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Flax Basalt E-Glass FRP and Their Hybrid FRP Strengthened Wood Beams: An Experimental Study

机译:亚麻玄武岩电子玻璃纤维增​​强玻璃纤维及其混杂的玻璃纤维增​​强木梁的实验研究

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摘要

In this study, the structural behavior of small-scale wood beams externally strengthened with various fiber strengthened polymer (FRP) composites (i.e., flax FRP (FFRP), basalt FRP (BFRP), E-glass FRP (“E” stands for electrical resistance, GFRP) and their hybrid FRP composites (HFRP) with different fiber configurations) were investigated. FRP strengthened wood specimens were tested under bending and the effects of different fiber materials, thicknesses and the layer arrangements of the FRP on the flexural behavior of strengthened wood beams were discussed. The beams strengthened with flax FRP showed a higher flexural loading capacity in comparison to the beams with basalt FRP. Flax FRP provided a comparable enhancement in the maximum load with beams strengthened with glass FRP at the same number of FRP layers. In addition, all the hybrid FRPs (i.e., a combination of flax, basalt and E-glass FRP) in this study exhibited no significant enhancement in load carrying capacity but larger maximum deflection than the single type of FRP composite. It was also found that the failure modes of FRP strengthened beams changed from tensile failure to FRP debonding as their maximum bending load increased.
机译:在这项研究中,使用各种纤维增强聚合物(FRP)复合材料(即亚麻FRP(FFRP),玄武岩FRP(BFRP),E玻璃FRP(“ E”代表电(GFRP)及其具有不同纤维构型的杂化FRP复合材料(HFRP)。在弯曲下测试了FRP加固的木试样,并讨论了不同纤维材料,厚度和FRP的层排列对加固木梁的抗弯性能的影响。与使用玄武岩FRP的梁相比,用亚麻FRP加固的梁显示出更高的挠曲承载能力。亚麻FRP在相同数量的FRP层上提供了比玻璃FRP增强的梁更大的最大载荷。此外,本研究中的所有混合FRP(即亚麻,玄武岩和E玻璃FRP的组合)均未显示出明显的承载能力增强,但最大挠度比单一类型的FRP复合材料大。还发现随着最大弯曲载荷的增加,FRP加固梁的破坏模式从拉伸破坏变为FRP剥离。

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