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Bond strength of reinforcing bars in hybrid fiber-reinforced SCC with binary, ternary and quaternary blends of steel and PVA fibers

机译:具有二元,三元和钢丝纤维的杂交纤维增强SCC中加固棒的粘合强度

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In this study, the effect of inclusion of single fiber and binary, ternary and quaternary fiber hybridization on the bond performance of high strength self-compacting concrete (SCC) was investigated and 12 beam specimens having lap-spliced reinforcing bars in tension at the mid-span were designed. Four different fibers were used with different hybridizations. Fiber reinforced concrete beams demonstrated higher failure loads with a greater number of cracks. Especially the specimens with ternary fiber hybridization showed the best performance that the ultimate load resistance was 60% higher than that of the specimen without fiber. After splitting failure, the beam specimens with binary hybridization of macro steel fiber and polyvinyl-alcohol (PVA) fiber and also, the specimens with ternary hybridization of macro steel fiber, micro steel fiber with 13 mm in length (OL 13/.16) and PVA fiber showed a gradually drop in performance with increasing deflections. Besides, results indicate that the least improvement in bond strength was observed in the specimen having quaternary fiber hybridization of macro steel fiber, OL 13/.16 and micro steel fiber with 6 mm in length (OL 6/.16) and PVA fiber. The bond strength results were also compared with the ones calculated from the existing prediction equations. It was found that Zuo and Darwin and Esfahani and Rangan equations gave better results than the equations of Orangun et al. and ACI 318 on the hybrid fiber reinforced SCC. Based on the results, it was indicated that in these proposals, a new parameter was necessary for the fiber content so in this study, a new empirical equation was derived by using fiber reinforced index for fiber reinforced SCC. The proposed equation gave better estimation in the specimens with single fiber and binary and ternary fiber hybridization.
机译:在该研究中,研究了包含单纤维和二元,三元和季纤维杂交对高强度自压实混凝土(SCC)的粘合性能的影响,并在中间的张力下具有12个梁样本,其张力张力张力-Span被设计。使用四种不同的纤维与不同的杂交。纤维钢筋混凝土梁显示出更高的裂缝负荷载荷。特别是具有三元纤维杂交的标本表明,最终负载性的最佳性能比没有纤维的标本高出60%。分裂失败后,宏钢纤维和聚乙烯醇(PVA)纤维二元杂交的光束样本以及宏钢纤维三元杂交的标本,微钢纤维长度为13mm(OL 13 /.16)并且PVA纤维随着越来越多的偏转而逐渐下降。此外,结果表明,在具有6mm的宏钢纤维,OL 13 /.16和微钢纤维的季纤维杂交中观察到粘合强度的最小改善,长度为6mm(OL 6 /.16)和PVA纤维。还将粘合强度结果与由现有预测方程计算的粘合强度结果进行比较。结果发现,Zuo和Darwin和Esfahani和rangan方程比Orangun等人的等式产生了更好的结果。和杂交纤维增强SCC上的ACI 318。基于结果,表明在这些提案中,在本研究中,纤维含量需要新的参数,通过使用纤维增强SCC的纤维增强指数来得出新的经验方程。所提出的等式在具有单纤维和二元和三元纤维杂交的标本中获得了更好的估计。

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