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Finite element analysis of confined high strength concrete bridge columns with opposing-spiral reinforcement

机译:逆向钢筋混凝土承压高强混凝土柱的有限元分析

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The spiral reinforcement is a very common technique used for reinforcing columns in active seismic regions due to its high ductility and high ability of energy absorption. This paper presents a nonlinear finite element analysis of high-strength concrete confined with opposing circular spiral reinforcements. The results are compared with tested scaled concrete columns made with opposing spirals under monotonic axial loads. The developed model is used to investigate the effect of spiral spacing, γ (ratio of the core diameter to the whole cross section diameter) and compressive strength on behaviour of circular spiral reinforced concrete column confined with opposing spiral reinforcements. The results of the parametric study demonstrated that for the same spacing between spirals and same strength of concrete, increasing γ will result into increasing the failure load of the column. It is also concluded that the ductility of the studied columns is not affected by changing the value of γ.
机译:螺旋筋由于其高延展性和高能量吸收能力而成为在活动地震区域中加固圆柱的非常普遍的技术。本文提出了对置圆形螺旋钢筋的高强度混凝土的非线性有限元分析。将结果与在单调轴向载荷下用相反螺旋制成的经测试的按比例缩放的混凝土柱进行比较。所开发的模型用于研究螺旋间距,γ(芯直径与整个横截面直径之比)和抗压强度对受限于相对螺旋钢筋的圆形螺旋钢筋混凝土柱性能的影响。参数研究的结果表明,对于相同的螺旋间距和相同的混凝土强度,增加γ将导致柱的破坏载荷增加。还可以得出结论,研究列的延展性不受更改γ值的影响。

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