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A probabilistic model for fatigue crack initiation and propagation

机译:一种疲劳裂纹启动和传播的概率模型

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Simulations of fatigue in piping and reactor pressure vessels have been performed using an approach which combines models for initiation and propagation of surface cracks. The statistical distribution of the number of cycles to crack initiation(i.e., 3-mm crack) is considered to be lognormal. The medium number of cycles to crack initiation is a function of the material type, water/air environment, temperature, dissolved oxygen content, sulfur content and strain rate. The fatigue damage due tovarious stress amplitudes is calculated by Miner's rule, which is used to predict the statistical distribution of cycles to initiation. The probability of crack initiation equals the probability that the damage≥1. Initiated fatigue cracks grow based onfracture mechanics rules. The parameters governing the fatigue crack growth rates are considered stochastic variables. A Latin Hypercube simulation approach has been developed to predict the probability that an initiated flaw will extend by fatigue crackgrowth mechanisms and become a through-wall flaw.
机译:使用一种结合用于启动和传播的表面裂缝的方法进行管道和反应器压力容器中疲劳的仿真。将循环次数的统计分布(即3毫米裂缝)被认为是Lognormal的。裂纹启动的中循环循环是材料类型,水/空气环境,温度,溶解氧含量,硫含量和应变率的函数。由于矿工的规则计算了由于冒险幅度的疲劳损伤,用于预测启动循环的统计分布。裂纹启动的概率等于损坏≥1的概率。引发的疲劳裂缝基于onfr发作力学规则。控制疲劳裂纹生长速率的参数被认为是随机变量。已经开发了一种拉丁超立方体模拟方法来预测发起的缺陷将通过疲劳噼啪作用机构延伸的概率并成为壁漏洞。

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