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Investigating the behaviour of hybrid fibre-reinforced reactive powder concrete beams after exposure to elevated temperatures

机译:调查杂交纤维增强活性粉体混凝土梁暴露于升高温度后的行为

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This study investigated the structural behaviour of reinforced reactive powder concrete (RPC) beams under service load and fire exposure. The beams were composed of hybrid fibres (50% polypropylene fibres and 50% steel fibres) at different volume fractions relative to nonfibrous-reinforced RPC beams. The bottom and both sides of the beams which were simply supported and loaded with two-point loads were exposed to a controlled fire for 120 min in accordance with ASTM E 119 standard time-temperature curve. The midspan deflection was recorded every 5 min. The experiment also included loading tests on fire-damaged beams after cooling. The nonfibrous-reinforced RPC beams failed during the fire test after 38 min because of the spalling of the reinforcement cover which directly exposed the reinforcing steel to elevated temperatures. By contrast, the beams with hybrid fibres could resist failure during the entire test period. The rate of increase in deflection during fire exposure declined with an increase in hybrid fibre content. Increases in fibre volume fraction from 0.25% to 0.75% and 1.25% decreased the midspan deflection of the reinforced RPC beams by 33% and 36%, respectively. Adding hybrid fibres could considerably improve the residual stiffness of fire-damaged beams. (C) 2019 The Authors. Published by Elsevier B.V.
机译:本研究研究了钢筋混凝土(RPC)梁在使用载荷和火灾暴露下的结构行为。梁在不同体积级分的混合纤维(50%聚丙烯纤维和50%钢纤维)组成,相对于非纤维增强的RPC梁。根据ASTM E 119标准时间温度曲线将简单地支撑和装配用两点载荷的梁的底部和两侧暴露于受控的火焰120分钟。每5分钟记录中坡偏转。实验还包括在冷却后对火灾损坏梁的装载测试。由于加强盖的剥落直接暴露于升高的温度,在38分钟后,在火灾试验期间失效的非纤维增强的RPC光束失效。相比之下,具有混合纤维的梁可以在整个测试期间抵抗失败。杂交纤维含量增加,火灾暴露期间偏转的增加率下降。纤维体积分数增加0.25%至0.75%,1.25%分别降低了增强RPC光束的中跨偏转33%和36%。添加混合纤维可以大大提高防火梁的残余刚度。 (c)2019年作者。 elsevier b.v出版。

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