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首页> 外文期刊>International Journal of Mechanical Sciences >A novel creep-fatigue interaction damage model with the stress effect to simulate the creep-fatigue crack growth behavior
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A novel creep-fatigue interaction damage model with the stress effect to simulate the creep-fatigue crack growth behavior

机译:一种新的蠕变 - 疲劳相互作用损伤模型,具有压力效果模拟蠕变疲劳裂纹生长行为

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摘要

In this paper, a novel creep fatigue interaction damage model was proposed to evaluate damage evolution and crack growth behavior in creep fatigue regime. The model incorporated the maximum stress effect into the low cycle fatigue damage accumulation and utilized the non-linear summation approach to consider the creep fatigue interacted effect. The model could predict the relation between (da/dt)(avg) against (C-t)(avg) in creep fatigue interacted environment and demonstrate the crack growth behavior under pure fatigue condition, which respectively matched well the corresponding experimental results. In addition, the crack growth rate was greatly dependent on the dwell time in creep fatigue regime. The crack growth rate (da/dt)(avg) was increased with decreasing the hold time at the same (C-t)(avg) values. During crack growth process, the creep damage accounted for a larger portion compared with the fatigue damage. Furthermore, in creep fatigue regime, the effect of the initial crack depth on crack growth behavior was dependent on the hold time while the applied initial stress factor range had slight effect on the crack growth behavior. (C) 2017 Elsevier Ltd. All rights reserved.
机译:本文提出了一种新型蠕变疲劳相互作用损伤模型,从而评估蠕变疲劳制度中的损伤演化和裂纹生长行为。该模型将最大应力效应掺入低循环疲劳损伤积累,利用非线性总结方法考虑蠕变疲劳相互作用的效果。该模型可以预测(DA / DT)(AVG)对(C-T)(AVG)的关系(C-T)(AVG)在蠕变疲劳相互作用的环境中,并证明纯疲劳条件下的裂纹生长行为,其分别匹配相应的实验结果。此外,裂缝增长率大大依赖于蠕变疲劳制度的停留时间。随着相同(C-T)(AVG)值的降低,增加裂缝生长速率(DA / DT)(AVG)。在裂缝生长过程中,与疲劳损伤相比,蠕变损伤占更大的部分。此外,在蠕变疲劳方案中,初始裂纹深度对裂纹生长行为的影响取决于保持时间,而施加的初始应力因子范围对裂纹生长行为有轻微影响。 (c)2017 Elsevier Ltd.保留所有权利。

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