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Behavior of Slender RC Columns Bent in Single and Double Curvature at Elevated Temperatures

机译:细长RC色谱柱在升高温度下单曲率和双曲率弯曲的行为

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In this study, a numerical model for tracing the behavior of eccentrically loaded slender reinforced concrete (RC) columns bent in single and double curvature, and subjected to elevated temperatures is presented. The developed model incorporates the high-temperature material properties, the nonlinear behavior of concrete sections, time dependent effects, and the nonlinear responses of slender RC columns. Based on Newton-Raphson method, an iterative technique, wherein strain and curvature are concurrently iterated, is used to find the strain distribution on the cross-section. By proposing a simple and reliable calculation procedure, the lateral deflection is calculated using numerical and searching techniques. The compatibility between forces and deformations at a joint in the column is established by another iterative technique, which involves the analysis of the whole column. The validity of the analytical model is established by comparing its predictions with results obtained from laboratory tests found in literature. A parametric study is conducted to investigate the effect of end eccentricity conditions on columns bent in single and double curvatures. It was found that lateral deflection plays an important role on column responses when subjected to fire. This finding confirms the usefulness of lateral deflection as a powerful tool in validating eccentrically loaded slender RC columns. It was also found that unwinding at elevated temperature has detrimental effect on columns bent in double curvature. It was observed that for all columns, there exists a critical eccentricity after which column responses to fire change.
机译:在该研究中,提出了一种追踪单曲率和双曲率弯曲的偏心加载的细长混凝土(RC)柱行为的数值模型,并进行高温。开发模型包括高温材料特性,混凝土部分的非线性行为,时间依赖性效应和细长RC柱的非线性响应。基于Newton-Raphson方法,一种迭代技术,其中应变和曲率同时迭代,用于在横截面上找到应变分布。通过提出简单且可靠的计算过程,使用数值和搜索技术计算横向偏转。通过另一种迭代技术建立了柱中的关节的力和变形之间的兼容性,这涉及整个柱的分析。通过将其预测与文献中的实验室测试获得的结果进行比较来建立分析模型的有效性。进行参数研究以研究单一和双曲率弯曲柱的最终偏心条件的影响。发现横向偏转在经受火灾时在列响应上起重要作用。此发现确认了横向偏转的有用性作为验证偏心加载的修长RC列的强大工具。还发现,在升高的温度下放展展开对双曲率弯曲的柱具有不利影响。观察到,对于所有列,存在临界偏心,之后柱响应火灾变化。

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