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Probabilistic Fracture Mechanics Analysis of Multiple Cracks in Cylindrical Pressure Vessel

机译:圆柱形压力容器多裂缝的概率断裂力学分析

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In this work, a probabilistic fracture mechanics analysis of multiple cracks in a cylindrical pressure vessel was conducted. The analysis was performed to predict service life of a pressure vessel with a certain level of reliability if the vessel has a multiple internal surface cracks that interact each other. The stress intensity factor of multiple cracks configuration was determined from the stress intensity factor of a single surface crack in a plate subjected to uni-axial load and the interaction factor between the cracks. In this work, the Swift's crack link-up criterion was employed. These parameters together with several other stochastic parameters, i.e. initial crack size, Paris's crack propagation constants and fracture toughness, were then used to calculate the probability of failure with a certain level of reliability. The failure probability was simulated using guided direct simulation, for cycle-by-cycle crack propagation, to find the expected service life and the mode of failure (leak or break). A case study of a high-pressure vessel having different initial crack sizes have been simulated and the service life with 99,99% reliability were determined.
机译:在这项工作中,进行了圆柱形压力容器中多裂缝的概率断裂力学分析。如果容器具有彼此相互作用的多个内表面裂缝,则执行分析以预测具有一定程度的可靠性的压力容器的使用寿命。多裂缝构造的应力强度因子从经受单轴载荷的板中的单个表面裂缝的应力强度因子和裂缝之间的相互作用因子确定。在这项工作中,使用了Swift的裂缝链接标准。这些参数与几个其他随机参数一起,即初始裂纹尺寸,巴黎的裂缝繁殖常数和断裂韧性,用于计算具有一定程度的可靠性的故障的可能性。使用导向的直接模拟模拟失败概率,用于逐个循环裂缝传播,找到预期的使用寿命和失败模式(泄漏或断裂)。已经模拟了对具有不同初始裂纹尺寸的高压容器的案例研究,并且确定了具有9999%的可靠性的使用寿命。

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