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Microscale Testing and Modelling of Cement Paste as Basis for Multi-Scale Modelling

机译:水泥浆的微尺度测试和建模作为多尺度建模的基础

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This work aims to provide a method for numerically and experimentally investigating the fracture mechanism of cement paste at the microscale. For this purpose, a new procedure was proposed to prepare micro cement paste cubes (100 × 100 × 100 μm 3 ) and beams with a square cross section of 400 × 400 μm 2 . By loading the cubes to failure with a Berkovich indenter, the global mechanical properties of cement paste were obtained with the aid of a nano-indenter. Simultaneously the 3D images of cement paste with a resolution of 2 μm 3 /voxel were generated by applying X-ray microcomputed tomography to a micro beam. After image segmentation, a cubic volume with the same size as the experimental tested specimen was extracted from the segmented images and used as input in the lattice model to simulate the fracture process of this heterogeneous microstructure under indenter loading. The input parameters for lattice elements are local mechanical properties of different phases. These properties were calibrated from experimental measured load displacement diagrams and failure modes in which the same boundary condition as in simulation were applied. Finally, the modified lattice model was applied to predict the global performance of this microcube under uniaxial tension. The simulated Young’s modulus agrees well with the experimental data. With the method presented in this paper the framework for fitting and validation of the modelling at microscale was created, which forms a basis for multi-scale analysis of concrete.
机译:这项工作旨在提供一种在微观上进行数值和实验研究水泥浆体断裂机理的方法。为此目的,提出了一种新的程序来制备微型水泥糊块(100×100×100μm3)和方形截面为400×400μm2的梁。通过使用Berkovich压头将立方体加载至破坏,借助纳米压头可获得水泥浆的整体机械性能。同时,通过将X射线微计算机断层扫描应用于微束,生成分辨率为2μm3 /体素的水泥浆3D图像。图像分割后,从分割后的图像中提取与实验测试样本大小相同的立方体积,并将其用作晶格模型的输入,以模拟这种不同组织在压头下的断裂过程。晶格元素的输入参数是不同相的局部机械性能。这些特性是通过实验测得的载荷位移图和破坏模式进行校准的,其中采用了与模拟相同的边界条件。最后,将改进的晶格模型应用于预测该微立方体在单轴张力下的整体性能。模拟的杨氏模量与实验数据非常吻合。利用本文提出的方法,建立了微观模型拟合和验证的框架,为混凝土的多尺度分析奠定了基础。

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