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EFFECT OF INTERFACIAL BOND ON PERFORMANCE OF NATURAL FLAX FRP CONFINED COIR FIBRE REINFORCED CONCRETE

机译:界面结合剂对天然亚麻FRP约束COIR纤维增强混凝土性能的影响

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Extensive studies showed that the effect of glass/carbon FRP and concrete interfacial bond has an effect on the structural performance of FRP confined concrete structure since the load transfer from FRP to concrete is via the interface.This study experimentally investigated the effect of interfacial bond between flax FRP(FFRP)tubeand coir fibre reinforced concrete(CFRC)on the axial compressive and flexural behavior of FFRP tube encased CFRC(FFRPCFRC)composite structure.The types of FFRP/CFRC interfacial conditions considered were that the CFRC was confined by(i)normal FFRP tube and(ii)FFRP tube with FFRP/CFRC interlocking,which were termed as normally and interlocked bonded conditions between FFRP and CFRC,respectively.Experimental results show that in both types of bond conditions,the confinement provided by the outer FFRP tube lead to a remarkable increase in ultimate compressive strength,ultimate axial strain and energy absorption capabilities of the concrete.However,the ultimate compressive strength and strain of normal bonded specimen is larger than those in interlocked specimen.The use of interlocking did not reduce the lateral load carrying capability compared with the normal bonded specimen but eliminated the slippage between FFRP and CFRC effectively.
机译:大量研究表明,玻璃纤维/碳纤维增强材料与混凝土界面粘结的影响对FRP约束混凝土结构的结构性能有影响,因为从玻璃纤维增​​强混凝土到混凝土的载荷是通过界面传递的。亚麻FRP(FFRP)管和椰壳纤维混凝土(CFRC)对FFRP管包裹CFRC(FFRPCFRC)复合结构的轴向压缩和弯曲行为的影响。考虑到FFRP / CFRC界面条件的类型是CFRC受(i)限制普通FFRP管和(ii)带有FFRP / CFRC互锁的FFRP管分别被称为FFRP和CFRC之间的正常和互锁的粘结条件。实验结果表明,在两种粘结条件下,外部FFRP管都提供了限制导致极限抗压强度的显着提高,最终的轴向应变和混凝土的能量吸收能力。普通粘结试样的抗压强度和应变大于互锁试样。与普通粘结试样相比,互锁不会降低侧向承载能力,但有效地消除了FFRP和CFRC之间的滑动。

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