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Numerical study of the compressive mechanical behaviour of rubberized concrete using the extended Finite Element Method (XFEM)

机译:扩展有限元方法(XFEM)对橡胶混凝土抗压性能的数值研究

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In this paper, a plane stress finite element model was developed to study the behaviour of a rubberized concrete (RuC) cubic specimen subjected to uniaxial compressive loading. To obtain the geometry of the given RuC section, specifically the heterogeneous distribution of rubber aggregates within the concrete matrix, MATLAB Image Processing is used. Then, to allow the initiation, opening and propagation of cracks in the concrete matrix upon loading, which ultimately lead to the failure of the RuC cube cross-section, a numerical model based on the extended Finite Element Method (XFEM) is implemented. The study motivation and the research significance are first presented. Then, the experimental programme conducted to characterize RuC's main mechanical properties is described. Both the image-processing and the numerical analysis of the proposed mechanical model are described, with emphasis on the implementation and calibration of XFEM to allow for multiple cracks to develop in the RuC section. The numerical results are validated based on the experimental data and a detailed study on the post-cracked behaviour of the RuC section is presented and lastly, some conclusions are drawn. (C) 2017 Elsevier Ltd. All rights reserved.
机译:本文建立了平面应力有限元模型,以研究橡胶混凝土(RuC)立方试样在单轴压缩载荷下的性能。为了获得给定的RuC截面的几何形状,特别是橡胶骨料在混凝土基质中的不均匀分布,使用了MATLAB Image Processing。然后,为了允许加载时混凝土基体中裂纹的引发,打开和扩展,最终导致RuC立方截面的破坏,建立了基于扩展有限元方法(XFEM)的数值模型。首先介绍了研究动机和研究意义。然后,描述了表征RuC主要机械性能的实验程序。描述了所提出的机械模型的图像处理和数值分析,并着重于XFEM的实现和校准,以允许在RuC区域中产生多个裂纹。基于实验数据对数值结果进行了验证,并对RuC截面的后裂纹行为进行了详细的研究,最后得出了一些结论。 (C)2017 Elsevier Ltd.保留所有权利。

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