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首页> 外文期刊>Journal of the Mechanics and Physics of Solids >Initiation and propagation of complex 3D networks of cracks in heterogeneous quasi-brittle materials: Direct comparison between in situ testing-microCT experiments and phase field simulations
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Initiation and propagation of complex 3D networks of cracks in heterogeneous quasi-brittle materials: Direct comparison between in situ testing-microCT experiments and phase field simulations

机译:准脆性材料中复杂的3D裂纹网络的萌生和传播:原位测试-microCT实验与相场模拟之间的直接比较

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摘要

We provide the first direct comparisons, to our knowledge, of complex 3D micro cracking initiation and propagation in heterogeneous quasi-brittle materials modelled by the phase field numerical method and observed in X-ray microtomography images recorded during in situ mechanical testing. Some material parameters of the damage model, including the process zone (internal) length, are identified by an inverse approach combining experimental data and 3D simulations. A new technique is developed to study the micro cracking at a finer scale by prescribing the local displacements measured by digital volume correlation over the boundary of a small sub-volume inside the sample during the numerical simulations. The comparisons, performed on several samples of lightweight plaster and concrete, show a remarkable quantitative agreement between the 3D crack morphology obtained by the model and by the experiments, without any a priori knowledge about the location of the initiation of the cracks in the numerical model. The results indicate that the crack paths can be predicted in a fully deterministic way in spite of the highly random geometry of the microstructure and the brittle nature of its constituents.
机译:就我们所知,我们提供了第一个直接比较,即通过相场数值方法建模并在现场机械测试过程中记录的X射线显微断层图像中观察到的异质准脆性材料中复杂3D微裂纹的萌生和扩展。损害模型的某些材料参数,包括过程区(内部)长度,是通过结合实验数据和3D模拟的逆方法确定的。通过规定在数值模拟过程中,通过在样品内部小子体积的边界上通过数字体积相关性测量的局部位移,开发了一种新技术来研究更精细尺度的微裂纹。在轻质石膏和混凝土的几个样品上进行的比较显示,在模型和实验中获得的3D裂纹形态之间存在着显着的定量一致性,而无需任何先验知识即可知道数值模型中裂纹的产生位置。结果表明,尽管微观结构的高度随机几何及其成分的脆性,但仍可以以完全确定的方式预测裂纹路径。

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