金属玻璃断裂表面的纳米级周期性形态

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摘要

Out-of-plane, nanoscale periodic corrugations are observed in the dynamic fracture surface of brittle bulk metallic glasses with fracture toughness approaching that of silica glasses. A model based on the meniscus instability and plastic zone theory is used to explain such dynamic crack instability. The results indicate that the local softening mechanism in the fracture is an essential ingredient for controlling the formation of the unique corrugations, and might provide a new insight into the origin of fracture surface roughening in brittle materials.
机译:在脆性大块金属玻璃的动态断裂表面中观察到面外的纳米级周期性波纹,其断裂韧性接近二氧化硅玻璃。基于弯月面不稳定性和塑性区理论的模型用于解释这种动态裂纹不稳定性。结果表明,裂缝中的局部软化机制是控制独特波纹形成的必要成分,并且可能为脆性材料中裂缝表面粗糙化的起源提供新的认识。

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