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Bond Behavior of Deformed Bars in Self-Compacting Lightweight Aggregate Concrete Subjected to Lateral Tensions

机译:变形条在自压式轻质骨料混凝土中变形条的粘合行为对侧张张力进行

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摘要

The bond performance of reinforcing bars to concrete, an indispensable factor in designing reinforced concrete structures, is deeply influenced by the stress states of surrounding concrete. In recent decades, although self-compacting lightweight aggregate concrete (SCLC) has gained popularity in architectural engineering, the bond stress-slip relationship of deformed bars in SCLC under lateral tension remains unknown. In this study, 179 pullout tests were performed to examine the local bond stress-slip behavior of deformed bars in SCLC. In addition, the effects of various parameters on the ultimate bond strength and the slip at the ultimate bond stress, as well as the residual bond strength, were analyzed quantitatively. The results showed that both the bond strength and slip at the ultimate stress decrease with the increase of lateral tension regardless of whether it is in pull-out or splitting failure mode. In addition, an empirical formula was proposed that gives a reasonable prediction of the measured bond stress-slip curve of the SCLC.
机译:钢筋混凝土的粘合性能,设计钢筋混凝土结构的不可或缺的因素,受到周围混凝土的应力状态的深受影响。近几十年来,虽然自体压实轻质聚集体混凝土(SCLC)在建筑工程中获得了普及,但横向张力下SCLC中变形棒的粘合应力滑移关系仍然未知。在本研究中,进行了179次拉出试验,以检查SCLC中变形棒的局部粘结应力滑动行为。此外,定量分析各种参数对极限粘合强度和最终粘结应力下的滑动的影响,以及残留粘合强度。结果表明,无论其是否处于拉出或分裂故障模式,粘合强度和滑动都随着横向张力的增加而降低。另外,提出了一种经验公式,其给出了SCLC的测量键应力滑动曲线的合理预测。

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