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首页> 外文期刊>Journal of bridge engineering >Improved Softened Membrane Model for Reinforced Concrete Circular Bridge Columns under Torsional Loading
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Improved Softened Membrane Model for Reinforced Concrete Circular Bridge Columns under Torsional Loading

机译:钢筋混凝土圆桥柱在扭转荷载下的改进软化膜模型

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摘要

This paper presents an improved softened membrane model for the analysis of reinforced concrete (RC) circular bridge columns under torsion loading. Concrete exhibits higher tensile strength and stiffness due to the strain-gradient effect under torsional loading. Results of previous studies suggest that the inclusion of strain-gradient and bidirectional stress effects improves prediction of the torsional behavior of concrete members. However, the influence of strain-gradient and bidirectional effect stresses on the torsional response of circular columns has never been investigated. With this paper, the authors aim to fill the existing knowledge gap in this important area of research by proposing a modified softened membrane model for torsion (SMMT) for circular columns. The authors also recommend a new tension-stiffening relationship of concrete for improved predictions. The estimated analytical response is compared with experimental data, and a good correlation can be seen. Predictions from the proposed model are also compared with the classical rotating-angle softened truss model (RA-STM) to illustrate the efficacy of the proposed model. Parameters such as postcracking stiffness, peak torque, and twist at peak torque are captured by the improved SMMT better than with the existing RA-STM. The improved model can be used also for developing simplified design equations.
机译:本文提出了一种改进的软化膜模型,用于分析钢筋混凝土圆桥柱在扭转荷载下的作用。由于在扭转载荷下的应变梯度效应,混凝土表现出更高的拉伸强度和刚度。先前的研究结果表明,包含应变梯度和双向应力效应可以改善对混凝土构件扭转行为的预测。但是,从未研究过应变梯度和双向效应应力对圆柱扭转响应的影响。本文旨在通过提出一种改进的圆形圆柱扭转软化膜模型(SMMT)来填补这一重要研究领域的现有知识空白。作者还建议了一种新的混凝土抗张刚度关系,以改善预测效果。将估计的分析响应与实验数据进行比较,可以看到良好的相关性。还将所提出模型的预测结果与经典旋转角度软化桁架模型(RA-STM)进行比较,以说明所提出模型的有效性。改进的SMMT可以比现有的RA-STM更好地捕获裂后刚度,峰值扭矩和峰值扭矩下的扭曲等参数。改进的模型还可用于开发简化的设计方程式。

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