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Experimental Study on CFRP Strengthened Continuous Reinforced Concrete Slab After Fire

机译:CFRP强化燃烧后连续钢筋混凝土板的实验研究

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This paper presents results from experimental studies on the flexural capacity mechanical properties of a continuous reinforced concrete (RC) slab with and without carbon fiber reinforced polymer (CFRP) sheets strengthened. Fire test and flexural capacity test were carried out on one continuous RC slab. Heating curve included heating stage and cooling stage. One span of continuous RC slab was strengthened with CFRP sheets at sagging moment region and hogging moment region. The results showed that the fire exposure surface of RC slab was easy to concrete spalling. The temperature variation of concrete obviously lagged behind the phenomenon. When the furnace temperature was decreasing, the temperature of concrete of the slab was still rising. Compared maximum temperatures within 120 minutes with the temperature of end heating at the same measuring point, the farther away from the fire exposure surface, the greater the temperature increased. And the time of maximum temperatures was also increased with the distance increase of from the fire exposure surface. The surface should be repaired before strengthened with CFRP sheets. CFRP sheets strengthening improved the flexural bearing capacity and stiffness of the fire-damaged slab, however, reduced the ductility of the fire-damaged slab. CFRP sheets could develop their ability in strengthening fire-damaged RC slabs on condition that surface processing of fire-damaged concrete.
机译:本文提出了对具有和不加强碳纤维增强聚合物(CFRP)板的连续钢筋混凝土(RC)板坯的弯曲能力力学性能的实验研究结果。在一个连续的RC板上进行防火测试和弯曲能力测试。加热曲线包括加热级和冷却级。在下垂矩区域和摇动力矩区域的CFRP板材加强了一种连续RC板坯。结果表明,RC板的火灾曝光表面易于混凝土剥落。混凝土的温度变化显然落后于现象。当炉温下降时,板坯混凝土的温度仍在上升。在120分钟内与相同测量点的最终加热温度比较最大温度,远离火灾曝光表面越远,温度越大。随着火灾曝光表面的距离增加,最大温度的时间也增加。在用CFRP板材加强之前,应修复表面。然而,CFRP板材加强改善火灾损坏板坯的弯曲承载力和刚度,降低了火灾损坏板的延展性。 CFRP表格可以在损坏混凝土的表面处理的条件下,强化防火RC板的能力。

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