Stefanou George, Savvas Dimitrios, Metsis Panagiotis
Department of Civil Engineering, Institute of Structural Analysis & Dynamics of Structures, Aristotle University of Thessaloniki, 54124 Thessaloniki, Greece.
Materials (Basel). 2021 Mar 15;14(6):1423. doi: 10.3390/ma14061423.
The purpose of this paper is to determine the random spatially varying elastic properties of concrete at various scales taking into account its highly heterogeneous microstructure. The reconstruction of concrete microstructure is based on computed tomography (CT) images of a cubic concrete specimen. The variability of the local volume fraction of the constituents (pores, cement paste and aggregates) is quantified and mesoscale random fields of the elasticity tensor are computed from a number of statistical volume elements obtained by applying the moving window method on the specimen along with computational homogenization. Based on the statistical characteristics of the mesoscale random fields, it is possible to assess the effect of randomness in microstructure on the mechanical behavior of concrete.
本文的目的是考虑到混凝土高度不均匀的微观结构,确定不同尺度下混凝土随机空间变化的弹性特性。混凝土微观结构的重建基于一个立方体混凝土试件的计算机断层扫描(CT)图像。对各组分(孔隙、水泥浆和骨料)的局部体积分数的变异性进行了量化,并通过在试件上应用移动窗口法以及计算均匀化得到的多个统计体积单元,计算了弹性张量的细观尺度随机场。基于细观尺度随机场的统计特性,可以评估微观结构随机性对混凝土力学性能的影响。