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Monte Carlo Simulations of Mesoscale Fracture of Concrete with Random Aggregates and Pores:a Size Effect Study

机译:随机集料和孔隙混凝土中尺度断裂的monte Carlo模拟:尺寸效应研究

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摘要

Size effect in concrete under tension is studied by Monte Carlo simulations of mesoscale finite element models containing random inclusions (aggregates and pores) with prescribed volume fractions, shapes and size distributions (called meso-structure controls). For a given size and a set of controls, a number of realisations with different spatial distribution of inclusions are simulated to produce statistical data for macroscopic load/stress-strain curves. The complex meso-crack initiation and propagation is captured by pre-inserted cohesive interface elements. The effects of specimen size and meso-structure controls on macroscopic strength and toughness are analysed, and empirical size-effect laws for their dependences are proposed by data regression. It is also shown that the mesoscale porosity affects both strength and toughness and should not be ignored in size effect studies of concrete.
机译:通过蒙特卡洛模拟中尺度有限元模型研究了混凝土在受拉状态下的尺寸效应,该模型包含具有指定体积分数,形状和尺寸分布(称为中观结构控制)的随机夹杂物(聚集体和孔)。对于给定的大小和一组控件,模拟了具有不同夹杂物空间分布的许多实现,以生成宏观载荷/应力-应变曲线的统计数据。预插入的内聚界面元素可捕获复杂的细观裂纹的萌生和传播。分析了试样尺寸和细观结构控制对宏观强度和韧性的影响,并通过数据回归提出了尺寸依赖性的经验尺寸效应定律。还表明,中尺度孔隙率会影响强度和韧性,在混凝土的尺寸效应研究中不应忽略。

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