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3D meso-structural analysis of concrete specimens under uniaxial tension

机译:单轴拉伸下混凝土试件的3D细观结构分析

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This paper describes an approach for the 3D meso-structural analysis of concrete specimens, which extends the previous work developed in 2D within the same research group. Concrete is represented as a particle array (larger aggregates only), embedded in a matrix (mortar plus smaller aggregates), everything discretized using finite elements. Zero-thickness interface elements are inserted along all particle-matrix and selected matrix-matrix element boundaries, to represent the main potential crack planes. Continuum elements are assumed elastic, while the interfaces are equipped with a fracture-based constitutive law to represent cracks. For the 3D calculations, major efforts have been devoted to mesh generation, code efficiency and post-processing. As application examples, uniaxial tension specimens of 14 and 64 aggregates with the same volume fracture are presented. The results obtained reproduce the main features known of concrete behavior, both at the "meso-" and overall stress-strain levels.
机译:本文介绍了一种用于混凝土标本的3D细观结构分析的方法,该方法扩展了先前在同一研究小组内以2D开发的工作。混凝土表示为粒子阵列(仅限较大的集合体),嵌入矩阵(砂浆和较小的集合体)中,所有内容均使用有限元离散化。沿所有粒子矩阵和选定的矩阵矩阵元素边界插入零厚度界面元素,以表示主要的潜在裂纹平面。假定连续体元素是弹性的,而界面则配备了基于断裂的本构定律来表示裂纹。对于3D计算,已经在网格生成,代码效率和后处理方面投入了大量精力。作为应用示例,展示了具有相同体积断裂的14和64骨料的单轴拉伸试样。获得的结果重现了混凝土行为的主要特征,包括“中观”和总体应力应变水平。

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