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首页> 外文期刊>Composites >Resistance of interfacial debonding failure of GFRP bars embedded in concrete reinforced with structural fibers under cycling loads
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Resistance of interfacial debonding failure of GFRP bars embedded in concrete reinforced with structural fibers under cycling loads

机译:GFRP筋在循环荷载下埋入结构纤维增强混凝土中的界面剥离破坏阻力

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摘要

GFRP rebars with different surface treatments such as helical wrapping and sand coating were evaluated under cyclic loads. The pull-out specimens were made from the addition of structural fibers (hooked end steel, PP, PVA fibers) with 1% of fiber volume fraction in a concrete matrix with expected change in interfacial bonding property as well as ductility improvement after first cracking. The experimental results were analyzed in terms of bond stress-slip curve, bond strength ratio, and energy dissipation. Severe failures in the interfacial layers of the GFRP rebars at the resin-bar fiber interface was observed as cycling loads increased. The addition of structural fibers to concrete generally showed significant changes for debonding failure mechanism since the strong bonding resulted in reduced energy dissipation as well as a sharp increase of load in the bond stress-slip curve. For the GFRP rebars, wedge effects from crushed or cracked particles due to repeated damage in the interfacial debonding zone affected the low dissipated energy. Abrupt pull-out bar failure was represented. The effect of fibers in the interfacial bonding layer confirmed that resistance of steel rebar to cycling debonding failures from rebar types showed the best performance. In particular, the addition of hooked steel fibers indicated the best performance regardless of rebar types.
机译:在循环载荷下评估了具有不同表面处理(例如螺旋缠绕和砂涂)的GFRP钢筋。拉伸试样是通过在混凝土基质中添加纤维体积分数为1%的结构纤维(钩端钢,PP,PVA纤维)制成的,具有预期的界面粘结性能变化以及首次开裂后的延展性提高。从粘结应力-滑移曲线,粘结强度比和能量耗散方面分析了实验结果。随着循环载荷的增加,在树脂-棒纤维界面处的GFRP钢筋的界面层出现了严重破坏。在混凝土中添加结构纤维通常会导致脱粘破坏机理发生重大变化,因为强粘结会降低能耗,并且粘结应力-滑移曲线的载荷会急剧增加。对于GFRP钢筋,由于界面脱胶区的反复损坏而导致的碎裂或破裂颗粒产生的楔形效应影响了低耗能。出现了突然的拉杆故障。纤维在界面粘结层中的作用证实,钢筋对来自钢筋类型的循环脱胶失败的抵抗表现出最佳性能。特别是,无论钢筋类型如何,添加钩状钢纤维均显示出最佳性能。

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