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A universal fracture criterion for high-strength materials

机译:高强度材料的通用断裂准则

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摘要

Recently developed advanced high-strength materials like metallic glasses, nanocrystalline metallic materials, and advanced ceramics usually fracture in a catastrophic brittle manner, which makes it quite essential to find a reasonable fracture criterion to predict their brittle failure behaviors. Based on the analysis of substantial experimental observations of fracture behaviors of metallic glasses and other high-strength materials, here we developed a new fracture criterion and proved it effective in predicting the critical fracture conditions under complex stress states. The new criterion is not only a unified one which unifies the three classical failure criteria, i.e., the maximum normal stress criterion, the Tresca criterion and the Mohr-Coulomb criterion, but also a universal criterion which has the ability to describe the fracture mechanisms of a variety of different high-strength materials under various external loading conditions.
机译:诸如金属玻璃,纳米晶体金属材料和先进陶瓷之类的最近开发的高级高强度材料通常以灾难性的脆性方式断裂,这使得找到合理的断裂准则来预测其脆性破坏行为非常重要。基于对金属玻璃和其他高强度材料断裂行为的大量实验观察结果的分析,在此我们建立了新的断裂准则,并证明了该准则可有效预测复杂应力状态下的临界断裂条件。新准则不仅是一个统一的准则,它统一了三个经典的失效准则,即最大法向应力准则,Tresca准则和Mohr-Coulomb准则,而且是一个通用准则,能够描述钢结构的断裂机理。在各种外部负载条件下使用各种不同的高强度材料。

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