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Evaluation of interfacial shear stress in active steel tube-confined concrete columns

机译:活性钢管混凝土柱界面剪应力的评估

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This paper aims to analytically investigate the effect of shear stress at the concrete-steel interface on the mechanical behavior of the circular steel tube-confined concrete (STCC) stub columns with active and passive confinement subjected to axial compression. Nonlinear 3D finite element models divided into the four groups, i.e. circumferential-grooved, talc-coated, lubricated, and normal groups, with active and passive confinement were developed. An innovative method was used to simulate the actively-confined specimens, and then, the results of the finite element models were compared with those of the experiments previously conducted by the authors. It was revealed that both the predicted peak compressive strength and stress-strain curves have good agreement with the corresponding values measured for the confined columns. Then, the mechanical properties of the active and passive specimens such as the concrete-steel interaction, longitudinal and hoop stresses of the steel tube, confining pressure applied to the concrete core, and compressive stress-strain curves were analyzed. Furthermore, a parametric study was performed to explore the effects of the concrete compressive strength, steel tube diameter-to-wall thickness ratio, and prestressing level on the compressive behavior of the STCC columns. The results indicate that reducing or removing the interfacial shear stress in the active and passive specimens leads to an increase in the hoop stress and confining pressure, while the longitudinal stress along the steel tube height experiences a decrease. Moreover, prestressing via the presented method is capable of improving the compressive behavior of STCC columns.
机译:本文旨在分析研究在钢-钢界面处的剪应力对受轴向约束的主动约束和被动约束的圆形钢管混凝土(STCC)短柱的力学性能的影响。开发了分为3组的3D非线性有限元模型,即具有主动约束和被动约束的周向沟槽,滑石涂层,润滑和普通组。一种创新的方法被用来模拟主动约束的标本,然后将有限元模型的结果与作者先前进行的实验进行了比较。结果表明,预测的峰值抗压强度曲线和应力-应变曲线与约束柱的相应测量值具有很好的一致性。然后,分析了主动和被动试样的力学性能,例如混凝土与钢的相互作用,钢管的纵向和环向应力,施加在混凝土芯上的围压以及压缩应力-应变曲线。此外,进行了参数研究,以探索混凝土抗压强度,钢管直径与壁厚之比以及预应力水平对STCC柱抗压性能的影响。结果表明,减少或消除主动和被动试样中的界面剪应力会导致环向应力和围压增大,而沿钢管高度的纵向应力则减小。此外,通过所提出的方法进行预应力能够改善STCC柱的抗压性能。

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