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The influence of microstructure geometry on the scale effect in mechanical behaviour of heterogeneous materials

机译:微结构几何形状对异质材料力学行为中尺度效应的影响

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There are a significant number of factors which have impact on the scale effect in the mechanical behaviour of composite materials. In this paper, the influence of the microstructure on this phenomenon is examined. In particular, how the results of the uniaxial compression test are affected by the microstructure geometry is verified. For the purposes of this study, two different materials are chosen, i.e. pure gypsum and mortar. Firstly, the microstructures of the two considered materials are compared with the use of different microstructure measures, i.e. attenuation profiles, porosity and pore size distributions, calculated based on the images obtained from the X-ray microCT. Then, a series of uniaxial compression tests is performed for a large number of cylindrical specimens made of the two materials under study. Four different sample diameters are assumed in order to investigate the size effect in the considered composites. For both materials, the results of uniaxial compressive strength and the Young modulus are presented. The relationship between the microstructure of the material and the scale effect in mechanical properties is proved. The scale effect is more demonstrable in the case of the material which exhibits a more heterogeneous microstructure.
机译:有很多因素会影响复合材料的机械性能中的比例效应。在本文中,研究了微观结构对该现象的影响。特别地,证实了单轴压缩测试的结果如何受到微观结构几何形状的影响。为了本研究的目的,选择两种不同的材料,即纯石膏和灰浆。首先,将两种考虑的材料的微观结构与使用不同的微观结构度量进行比较,即基于从X射线microCT获得的图像计算得出的衰减曲线,孔隙率和孔径分布。然后,对由两种材料制成的大量圆柱形试样进行了一系列的单轴压缩试验。为了研究所考虑的复合材料的尺寸效应,假定了四个不同的样品直径。对于这两种材料,均给出了单轴抗压强度和杨氏模量的结果。证明了材料的微观结构与机械性能上的尺度效应之间的关系。在材料表现出更不均匀的微观结构的情况下,水垢效应更明显。

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