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Mechanical and environmental loading of concrete beams strengthened with epoxy and polyurethane matrix carbon fiber laminates

机译:环氧和聚氨酯基碳纤维层压板增强混凝土梁的机械和环境载荷

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Externally-bonded carbon fiber reinforced polymer (CHRP) sheets have become a common material used to retrofit damaged or deteriorated concrete flexura! members. This study examines the effects different combinations of cyclic loading, controlled thermal cycling, uncontrolled outdoor environmental exposure, and monotonic loading until failure have on the performance and failure modes of reinforced concrete beams strengthened with externally-bonded CFRP sheets. Twelve large-scale (4.88 m in length) doubly reinforced concrete beams were strengthened with externally-bonded CFRP sheets and tested. Three different unidirectional CFRP strengthening systems were considered; two systems utilizing carbon fiber sheets and epoxy matrices, and a system utilizing pre-impregnated carbon fiber with a water activated polyurethane matrix. Epoxy matrices are commonly used, but polyurethane composite systems have not been rigorously investigated for infrastructure use. Results indicate that moderate cyclic loading and environmental conditioning do not have a significant effect on flexural capacity of strengthened members, but the quality of the field lay-up does have an influence. The performance of the polyurethane system was consistent and insensitive to all loading combinations.
机译:外部粘结的碳纤维增强聚合物(CHRP)板已经成为用于加固受损或劣化的混凝土挠曲的常用材料!成员。这项研究研究了循环荷载,受控热循环,不受控制的户外环境暴露和单调荷载的不同组合的影响,直到破坏对用外部粘结CFRP板加固的钢筋混凝土梁的性能和破坏模式产生影响。用外部粘结的CFRP板加固了十二个大型(长度为4.88 m)双向加筋混凝土梁,并进行了测试。考虑了三种不同的单向CFRP加固系统;两个系统使用碳纤维片材和环氧树脂基质,以及一个系统使用预浸碳纤维和水活化聚氨酯基体。通常使用环氧基质,但是尚未针对基础设施用途对聚氨酯复合体系进行严格的研究。结果表明,适度的循环载荷和环境条件对加强构件的挠曲能力没有显着影响,但野外叠置的质量确实有影响。聚氨酯体系的性能是一致的,并且对所有负载组合均不敏感。

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