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Nonlinear quasi-static analysis of hybrid sliding-rocking bridge columns subjected to lateral loading

机译:侧向荷载作用下混合滑移桥柱的非线性准静力分析

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In this paper, a nonlinear three-dimensional finite element (FE) model for a hybrid sliding-rocking (HSR) column is developed. The HSR columns are segmental members incorporating internal unbonded post-tensioning, rocking joints at the member ends, and intermediate sliding joints along the member height. The HSR columns introduce new design parameters (e.g., frictional properties at the sliding joints, amplitude of joint sliding, number/distribution of sliding joints along the column height) and additional modeling challenges (e.g., contact interactions between adjacent segments and between segments and the internal unbonded post-tensioning tendons) as compared with conventional monolithic or rocking-only members. In the proposed modeling approach, contact interaction amongst adjacent segments and between segments and unbonded tendons are captured. Concrete segments are modeled using solid elements, mild steel reinforcement is modeled by beam elements embedded into the concrete segments, and the unbonded tendons are modeled using truss elements. The FE model was validated against available experimental data and was then used to conduct a parametric pushover study. Variations of the external vertical load were found to have minor effects on the lateral column response. Increase of the initial post-tensioning force resulted in early onset of inelastic response of the tendons, while the peak lateral column strength remained unchanged. Joint sliding increased the lateral deformation capacity of the column. Propagation of sliding from bottom to top and vice versa had small effects on the lateral response of the column. Propagation of sliding was controlled by the friction properties at the sliding joints. (C) 2015 Elsevier Ltd. All rights reserved.
机译:本文建立了混合滑动摇杆(HSR)柱的非线性三维有限元(FE)模型。 HSR柱是分段构件,内部无粘结的后张紧,构件端部的摇摆接头以及沿构件高度的中间滑动接头。 HSR柱引入了新的设计参数(例如,滑动接头处的摩擦特性,接头滑动的幅度,沿着柱高度的滑动接头的数量/分布)和其他建模挑战(例如,相邻节之间以及节与节之间的接触相互作用)与传统的整体式或仅摇摆式构件相比,内部无粘结的后张预应力筋)。在提出的建模方法中,捕获了相邻节段之间以及节段与未粘结筋之间的接触相互作用。使用实心单元对混凝土节段进行建模,通过嵌入混凝土节段中的梁单元对低碳钢加固进行建模,并使用桁架单元对未粘结的钢筋束进行建模。有限元模型已针对可用的实验数据进行了验证,然后用于进行参数推覆研究。发现外部垂直载荷的变化对侧柱响应没有太大影响。初始后张力的增加导致肌腱无弹性反应的早期发作,而峰值侧柱强度保持不变。关节滑动增加了柱的横向变形能力。从底部到顶部的滑动传播,反之亦然,对柱子的横向响应影响很小。滑动的传播受滑动接头的摩擦特性控制。 (C)2015 Elsevier Ltd.保留所有权利。

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