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Special Issue: Probabilistic Mechanical Fatigue and Fracture of Materials

机译:特殊问题:概率机械疲劳和材料骨折

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摘要

When designing structural and mechanical components, general structural integrity criteria must be met in order to ensure a valid performance according to its designed function, that is, supporting loads or resisting any kind of action causing stress and strains to the material without catastrophic failure. For these reasons, the development of solutions to manage the test conditions, failure mechanism, damage evolution, component functionalities and loading types should be implemented. The aim of this Special Issue “Probabilistic Mechanical Fatigue and Fracture of Materials” is to contribute to updating current and future state-of-the-art methodologies that promote an objective material characterization and the development of advanced damage models that ensure a feasible transferability from the experimental results to the design of real components. This is imbricated in some probabilistic background related to theoretical and applied fracture and fatigue theories, and advanced numerical models applied to some real application examples.
机译:在设计结构和机械部件时,必须满足一般的结构完整性标准,以确保根据其设计功能的有效性,即支持负载或抵抗任何类型的作用,导致压力和应力的任何作用,而不会灾难性失败。出于这些原因,应实施解决解决测试条件,故障机制,损坏,组分功能和加载类型的解决方案。这种特殊问题的目的是“材料的概率机械疲劳和骨折”是有助于更新促进客观材料表征和开发先进的损坏模型的最新方法,以确保可行的可转移性实验结果对真实部件的设计。这在一些与理论和应用的骨折和疲劳理论相关的概率背景中叠布,以及应用于某些实际应用示例的先进数值模型。

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