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Modeling of the quasibrittle fracture of concrete at meso-scale: Effect of classes of aggregates on global and local behavior

机译:中尺度混凝土准脆性断裂建模:骨料类别对整体和局部行为的影响

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摘要

The computational power allows nowadays the development of mesoscopic models of concrete, based on finite element or lattices approaches, which represent the contribution of inclusions to the behavior of concrete. However, the smallest heterogeneities are often removed to these simulations for decreasing the computation time. In this paper, the effect of aggregate classes on the fracture behavior of a plain concrete is studied. Different simulations are performed from a mesoscopic model based on a diffuse meshing technique and Fichant's damage model, in which the smallest aggregates are successively removed from the granular skeleton to the benefit of a homogenized continuous mortar. The effects of these simplifications are then evaluated by comparing the fracture behaviors obtained to the one of the reference concrete. The results show the relevance of modeling all classes of aggregates in order to obtain an accurate description of the failure behavior of concrete. (C) 2016 Elsevier Ltd. All rights reserved.
机译:如今,计算能力允许基于有限元或网格方法开发混凝土的介观模型,这些模型代表了夹杂物对混凝土性能的贡献。但是,最小的异质性通常会被删除,以减少计算时间。本文研究了骨料类别对普通混凝土断裂性能的影响。从基于弥散网格技术和Fichant损伤模型的介观模型中进行了不同的模拟,其中最小的集料被连续地从颗粒骨架中去除,从而受益于均质的连续砂浆。然后,通过将获得的断裂行为与参考混凝土之一进行比较,来评估这些简化的效果。结果显示了对所有类别的骨料进行建模以获取对混凝土破坏行为的准确描述的相关性。 (C)2016 Elsevier Ltd.保留所有权利。

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