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Stiffness modeling of RC columns reinforced with plain rebars

机译:普通钢筋加固RC柱的刚度建模

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摘要

Inaccurate predictions of effective stiffness for reinforced concrete (RC) columns having plain (undeformed) longitudinal rebars may lead to unsafe performance assessment and strengthening of existing deficient frames. Currently utilized effective stiffness models cover RC columns reinforced with deformed longitudinal rebars. A database of 47 RC columns (33 columns had continuous rebars and the remaining had spliced reinforcement) that were longitudinally reinforced with plain rebars was compiled from literature. The existing effective stiffness equations were found to overestimate the effective stiffness of columns with plain rebars for all levels of axial loads. A new approach that considers the contributions of flexure, shear and bond slip to column deflections prior to yielding was proposed. The new effective stiffness formulations were simplified without loss of generality for columns with and without lap-spliced plain rebars. In addition, the existing stiffness models for the columns with deformed rebars were improved while taking poor bond characteristics of plain rebars into account.
机译:对于具有普通(未变形)纵向钢筋的钢筋混凝土(RC)柱,其有效刚度的不正确预测可能导致不安全的性能评估并增强现有的不足框架。当前使用的有效刚度模型包括用变形的纵向钢筋加固的RC柱。从文献中收集了用普通钢筋纵向加固的47根RC柱(33根柱具有连续钢筋,其余具有拼接钢筋)的数据库。发现现有的有效刚度方程式高估了所有水平轴向载荷下带有普通钢筋的柱的有效刚度。提出了一种新方法,该方法考虑了屈服之前挠曲,剪切和粘结滑移对柱挠度的影响。简化了新的有效刚度公式,而对于带有和不带有搭接的普通钢筋的柱子,也没有失去通用性。此外,改进了带变形钢筋的柱的现有刚度模型,同时考虑了普通钢筋的不良粘结特性。

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