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Proposed model for strength analysis of HSC eccentrically loaded slender columns

机译:高速钢偏心加载细柱强度分析的建议模型

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A model for the strength analysis of high-strength concrete (HSC) columns subjected to eccentric loading is proposed. The model is based on a stability analysis of pin-ended columns using the theoretical sinusoidal equation for the deflected shape of the column. The reduction in column stiffness as the axial load increases, representing the basic characteristic of the inelastic response of columns, is considered subject to equilibrium conditions, compatibility requirements, and constitutive relationships for the concrete and reinforcement. The tension-stiffening effect was taken into consideration. The column integrity is limited by either the material or the instability mode of failure. The method was applied to a wide range of experimental data and was compared with the Egyptian, European, and American building codes of practice. The ultimate strength predicted by the proposed model showed excellent agreement with the test results and was in good agreement with the codes of practice. The mean predicted-to-experimental ultimate load ratio was 0.94, with a coefficient of variation of 10.8%.
机译:提出了高强混凝土偏心受压柱强度分析的模型。该模型基于使用理论正弦方程对立柱弯曲形状的端部固定立柱进行稳定性分析。随着轴向载荷的增加,柱刚度的降低代表了柱的非弹性响应的基本特征,被认为受制于混凝土和钢筋的平衡条件,相容性要求以及本构关系。考虑了拉伸加强效果。色谱柱的完整性受到材料或故障不稳定模式的限制。该方法已应用于广泛的实验数据,并与埃及,欧洲和美国的建筑规范进行了比较。所提出的模型预测的极限强度与测试结果非常吻合,并且与操作规范吻合良好。平均预测与实验极限载荷比为0.94,变异系数为10.8%。

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