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Bond behavior between basalt fibres reinforced polymer sheets and steel fibres reinforced concrete

机译:玄武岩纤维增强聚合物板与钢纤维增强混凝土之间的粘结性能

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Bonding behavior between FRP and Steel fibre reinforced concrete is not well studied. This study experimentally investigates the interfacial bond behavior between basalt fibre reinforced polymer sheet (BFRP) and steel fibre reinforced concrete (SFRC). Short steel fibres with four volume fractions were used to investigate the interfacial bond behavior of BFRP-SFRC as the mechanical properties of the concrete substrate (i.e. compressive strength and tensile strength) can be improved by adding steel fibres. The effects of volume fraction on the bond strength, effective bond length, local slip at the peak shear stress, and interfacial bond-slip relationship are evaluated and discussed. The experimental results showed that the debonding process becomes more ductile as the debonding plateau in the load and displacement curves has been significantly extended. Findings from the present tests show that the specimens with steel fibres of 0.25%, 0.50% and 1.0% experienced significant increase in the peak interfacial shear stress up to 31%, 53%, and 76% over the control specimen without steel fibres, respectively. In addition, the analytical bond strength models and interfacial bond-slip models, incorporating the effect of short steel fibres, are proposed.
机译:FRP与钢纤维混凝土之间的粘结性能尚未得到很好的研究。这项研究实验研究玄武岩纤维增强聚合物板(BFRP)和钢纤维增强混凝土(SFRC)之间的界面粘结行为。使用四种体积分数的短钢纤维来研究BFRP-SFRC的界面粘结行为,因为可以通过添加钢纤维来改善混凝土基材的机械性能(即抗压强度和拉伸强度)。评估并讨论了体积分数对粘结强度,有效粘结长度,峰值剪切应力下的局部滑动以及界面粘结-滑动关系的影响。实验结果表明,随着载荷和位移曲线中脱胶平台的延长,脱胶过程变得更加延展。从当前测试中发现,具有0.25%,0.50%和1.0%钢纤维的试样的峰值界面剪切应力分别比不具有钢纤维的对照试样显着增加,分别达到了31%,53%和76%。 。此外,提出了结合短钢纤维效应的分析粘结强度模型和界面粘结滑动模型。

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