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Bond behavior of GFRP and steel bars in ultra-high-performance fiber-reinforced concrete

机译:超高效纤维混凝土中GFRP和钢筋的粘合行为

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The bond behavior of glass fiber-reinforced polymer (GFRP) and steel bars embedded in ultra-high-performance fiber-reinforced concrete (UHPFRC) was investigated according to embedment length and bar diameter. Post-peak bond stress-slip softening curve of the GFRP bars was obtained, and a wedging effect was quantitatively evaluated. Test results indicated that a normalized bond strength of 5 was applicable for steel bars embedded in UHPFRC, and the development lengths of normal-and high-strength steel bars were determined to be 2 and 2.5 times the bar diameter, respectively. The GFRP bars exhibited approximately 70% lower bond strength than the steel bars, and the bond stress additionally applied by the wedging effect increased almost linearly with respect to the slip. Based on dimensionless bond stress and slip parameters, an appropriate theoretical model for the bond stress and slip relationship of steel bars in UHPFRC was suggested, and it was verified through comparison with the test data.
机译:根据嵌入长度和杆直径研究了玻璃纤维增​​强聚合物(GFRP)和钢筋的粘合行为。获得了GFRP棒的后峰粘合应力滑动软化曲线,定量评价楔入效果。测试结果表明,归一化键合强度为5的钢筋可用于嵌入UHPFRC的钢筋,并将正常和高强度钢筋的开发长度分别测定为杆直径的2和2.5倍。 GFRP条具有比钢筋的粘合强度大约70%,并且楔入效果另外施加的粘结应力几乎线性地相对于滑动施加。基于无量纲债券应力和滑移参数,提出了UHPFRC中钢筋粘结应力和滑移关系的适当理论模型,并通过与测试数据进行比较来验证。

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