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首页> 外文期刊>Journal of Reinforced Plastics and Composites >Analysis of influence factors on interfacial bond between BFRP bars and seawater sea-sand concrete
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Analysis of influence factors on interfacial bond between BFRP bars and seawater sea-sand concrete

机译:BFRP棒与海水海砂混凝土界面互补影响因素分析

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In this paper,the influences of parameters such as the bond length,surface textures of reinforcement,reinforcement type and stirrups restraint were considered. Pull-out failure,splitting failure and splitting-pullout failure modes were observed during the test. The slip at the free end always lagged behind the slip at the loading end and the bond-slip curve of ribbed basalt fiber reinforced polymer(BFRP)bars included the micro-slip stage,slip stage,descent stage,and residual stage. Reducing the bond length and using ribbed-sand coated bars were beneficial to improve the bond performance. Increasing the bond length from 2.5d to 5d reduced the bond strength by 49.2%. The application of ribbed-sand coated. bars instead of plain bars increased the bond strength by 1202.3%. The difference in bond strength between steel bars,BFRP bars and glass fiber reinforced polymer(GFRP)bars was small and the bond strengths of the three were much greater than that of carbon fiber reinforced polymer(CFRP)bars. This was mainly attributed to the different rib forms of the bars. The application of stirrups increased the bond strength by 11.5%,which indicated that the stirrup restraints can improve the bond behavior to a certain extent. Besides,the analysis of the bond-slip curve based on the energy perspective was consistent with test results.
机译:本文考虑了粘结长度、钢筋表面结构、钢筋类型和箍筋约束等参数的影响。试验过程中观察到拉拔失效、劈裂失效和劈裂拉拔失效模式。自由端的滑移总是滞后于加载端的滑移,带肋玄武岩纤维增强聚合物(BFRP)筋的粘结滑移曲线包括微滑移阶段、滑移阶段、下降阶段和残余阶段。减少粘结长度和使用带肋砂涂层钢筋有利于提高粘结性能。将粘结长度从2.5d增加到5d,粘结强度降低49.2%。加肋砂涂层的应用。钢筋代替普通钢筋使粘结强度提高了1202.3%。钢筋、BFRP钢筋和玻璃纤维增强聚合物(GFRP)钢筋之间的粘结强度差异较小,三者的粘结强度远大于碳纤维增强聚合物(CFRP)钢筋。这主要归因于钢筋的不同肋形式。箍筋的应用使粘结强度提高了11.5%,表明箍筋约束可以在一定程度上改善粘结性能。此外,基于能量观点的粘结滑移曲线分析与试验结果一致。

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