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Effects of inclusion stiffness on the cracking of cement-based composites under drying: a numerical study

机译:包合物刚度对干燥水泥基复合材料裂纹的影响:数值研究

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This paper focuses on the evolution of shrinkage cracking in a geometrically simplified concrete, i.e. a composite made of cement matrix including the glass spheres. In the first part, the laboratory samples at different levels of drying are examined experimentally. In order to identify the occurrence of cracking as well as its evolution in a direct and visual way, a non-destructive method called X-ray microtomography is used. The distribution of cracks is clearly identified, including their location and shape by the observation of cross section of samples. Based on the experimental investigations, a special coupled elastoplastic damage model is proposed to describe the mechanical behaviour of the composite. The obtained results satisfactorily reproduced the stress distribution and evolution in studied composite under drying and gave a better understanding of mechanical mechanism of shrinkage cracking. In order to study the influence of matrix behaviour and inclusion stiffness, a series of parametric studies are also performed by using a hydromechanical coupling code, incorporating the proposed constitutive model. One notices that the crack distribution in the sample depends strongly on the stiffness of inclusion and the mechanical behaviour of cement matrix.
机译:本文侧重于几何简化混凝土中收缩裂缝的演变,即由包括玻璃球体的水泥基质制成的复合材料。在第一部分中,实验检查不同干燥水平的实验室样品。为了识别裂缝的发生以及以直接和视觉方式识别出现的裂缝,使用一种被称为X射线微观图谱的非破坏性方法。清楚地识别裂缝的分布,包括通过观察样品的横截面的位置和形状。基于实验研究,提出了一种特殊的偶联弹塑​​性损伤模型来描述复合材料的力学行为。所获得的结果令人满意地再现研究干燥后的复合材料的应力分布和演化,并更好地了解收缩裂化的机械机制。为了研究矩阵行为和包含刚度的影响,还通过使用流体机械耦合码来执行一系列参数研究,其中包含所提出的本构模型。一种通知,样品中的裂缝分布强烈取决于夹杂物的刚度和水泥基质的力学行为。

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