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Tensile fracture process of Strain Hardening Cementitious Composites by means of three-dimensional meso-scale analysis

机译:三维中尺度分析应变硬化水泥基复合材料的拉伸断裂过程

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摘要

There are a wide variety of short fiber reinforced cement composites. Among these materials are Strain Hardening Cementitious Composites (SHCC) that exhibit strain hardening and multiple cracking in tension. Quantitative material design methods considering the properties of matrix, fiber and their interface should be established. In addition, numerical models to simulate the fracture process including crack width and crack distribution for the material are needed. This paper introduces a numerical model for three-dimensional analysis of SHCC fracture, in which the salient features of the material meso-scale (i.e. matrix, fibers and their interface) are discretized. The fibers are randomly arranged within the specimen models. Load test simulations are conducted and compared with experimental results. It is seen that the proposed model can well simulate the tensile failure of Ultra High Performance-Strain Hardening Cementitious Composites (UHP-SHCC) including strain-hardening behavior and crack patterns. The effects of matrix strength, its probability distribution inside the specimen and fiber distribution on the tensile fracture are numerically investigated. Consideration of the probability distributions of material properties, such as matrix strength, appears to be essential for predicting the fracture process of SHCC.
机译:有各种各样的短纤维增强水泥复合材料。在这些材料中,应变硬化水泥复合材料(SHCC)表现出应变硬化和拉伸多次开裂。应建立考虑基质,纤维及其界面特性的定量材料设计方法。此外,还需要用于模拟断裂过程的数值模型,包括材料的裂缝宽度和裂缝分布。本文介绍了一种用于SHCC断裂三维分析的数值模型,其中离散了材料细观尺度的显着特征(即基质,纤维及其界面)。纤维随机排列在样本模型中。进行负载测试模拟并将其与实验结果进行比较。可以看出,该模型可以很好地模拟超高性能-应变硬化水泥基复合材料(UHP-SHCC)的拉伸破坏,包括应变硬化行为和裂纹模式。数值研究了基体强度,其在试样内部的概率分布以及纤维分布对拉伸断裂的影响。考虑材料特性的概率分布,例如基体强度,对于预测SHCC的断裂过程似乎至关重要。

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