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A computational model for simulation of steel fibre reinforced concrete with explicit fibres and cracks

机译:含明显纤维和裂纹的钢纤维混凝土仿真计算模型

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A new formulation is herein proposed to embed discrete fibres and cracks in finite elements. The main features of the fibre behaviour are automatically accounted for, including bond and snubbing effects. Fibres can interact with cracks and are modelled without the need for additional degrees of freedom. A comprehensive constitutive law directly models the two possible fibre failure modes: pull-out and tensile rupture. The bridging effect of fibres crossing active cracks follows a pull-out relation that depends on the current crack width, fibre orientation, relevant mechanical and geometric fibre properties, and quality of surrounding cement-based matrix. Fibres can be randomly positioned inside a structural member using a non-uniform distribution. The effect of crack openings is transmitted to the neighbouring material as rigid body movement. Numerical tests of material and structural scale are simulated to assess the performance of the technique. The model is shown to adequately simulate the complete behaviour of the members without the need for fitting material parameters to capture complex failure mechanisms. The model is also used for a rational justification about the loss of ductility when fibres are used in concrete beams flexurally reinforced with small amounts of longitudinal reinforcement. (C) 2020 Elsevier B.V. All rights reserved.
机译:本文提出了一种新的配方,可将离散的纤维和裂纹嵌入有限元中。光纤行为的主要特征会自动考虑在内,包括粘结和缓冲效应。纤维可以与裂缝相互作用,并且无需额外的自由度即可进行建模。全面的本构定律直接对两种可能的纤维破坏模式进行建模:拉出和拉伸断裂。纤维穿过活性裂纹的桥接效应遵循拉拔关系,该关系取决于当前的裂缝宽度,纤维取向,相关的机械和几何纤维特性以及周围水泥基基质的质量。可以使用非均匀分布将纤维随机放置在结构构件内部。裂纹开口的影响随着刚体的运动传递到相邻的材料。模拟材料和结构规模的数值测试以评估该技术的性能。该模型显示出可以充分模拟构件的完整行为,而无需拟合材料参数来捕获复杂的失效机制。该模型还用于合理合理地证明当纤维用于少量纵向钢筋挠曲加固的混凝土梁中时,延展性的损失。 (C)2020 Elsevier B.V.保留所有权利。

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