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Bond properties of steel and sand-coated GFRP bars in Alkali activated cement concrete

机译:碱活性水泥混凝土中钢和砂涂层GFRP棒的粘合性能

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摘要

The bond performance of glass fibre reinforced polymer (GFRP) bars and that of steel bars embedded in Alkali Activated Cement (AAC) concrete are analysed and compared using pull-out specimens. The bond failure modes, the average bond strength and the free end bond stress-slip curves are used for comparison. Tepfers' concrete ring model is used to further analyse the splitting failure in ribbed steel bar and GFRP bar specimens. The angle the bond forces make with the bar axis was calculated and used for comparing bond behaviour of ribbed steel bar and GFRP bars in AAC concrete. The results showed that bond failure mode plays a significant role in the comparison of the average bond stress of the specimens at failure. In case of pull-out failure mode, specimens with ribbed steel bars showed a higher bond strength while specimens with GFRP bars showed a higher bond stress in case of splitting failure mode. Comparison of the bond stress-slip curves of ribbed steel bars and GFRP bars depicted that the constant bond stress region at the peak is much smaller in case of GFRP bars than ribbed steel bars indicating a basic bond mechanism difference in GFRP and ribbed steel bars.
机译:分析玻璃纤维增​​强聚合物(GFRP)条的粘合性能和嵌入碱活性水泥(AAC)混凝土中的钢筋的性能,并使用拉出样品进行比较。粘合衰竭模式,平均粘合强度和自由端粘合应力滑动曲线用于比较。 TEPFERS的混凝土环模型用于进一步分析罗纹钢条和GFRP棒标本中的分裂失效。计算粘合力与杆轴制造的角度,并用于比较AAC混凝土中罗纹钢棒和GFRP棒的粘合行为。结果表明,粘合失效模式在失效时标本的平均键应力的比较中起着重要作用。在拉出失效模式的情况下,具有罗纹钢筋的样品显示出更高的粘合强度,而具有GFRP条的标本在分裂失效模式下显示出更高的粘合应力。罗纹钢条和GFRP条的粘合应力滑动曲线的比较描绘了峰值的恒定粘应应力区域在GFRP条的情况下小得多小得多,而不是罗纹钢筋,指示GFRP和肋钢筋中的基本粘合机构差。

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