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Tensile stress–crack width law for steel fibre reinforced self-compacting concrete obtained from indirect (splitting) tensile tests

机译:通过间接(劈裂)拉伸试验获得的钢纤维增强自密实混凝土的拉伸应力-裂纹宽度定律

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摘要

In this work, the fracture mode I parameters of steel fibre reinforced self-compacting concrete (SFRSCC) were derived from the numerical simulation of indirect splitting tensile tests. The combined experimental and numerical research allowed a comparison between the stress-crack width (σ - w) relationship acquired straightforwardly from direct tensile tests, and the σ - w response derived from inverse analysis of the splitting tensile tests results. For this purpose a comprehensive nonlinear 3D finite element (FE) modeling strategy was developed. A comparison between the experimental results obtained from splitting tensile tests and the corresponding FE simulations confirmed the good accuracy of the proposed strategy to derive the σ – w for these composites. It is concluded that the post-cracking tensile laws obtained from inverse analysis provided a close relationship with the ones obtained from the experimental uniaxial tensile tests.
机译:在这项工作中,钢纤维增强自密实混凝土(SFRSCC)的断裂模式I参数是通过间接劈裂拉伸试验的数值模拟得出的。结合实验和数值研究,可以比较直接拉伸试验中直接获得的应力-裂纹宽度(σ-w)关系与裂口拉伸试验结果的反分析得出的σ-w响应。为此,开发了一种综合的非线性3D有限元(FE)建模策略。从分裂拉伸试验获得的实验结果与相应的有限元模拟之间的比较证实了所提出的策略的良好准确性,该策略可得出这些复合材料的σ– w。结论是,通过逆分析获得的裂后拉伸定律与从实验单轴拉伸试验获得的定律密切相关。

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