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Design methodologies for one way spanning eccentrically loaded minimally or centrally reinforced pre-cast RC panels

机译:跨越偏心荷载最小或集中加固的预制RC板的一种方法的设计方法

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摘要

This paper examines and evaluates design methodologies applicable to pre-cast reinforced concrete (RC) panels subjected to eccentric axial load. Theoretical capacities derived from existing regulatory guidance are compared against those determined from experimental investigations, showing that slender RC walls have load capacities significantly higher than the estimates based on current design equations. A simple computational procedure incorporating lumped plasticity is presented and experimentally validated. It is shown that by utilising a non-linear hinge at the critical cross section, it is possible to effectively simulate the buckling response of the slender walls considered with a modest computational effort. The proposed design strategy emerges as a viable alternative to traditional methodologies by being able to capture the main effects of geometrical and material nonlinearities. It is therefore suggested that this approach, used in conjunction with a probabilistic, semi-empirical design procedure, will lead to design capacities more representative of actual experimental findings.
机译:本文研究并评估了适用于承受偏心轴向载荷的预制钢筋混凝土(RC)面板的设计方法。将现有法规指南得出的理论容量与实验研究确定的理论容量进行了比较,结果表明,细长的RC墙的承载能力明显高于根据当前设计方程式得出的估计值。提出并结合了集总可塑性的简单计算程序,并进行了实验验证。结果表明,通过在临界截面处使用非线性铰链,可以有效地模拟考虑的薄壁屈曲响应,而所需的计算工作量却很小。通过能够捕获几何和材料非线性的主要影响,拟议的设计策略成为传统方法的可行替代方案。因此,建议将这种方法与概率,半经验设计程序结合使用,将使设计能力更能代表实际的实验结果。

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