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Residual strength of CFRP strengthened prestressed concrete bridge girders after hydrocarbon fire exposure

机译:碳氢化合物火暴露后CFRP加固的预应力混凝土桥梁梁的残余强度

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Significant investigations have been conducted on the effect of extreme load events, such as earthquake, wind and flood on bridges, as compared to fire hazards, even though fire can cause significant economic and public impacts. To bridge this knowledge gap, a full-scale single span prestressed concrete bridge was tested under a combined hydrocarbon fire and simulated AASHTO live load. The superstructure comprised of three standard I-girders, precast deck panels, cast-in-place deck, and elastomeric bearing pads. One girder was wrapped with carbon fiber reinforced polymer (CFRP), another with CFRP and sprayed fireproofing and a third was without CFRP or fireproofing. The test was conducted for 60 min and the fire temperature reached as high as 1131 degrees C. It was found that the fireproofing was helpful in lowering the temperature at the CFRP-concrete interface, thereby preserving the integrity of the CFRP bonding, the concrete substrate, and prestressing steel. Without fireproofing, the CFRP quickly debonded, thereby causing significant concrete spalling and loss of some prestressing strands. Following the fire test, the deck was saw cut and each girder was tested in the laboratory under a three-point bending set-up to determine their residual strengths. The CFRP girder without fireproofing lost 59% of its design flexural capacity, while the one with fireproofing did not experience any reduction.
机译:尽管火灾可能会造成重大的经济和公共影响,但与火灾隐患相比,已对地震,风和洪水等极端载荷事件对桥梁的影响进行了重要研究。为了弥补这一知识鸿沟,在碳氢化合物火力和模拟的AASHTO活荷载的共同作用下,对全尺寸单跨预应力混凝土桥梁进行了测试。上层建筑由三个标准工字梁,预制甲板面板,现浇甲板和弹性轴承垫组成。一根大梁用碳纤维增强聚合物(CFRP)包裹,另一根用CFRP并喷涂防火材料,第三条没有CFRP或防火材料。测试进行了60分钟,防火温度高达1131摄氏度。发现防火有助于降低CFRP与混凝土界面的温度,从而保持CFRP粘结(混凝土基材)的完整性和预应力钢。如果没有防火措施,CFRP会迅速脱落,从而导致混凝土显着剥落并损失一些预应力股。进行防火测试后,将甲板切开,并在实验室的三点弯曲设置下对每个大梁进行测试,以确定其残余强度。没有防火的CFRP大梁损失了其设计抗弯能力的59%,而没有防火的CFRP大梁却没有任何降低。

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