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Axial and lateral stress-strain model for circular concrete-filled steel tubes with external steel confinement

机译:外部约束的圆形钢管混凝土的轴向和横向应力应变模型

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摘要

In a concrete-filled steel tube, delamination often occurs at the steel tube-concrete core interface due to the larger Poisson's ratio of the steel tube. For resolving this problem, it has been advocated to install external restraints in the form of steel rings or spirals so as to restrain the lateral expansion of the steel tube. This also provides additional confinement to the concrete core. To study the effectiveness of such external steel confinement, a theoretical model for evaluating the confining stress and axial load in a concrete-filled steel tube with external steel confinement up to the post-peak stage is developed. The theoretical model is first verified by analyzing a total of 98 specimens tested by previous researchers and comparing the measured and predicted lateral strain-axial strain curves and axial load-strain curves of the specimens. It is then used to perform a parametric study to evaluate the required equivalent thickness/diameter ratios of the external steel confinement for eliminating the delamination effect and for achieving Level I ductility. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在钢管混凝土中,由于钢管的泊松比较大,所以常常在钢管-混凝土芯界面处发生分层。为了解决这个问题,已经提倡以钢环或螺旋形式安装外部约束装置,以限制钢管的横向膨胀。这也为混凝土核心提供了更多的限制。为了研究这种外部钢约束的有效性,建立了一个理论模型,用于评估钢管混凝土在最高峰后阶段的约束应力和轴向载荷。首先,通过分析先前研究人员测试的总共98个样品,并比较测量和预测的样品的横向应变-轴向应变曲线和轴向载荷-应变曲线,来验证理论模型。然后用于进行参数研究,以评估所需的外部钢围墙等效厚度/直径比,以消除分层效应并实现I级延展性。 (C)2016 Elsevier Ltd.保留所有权利。

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