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Spalling of concrete cover of cyclically loaded columns and fire behaviour of columns with concrete spalling

机译:循环荷载柱混凝土覆盖层的剥落及混凝土剥落柱的着火性能

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摘要

Fire following an earthquake is a threat to seismically damaged structural members with spalling of concrete cover. To evaluate the fire behaviour of the damaged members, it is important to determine the spalling length and thickness reasonably. In this paper, 16 columns were cyclically loaded to check their concrete cover spalling features. Based on the test results and PEER's database, formulas are proposed for flexure-critical rectangular columns to approximately evaluate the spalling length and thickness of the columns' concrete cover. Then, thermal and mechanical performance of the damaged columns in fire is numerically studied. It is found that: (a) the maximum spalling length generally increases with the increasing column's drift ratio and axial load ratio, but it does not exhibit monotonic trend with the change in the shear span ratio and volumetric transverse reinforcement ratio; (b) the ratio of the equivalent spalling length to the maximum spalling length generally increases with the increasing column's drift ratio and axial load ratio; and (c) fire endurance of the damaged column calculated using the equivalent model is 7-18% higher than that using the realistic model, and a discounted factor of .8 is recommended for the former.
机译:地震后的火灾对混凝土覆盖层剥落对地震破坏的结构构件构成威胁。为了评估受损构件的着火行为,重要的是合理确定剥落的长度和厚度。在本文中,循环加载16根圆柱以检查其混凝土覆盖层剥落特征。根据测试结果和PEER的数据库,提出了抗弯临界矩形柱的公式,以大致评估柱的混凝土覆盖层的剥落长度和厚度。然后,对火灾中受损柱的热力学性能进行了数值研究。发现:(a)最大剥落长度通常随着柱的漂移比和轴向载荷比的增加而增加,但不会随着剪切跨度比和体积横向增强比的变化而呈现单调趋势; (b)等效剥落长度与最大剥落长度之比通常随立柱的漂移比和轴向载荷比的增加而增加; (c)使用等效模型计算得出的受损柱的耐火性比使用实际模型计算出的高7-18%,建议前者采用0.8的折现系数。

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