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Numerical modelling on degradation of mechanical behaviour for engineered cementitious composites under fatigue tensile loading

机译:疲劳拉伸荷载下工程水泥复合材料劣化的数值模拟

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A multiscale modelling framework is developed in this paper for analysing the degradation of mechanical behaviour of Engineered Cementitious Composites (ECCs) under fatigue tensile loading. Degradation models for calibrating fatigue-induced deterioration of the fibre-matrix interface and fibre fatigue rupture are proposed at the microscale. Based on these, the cycle-dependent crack bridging relation is derived at the mesoscale. At the macroscale, the degradation behaviour of the bridging stress in ECC with presence of multiple cracks is modelled using extended finite element method. This multiscale characterisation method is validated by comparing the computed degradation relation of the bridging stress to that obtained from the experiment. Good agreement is obtained, which demonstrates the effectiveness of the developed multiscale modelling framework for the analysis of fatigue behaviour of ECCs. In addition, the deterioration of the fibre-matrix interface is found to be responsible for a steady decreasing bridging stress, while the fibre fatigue rupture is found to contribute to an accelerated loss of bridging stress. (C) 2017 Elsevier Ltd. All rights reserved.
机译:本文开发了多尺度建模框架,用于分析疲劳拉伸载荷下工程化水泥复合材料(ECC)的力学行为的降解。在微尺寸提出了用于校准抗疲劳诱导的抗纤维 - 基质界面的劣化和纤维疲劳破裂的降解模型。基于这些,循环依赖性裂缝桥接关系衍生在Mescle。在宏观上,使用延长的有限元法建模ECC桥接应力的缩小应力的劣化行为。通过比较从实验中获得的桥接应力的计算的劣化关系来验证该多尺度表征方法。获得了良好的协议,这证明了开发的多尺度建模框架的有效性,用于分析ECC的疲劳行为。此外,发现纤维矩阵界面的劣化是负责稳定的桥接应力,而发现纤维疲劳破裂有助于桥接应力的加速损失。 (c)2017 Elsevier Ltd.保留所有权利。

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