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Meso-scale investigation of failure in the tensile splitting test: Size effect and fracture energy analysis

机译:拉伸劈裂试验失败的中尺度研究:尺寸效应和断裂能分析

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In this paper, a meso-scale analysis is performed (1) to study the size effect on the nominal stress at failure and, (2) to quantify the evolution of the fracture process zone (FPZ) in the context of the tensile splitting test. The meso-structure is based on a two-phase 3D representation of heterogeneous materials, such as concrete, where stiff aggregates are embedded into a mortar matrix. In order to take into account "these heterogeneities without any mesh adaptation, a weak discontinuity is introduced into the strain field. In addition, a strong discontinuity is also added to take into account micro-cracking. This model is cast into the framework of the Enhanced Finite Element Method (E-FEM). Based on the Finite Element simulations, size effect on the nominal stress at failure is numerically investigated and then compared to the so-called Baiant size effect law. In addition, an analysis based on the spatial distribution of the fracture energy is also regarded, leading to the 3D representation of the FPZ and to its volume value estimation. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在本文中,进行了中尺度分析(1)研究尺寸对破坏时标称应力的影响,(2)在拉伸分裂试验的背景下量化断裂过程区(FPZ)的演变。细观结构基于异质材料(如混凝土)的两相3D表示,其中刚性集料嵌入砂浆基质中。为了考虑“这些不具有网格自适应性的异质性,在应变场中引入了一个弱的不连续性。此外,还添加了一个强的不连续性以考虑微裂纹。该模型被植入模型的框架中。增强有限元方法(E-FEM):基于有限元模拟,对破坏时的名义应力的尺寸效应进行了数值研究,然后与所谓的Baiant尺寸效应定律进行了比较,此外,还进行了基于空间的分析还考虑了断裂能的分布,从而导致FPZ的3D表示及其体积值估算(C)2016 Elsevier Ltd.保留所有权利。

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