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Monte Carlo Simulation of Complex 2D Cohesive Fracture in Random Heterogeneous Quasi-Brittle Materials

机译:蒙特卡洛模拟复杂2D粘性骨折中随机异质准脆性材料

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This study develops a numerical method to simulate complex 2D crack propagation in quasi-brittle materials considering random heterogeneous fracture properties. Cohesive interface elements with softening traction-separation laws are inserted into the initial mesh to model potential cracks. The softening laws are modelled by spatially-varying Weibull random fields. Extensive Monte Carlo simulations of a concrete specimen under uni-axial tension were carried out. It was found that increasing the variance of the tensile strength random fields with increased heterogeneity led to reduction in the mean peak load and increase in the standard deviation. The developed method provides a simple but effective tool for assessment of structural reliability.
机译:该研究开发了考虑随机异质裂缝性能的准脆性材料中模拟复杂2D裂纹繁殖的数值方法。具有软化牵引力分离定律的粘性界面元素插入初始网格以模拟潜在裂缝。软化定律是通过空间改变的威布尔随机字段进行建模的。进行了在单轴张力下混凝土样品的广泛蒙特卡罗模拟。发现,增加了抗拉强度随机场的方差,随着异质性增加,导致平均峰值负荷的降低和标准偏差的增加。开发方法提供了一种简单但有效的工具,用于评估结构可靠性。

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