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Mesoscale modelling of dynamic tensile behaviour of fibre reinforced concrete with spiral fibres

机译:螺旋纤维增强纤维混凝土动态拉伸性能的中尺度建模

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摘要

This paper performs numerical simulations of dynamic splitting tensile tests to study the dynamic properties of FRC materials. A two-dimensional mesoscale model is developed with consideration of the fibres, aggregates, and cement mortar. The FRC models with hooked-end fibres and newly developed spiral fibres are developed to investigate the effect of fibre shape on the dynamic properties of FRC material, such as the dynamic increase factor (D1F), the energy absorption capacity and the crack opening velocity. Accuracy of the numerical models for two types of FRC materials with 1% fibre content is verified with the experimental results. The effect of fibre content on the dynamic properties of the two FRC materials is also investigated. Numerical results demonstrate that the proposed mesoscale model can reliably simulate the dynamic splitting tests of FRC materials. They also demonstrate the effectiveness of the spiral FRC in resisting the dynamic tensile loads as compared to the conventional hooked-end FRC.
机译:本文进行了动态分裂拉伸试验的数值模拟,以研究FRC材料的动力学特性。考虑纤维,骨料和水泥砂浆,建立了二维中尺度模型。建立了带有钩端纤维和新开发的螺旋纤维的FRC模型,以研究纤维形状对FRC材料动态性能的影响,例如动态增加因子(D1F),能量吸收能力和裂纹打开速度。实验结果验证了两种纤维含量为1%的FRC材料数值模型的准确性。还研究了纤维含量对两种FRC材料动力学性能的影响。数值结果表明,所提出的中尺度模型能够可靠地模拟FRC材料的动态分裂试验。他们还证明了与传统的钩端FRC相比,螺旋FRC在抵抗动态拉伸载荷方面的有效性。

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