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首页> 外文期刊>International Journal of Solids and Structures >Monte Carlo simulation of complex cohesive fracture in random heterogeneous quasi-brittle materials: A 3D study
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Monte Carlo simulation of complex cohesive fracture in random heterogeneous quasi-brittle materials: A 3D study

机译:随机非均质准脆性材料中复杂内聚断裂的蒙特卡罗模拟:3D研究

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In a recent publication (Yang et al., 2009. Monte Carlo simulation of complex cohesive fracture in random heterogeneous quasi-brittle materials. Int. J. Solids Struct. 46 (17) 3222-3234), we developed a finite element method capable of modelling complex two-dimensional (2D) crack propagation in quasi-brittle materials considering random heterogeneous fracture properties. The present study extends the method to model three-dimensional (3D) problems. First, 3D cohesive elements are inserted into the initial mesh of solid elements to model potential crack surfaces by a specially designed, flexible and efficient algorithm and corresponding computer program. The softening constitutive laws of the cohesive elements are modelled by spatially-varying 3D Weibull random fields. Monte Carlo simulations are then carried out to obtain statistical information of structural load-carrying capacity. A concrete cube under uniaxial tension was analysed as an example. It was found that as the 2D heterogeneous model, the 3D model predicted realistic, complicated fracture processes and load-carrying capacity of little mesh-dependence. Increasing heterogeneity in terms of the variance in the tensile strength random fields resulted in lower mean and higher standard deviation of peak loads. Due to constraint effects and larger areas of unsmooth, non-planar fracture surfaces, 3D modelling resulted in higher mean and lower standard deviation of peak loads than 2D modelling.
机译:在最近的出版物(Yang等人,2009年。蒙特卡罗模拟随机异质准脆性材料中的复杂内聚破裂。Int。J. Solids Struct。46(17)3222-3234),我们开发了一种能够进行有限元分析的方法考虑随机非均质断裂特性的准脆性材料中复杂二维(2D)裂纹扩展建模的建模方法。本研究扩展了该方法以建模三维(3D)问题。首先,将3D粘性元素插入到实体元素的初始网格中,以通过专门设计的,灵活而有效的算法和相应的计算机程序来模拟潜在的裂纹表面。通过空间变化的3D Weibull随机场对内聚元素的软化本构律进行建模。然后进行蒙特卡洛模拟,以获得结构承载能力的统计信息。以单轴拉伸下的混凝土立方体为例。结果发现,作为2D异质模型,3D模型可以预测逼真的,复杂的断裂过程以及几乎不依赖网格的承载能力。就抗拉强度随机场的方差而言,异质性的增加导致峰值载荷的均值较低和标准偏差较高。由于约束效应和不光滑,不平坦的断裂表面的较大面积,与2D建模相比,3D建模导致峰值载荷的均值更高且标准偏差更低。

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