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Axial and bending behaviour of steel tubes infilled with rubberised concrete

机译:橡胶混凝土填充钢管的轴向和弯曲性能

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? 2022 The Author(s)This paper presents an experimental and numerical study into the behaviour of rubberised concrete-filled steel tubes (RuCFST), incorporating concrete with relatively high rubber replacements of up to 60 of mineral aggregates by volume. Axial compression, eccentric compression, and three-point bending tests on circular specimens are carried out and the results are used to validate the nonlinear procedures adopted in continuum finite element (FE) models of RuCFST members. A constitutive material model specific for confined rubberised concrete and associated modelling techniques, developed from existing procedures for concrete-filled steel tubes (CFST), is proposed for RuCFST members. The modelling techniques involve different damage definitions including low strength concrete with high rubber replacements in compression and bending. It is shown that the proposed modelling procedures can predict reliably the structural behaviour of circular RuCFST members under combined axial-bending conditions. The numerical procedures are then employed in undertaking a detailed parametric assessment for RuCFST cross-sections. The results are used to appraise current design procedures and to propose modifications that provide improved capacity predictions for a wide range of properties and loading conditions.
机译:?2022 作者本文对橡胶混凝土填充钢管 (RuCFST) 的行为进行了实验和数值研究,其中混凝土的橡胶替代率相对较高,按体积计算高达 60%。对圆形试件进行了轴向压缩、偏心压缩和三点弯曲试验,并利用试验结果验证了RuCFST杆件连续有限元(FE)模型中采用的非线性程序。针对RuCFST杆件,提出了一种专门用于约束橡胶混凝土的本构材料模型和相关建模技术,该模型是从现有混凝土填充钢管(CFST)程序发展而来的。建模技术涉及不同的损伤定义,包括低强度混凝土,在压缩和弯曲中具有高橡胶替代品。结果表明,所提出的建模程序能够可靠地预测圆形RuCFST构件在轴向弯曲组合条件下的结构行为。然后采用数值程序对RuCFST横截面进行详细的参数评估。这些结果用于评估当前的设计程序,并提出修改建议,为各种属性和荷载条件提供改进的容量预测。

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