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Strengthening of Reinforced Concrete Beams Using Bamboo Fiber/epoxy Composite Plates in Flexure

机译:使用竹纤维/环氧复合板在弯曲中加固钢筋混凝土梁

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Fiber reinforced polymer (FRP) is widely used in the construction industry for structural strengthening due to their outstanding mechanical properties. However, the production of synthetic fibers such as FRP is detrimental to the environment. Alternatively, natural fiber composite may be used as external strengthening material. This paper presents the potential of bamboo fiber composite plate (BFCP) to strengthen the reinforced concrete (RC) beams in flexure. The bamboo of species Dendrocalamus asper was used to produce the fiber and fiber-to-volume ratio was set at 2:5. The composite plate was fabricated by binding bamboo fibers with epoxy using a hand-lay-up method. The flexural and tensile strength of the BFCP was measured and all the beams were tested to failure under four-point bending test. It was found that BFCP exhibited a higher flexural and tensile strength compared to pure epoxy samples. Meanwhile, the RC beams strengthened using BFCP exhibited an increment of 10-12% in beam structural capacity compared to the un-strengthened beams. Bonding of BFCP in the flexure zone was able to divert the vertical cracks into diagonal at the edge of the composite plate. Findings from this work may serve as a useful guide to strengthen RC beams using a BFCP.
机译:由于其出色的机械性能,纤维增强聚合物(FRP)广泛应用于建筑工业,用于结构强化。然而,生产诸如FRP的合成纤维是有害环境。或者,天然纤维复合材料可用作外部强化材料。本文介绍了竹纤维复合板(BFCP)的潜力,以加强弯曲钢筋混凝土(RC)梁。物种Dendrocalamus asper的竹子用于产生纤维,纤维对体积比设定为2:5。通过使用手放置方法将竹纤维与环氧树脂结合来制造复合板。测量BFCP的弯曲和拉伸强度,并在四点弯曲试验下测试所有光束以发生故障。发现BFCP与纯环氧样品相比表现出更高的弯曲和拉伸强度。同时,与未加强的梁相比,使用BFCP加强的RC光束在光束结构容量中表现出10-12%的增量。 BFCP在弯曲区中的粘合能够将垂直裂缝转移到复合板边缘处的对角线上。这项工作的调查结果可以用作使用BFCP加强RC光束的有用指南。

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