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Repairing post-heated L-shaped RC columns with advanced thin concrete jacketing

机译:用先进的薄混凝土夹套修复加热的L形RC柱

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L-shaped reinforced concrete columns lose strength rapidly after exposure to high levels of fire due to their large surface area. An experimental investigation was performed to evaluate two types of concrete jacketing for the distorted columns. Eight half-scale L-shaped reinforced concrete columns were exposed to 400 degrees C and 600 degrees C for two hours following the ASTM standard, and one column served as a reference. Thin reactive powder concrete (RPC) and self-compacting concrete (SCC) jackets were used to repair the post-heated columns. The stiffness of the column repaired with a fibrous SCC jacket after exposure to 400 degrees C exhibited the same stiffness as the non-heated control column, while the stiffness and capacity of the repaired column after exposure to 600 degrees C were less than those of the non-heated column. Fibrous RPC jacketing of columns exposed to 400 degrees C and 600 degrees C increased the column ultimate capacity by 33% and 14% over that of the non-heated control column, respectively. However, fibrous SCC jacketing could only restore the ultimate capacity for columns exposed to 400 degrees C. Adding steel fibre to the concrete jacket mix significantly improved the repaired column capacity. (C) 2019 Elsevier Ltd. All rights reserved.
机译:L形钢筋混凝土柱由于其大表面积暴露于高火程后迅速丧失。进行实验研究以评估两种类型的混凝土护套对扭曲的柱。在ASTM标准后,八个半尺寸的L形钢筋混凝土柱暴露于400℃和600摄氏度,持续两小时,一列作为参考。薄型活性粉混凝土(RPC)和自压力混凝土(SCC)夹套用于修复后加热的柱。在暴露于400摄氏度后,用纤维SCC夹套修复的柱的刚度表现出与未加热的控制塔相同的刚度,而在暴露于600℃后修复塔的刚度和容量小于那些非加热柱。暴露于400摄氏度和600摄氏度的柱的纤维RPC护套分别将柱最终容量增加33%和14%,而不是未加热的控制柱的柱子。然而,纤维SCC护套只能恢复暴露于400摄氏度的柱的最终容量。将钢纤维添加到混凝土夹套混合物中显着改善了修复的柱容量。 (c)2019 Elsevier Ltd.保留所有权利。

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