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Comparison of tensile properties between natural fibres and inorganic fibres for strengthening timber structures

机译:天然纤维和无机纤维​​增强木材结构的拉伸性能比较

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Fibre-reinforced polymers (FRPs) have been successfully applied to the strengthening of reinforced concrete structures and a similar methodology is adopted by researchers in order to strengthen timber structures using synthetic fibres such as carbon, glass or aramid fibres. This paper explores the viability of using fibres from botanical sources for the reinforcement of timber structures. In this study, two natural fibre materials, namely kenaf and ramie, in combination with a polymeric matrix, are tested for their tensile properties in accordance with ASTM D 4018-99. The results indicate that kenaf fibres exhibit average ultimate tensile strength value at rupture of 750 MPa and Young’s modulus of 58 GPa. The test results also show that the corresponding parameters for ramie fibres average at 810 MPa and 36 GPa respectively. These values are closer to those of timber as opposed to analogous values for carbon and glass fibres. The strength and elastic moduli compatibility of both kenaf and ramie fibres with timber and contrast with carbon and glass fibres is further discussed in relation to the viability of using these natural fibres as reinforcement for timber.
机译:纤维增强聚合物(FRPs)已成功地用于增强钢筋混凝土结构,研究人员采用了类似的方法来使用碳纤维,玻璃纤维或芳纶纤维等合成纤维来增强木材结构。本文探讨了使用植物来源的纤维增强木材结构的可行性。在这项研究中,根据ASTM D 4018-99测试了两种天然纤维材料,即洋麻和麻,以及聚合物基体的拉伸性能。结果表明,洋麻纤维在断裂时的平均极限抗拉强度值为750 MPa,杨氏模量为58 GPa。测试结果还表明,麻纤维的相应参数分别平均为810 MPa和36 GPa。这些值更接近于木材,而不是碳和玻璃纤维的类似值。洋麻和麻纤维与木材的强度和弹性模量相容性,以及与碳纤维和玻璃纤维的对比,都与使用这些天然纤维作为木材增强材料的可行性有关。

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