GFRP层合板加固RC柱在扭矩和轴向联合荷载作用下的扭矩-扭转性能:参数化研究

Ahmed Younus, H. Hekmet, Abeer Al-Shami
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引用次数: 0

摘要

混凝土柱的结构性能研究中尚未得到充分研究的重要课题之一是主要由建筑物暴露在地震下引起的扭转效应对混凝土构件的力学性能的影响,特别是结构构件产生的裂缝和整体扭扭性能。然而,混凝土柱是在地震中难以替换的构件,因此开发适用和有用的方法来维护和加强柱在遭受扭转后的作用已经出现。玻璃钢复合材料(CFRP)和玻璃钢复合材料(GFRP)是目前这些方法中最成功和最广泛的一种。为实现本文的目标,采用了一种适用于分析GFRP加固矩形混凝土柱在扭转和轴向联合荷载作用下的三维有限元模型,并提出了一种合理的方形混凝土柱扭转角有限元计算方法。利用ANSYS软件作为一种有用的工具来解决这一问题,并对所研究柱的扭矩-捻度关系进行预测。将计算结果与实验结果进行了比较和验证,数值计算结果与实验结果吻合较好。在参数化研究中,对影响GFRP加固方柱抗扭能力的几个重要参数进行了研究。这些参数包括GFRP分布、GFRP厚度和GFRP方案(方向)。结果表明,有限元软件在建立修正的扭转角计算公式后,对扭扭关系的估计是有效的,另一方面,GFRP布在与裂缝方向相反的45度方向固定是提高RC柱抗扭能力的最佳方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Torque – Twist Behavior of RC Columns Retrofitted with GFRP Laminates Under Combined Torque & Axial Loads: A Parametric Study
As one of the most important topics that have not been sufficiently studied to investigate the structural behavior of concrete columns is the mechanical properties of concrete members resulting from the torsional effects that caused mainly from the exposure of buildings to earthquakes, especially the cracks resulting in the structural members and overall torque-twist behavior. However, concrete columns are elements that are difficult to replace when exposed to earthquakes, so the role of developing applicable and useful methods for maintaining and strengthening columns has emerged after exposure to torsion. FRP laminates like CFRP and GFRP are one of the most successful and widespread of these methods nowadays. To achieve the goal of this paper, a finite element 3D model suitable for analyzing square RC columns strengthened with GFRP under combined torsional moment and axial loads has been adopted and a reasonable method for calculating angles of twist for square concrete columns using the finite element method has been developed. [ANSYS] software as a useful tool is used to solve the problem and to predict the Torque – Twist relationships of the columns under investigation. The results are compared and verified with an experimental study and the numerical results showed acceptable agreement with the experimental results. Several important parameters affecting the torsional capacity of square columns strengthened with GFRP and subjected to combined torque & axial load are studied in parametric study. These parameters include, GFRP distribution, GFRP thickness, and GFRP schemes (orientation). The results showed the efficiency of finite element software to estimate the torque twist relationships after developing modified formulas to calculate the angles of twist, on the other hand, the fixing of GFRP sheets in 45 degree opposite to the cracks orientation is the best way to increase the torsional capacity of RC columns.
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