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首页> 外文期刊>Strength, fracture and complexity: an international journal >A review of a time-dependent fracture life law (or model) based on a proposed multi-scale analysis
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A review of a time-dependent fracture life law (or model) based on a proposed multi-scale analysis

机译:基于提出的多尺度分析对时间相关的断裂寿命定律(或模型)进行回顾

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摘要

To solve the problem of structural safety under time-dependent fracture conditions, an algorithm of multi-scale hybrid mechanics from the nano-scale to the macro-scales is described. The paper presents an algorithm that links the physics of materials with life prediction determined by creep crack growth and addresses practical application which enables "prediction of fracture" to be developed from "the science of clarification of fracture mechanism" on the basis of the algorithm. In particular, in order to predict the fracture life of real components, the importance of the link between void mechanics caused by vacancy diffusion (micro mechanical factor), the stress tri-axiality, TF (a structural mechanical factor), and the material structure (a meso-mechanical factor) is shown in the proposed formulation for the activation energy of the thermally activated process of creep crack growth. A detailed discussion on these issues as well as on the algorithm relevant to the establishment of the law of creep crack growth life based on the multi-scale analysis is included ranging from the scale of micro damage to structural brittleness.
机译:为了解决随时间变化的断裂条件下的结构安全问题,描述了一种从纳米尺度到宏观尺度的多尺度混合力学算法。本文提出了一种将材料的物理特性与蠕变裂纹扩展所确定的寿命预测联系起来的算法,并针对实际应用,该算法使“断裂的预测”能够在该算法的基础上从“断裂机理的科学化”发展而来。特别是,为了预测实际部件的断裂寿命,需要考虑由空位扩散(微观机械因素),应力三轴性,TF(结构机械因素)和材料结构引起的空隙力学之间的联系的重要性。在拟议的公式中显示了蠕变裂纹扩展的热活化过程的活化能(介观力学因子)。这些问题以及基于多尺度分析的与建立蠕变裂纹扩展寿命定律有关的算法的详细讨论包括从微观破坏的规模到结构的脆性。

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