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首页> 外文期刊>Engineering Structures >Torsional strength of RC members using a plasticity-based variable-angle space truss model accounting for non-uniform longitudinal reinforcement
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Torsional strength of RC members using a plasticity-based variable-angle space truss model accounting for non-uniform longitudinal reinforcement

机译:利用基于塑性的可变角度空间桁架模型占非均匀纵向加固的RC成员的扭转强度

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摘要

The torsional strength of reinforced concrete (RC) members is typically calculated through the thin-walled tube, space truss analogy. The governing equations are simple equilibrium conditions satisfied by closed stirrups, longitudinal reinforcement and spiral concrete diagonals at a variable angle. In building codes, like EC2 and ACI 318, the contribution of longitudinal reinforcement is averaged among the walls, considering the total amount of longitudinal re-bars of the overall cross section. However, longitudinal re-bars may be non-uniformly distributed along the walls. This is particular evident in beams with large aspect ratios and re-bars mainly located at the corners, or in beams with unsymmetrical bending-type longitudinal reinforcement arrangement. This paper presents a plasticity-based variable-angle space truss model accounting for non-uniform distribution of longitudinal reinforcement along the walls. The model, which is based on equilibrium conditions and the lower-bound theorem of plasticity, is first elaborated for a polygonal cross-section with an arbitrary number of walls incorporating arbitrary longitudinal reinforcement ratios and corresponding variable-angle concrete strut inclinations, and then particularized to the more common case of rectangular section with two representative longitudinal reinforcement ratios and two corresponding variable-angle strut inclinations. For practical design purposes, the results of this model are illustrated through normalized torsional strength curves in terms of non-dimensional reinforcement indexes. The model is validated by comparison with more than 200 experimental results of RC members under pure torsion collected from the literature, and very good agreement is found. The predictions of the model are also compared with those of some codes of practice and better results are obtained especially for beams with markedly non-uniform longitudinal reinforcement arrangement.
机译:钢筋混凝土(RC)构件的扭转强度通常通过薄壁管,空间桁架类比计算。控制方程是在可变角度处的封闭式箍筋,纵向加强和螺旋混凝土对角线满足的简单平衡条件。在建筑物代码中,如EC2和ACI 318,考虑到整个横截面的纵向重杆的总量,纵向加强件的贡献在壁中平均。然而,纵向再杆可以沿着壁不均匀地分布。这在具有大的纵横比和主要位于拐角处的横梁或具有非对称弯曲型纵向增强装置的梁的重新杆的梁特别明显。本文介绍了一种基于可塑性的可变角度空间桁架模型,用于沿着墙壁的纵向加固的不均匀分布。基于平衡条件的模型和可塑性的较低定理,首先阐述具有包括任意纵向加强比和相应的可变角混凝土倾斜的任意数量的壁的多边形横截面,然后统治对于具有两个代表性的纵向增强比和两个相应的可变角度支柱倾斜的矩形截面的更常见的矩形截面。出于实用的设计目的,通过在非尺寸增强指标方面通过标准化扭转强度曲线来说明该模型的结果。通过从文献中收集的纯扭转下的RC成员200多个实验结果比较,验证了该模型,发现了非常良好的协议。与一些实践代码的预测相比,该模型的预测也被比较,并且获得了具有明显不均匀的纵向加强装置的梁的梁获得了更好的结果。

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