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Effect of Sustained Service Loading on Post-Fire Flexural Response of Reinforced Concrete T-Beams

机译:持续服务负荷对钢筋混凝土T梁后火抗弯曲响应的影响

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This paper presents the effect of sustained service loading at elevated temperatures on the residual flexural response of reinforced concrete (RC) T-beams after exposed to elevated temperatures of 700 and 900 degrees C (1292 and 1652 degrees F) for 3 hours and then cooled in ail: Two beams were subjected to a constant simulated service loading equal to 22.6% of undamaged (unheated) flexural strength, while the counterpart beams were exposed to fire without any applied sustained load. The test results showed that the bottom (tension) steel reinforcements in all fire-exposed beams had experienced the peak temperatures that were higher than a critical value (593 degrees C [1099 degrees F]) before the post-fire static test. The post fire static test results showed that the sustained loading has a detrimental effect on the post-fire flexural response of RC beams. The effect was more pronounced on the post-fire stiffness and ductility than on strength. In the paper, simplified finite element models for predicting the temperature response and post-fire load-deflection relationships of fire-exposed RC beams are also described.
机译:本文介绍了在暴露于700℃(1292和1652°F)的高温后升高温度升高温度升高温度升高温度的效果3小时,然后冷却在AIL中:将两个光束进行恒定模拟的服务负载等于22.6%的未损坏(未加热的)弯曲强度,而对应梁暴露在没有任何施加的持续载荷的情况下暴露在火中。测试结果表明,所有火灾梁中的底部(张力)钢筋增强率高于火灾后静态试验前高于临界值的峰值温度(593摄氏度[1099°F])。后消防静态试验结果表明,持续负荷对RC梁的火梁后弯曲响应具有不利影响。在灭火后刚度和延展性上比强度更加明显。在本文中,还描述了用于预测防火RC光束的温度响应和火灾后负载偏转关系的简化有限元模型。

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