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Modeling of the variability of fatigue crack growth using cohesive zone elements

机译:使用内聚区元素对疲劳裂纹扩展的变异性进行建模

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摘要

By its nature, metal fatigue has random characteristics, leading to extensive scatter in the results. Both initiation and propagation of a fatigue crack can be seen as random processes. This manuscript develops a numerical analysis using cohesive zone elements allowing the use of one single model in the finite element simulation of the complete fatigue life. The present formulation includes a damage evolution mechanism that reflects gradual degradation of the cohesive strength under cyclic loading. The uncertainties inherent to the fatigue process are assumed to be caused by the variability of the material properties, which are modeled using random fields. An extrapolation scheme is proposed to reduce the computational time. First, the accuracy of the proposed formulation is assessed considering a deterministic crack growth problem. Second, the effect of randomness in the material properties on the total fatigue life of a structure is then analyzed.
机译:从本质上讲,金属疲劳具有随机性,导致结果广泛分散。疲劳裂纹的萌生和扩展都可以看作是随机过程。该手稿利用粘性区域元素进行了数值分析,允许在整个疲劳寿命的有限元模拟中使用单个模型。本发明的制剂包括损伤演化机制,其反映了在循环载荷下内聚强度的逐渐降低。假定疲劳过程固有的不确定性是由材料特性的可变性引起的,这些材料的可变性是使用随机场建模的。提出了一种外推方案以减少计算时间。首先,考虑确定性裂纹扩展问题,评估所提出配方的准确性。其次,分析了材料特性中的随机性对结构总疲劳寿命的影响。

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