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Bond performance of ribbed steel reinforcing bars in vibrated and self-compacting concrete

机译:带肋钢筋在振动和自密实混凝土中的粘结性能

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摘要

The bond between steel reinforcing bars and concrete plays a vital role in the effective performance of reinforced concrete as a composite member. Failure of this bond can lead to catastrophic structural failure of buildings and infrastructure. Factors influencing the steel-concrete bond include concrete strength, bar properties such as embedment length, ribs and diameter, and confinement in concrete. This paper reports on an experimental study to evaluate the bond performance of ribbed reinforcing bars in self-compacting concrete and to compare it with that in normal vibrated concrete. Different characteristic concrete strengths (20, 40 and 60 MPa), bar diameters (12 mm and 16 mm) and embedment lengths (2.5 and 5 times bar diameter and full depth of specimen) were used. The bond strength measurements were based on direct pull-out tests in accordance with IS 2770-1 and a comparison was made with the test procedure specified by Rilem TC 9-RC. The experimental bond stress values obtained were compared with those obtained from various models available in the literature. An analytical model was then proposed to predict the bond strength of ribbed reinforcing bars in both vibrated and self-compacting concretes.
机译:钢筋与混凝土之间的粘结在钢筋混凝土作为复合构件的有效性能中起着至关重要的作用。这种结合的失败会导致建筑物和基础设施的灾难性结构失败。影响钢-混凝土粘结的因素包括混凝土强度,钢筋性能(例如埋入长度,肋骨和直径)以及混凝土中的约束。本文进行了一项实验研究,以评估带肋钢筋在自密实混凝土中的粘结性能,并将其与普通振动混凝土的粘结性能进行比较。使用了不同的特性混凝土强度(20、40和60 MPa),钢筋直径(12 mm和16 mm)和包埋长度(钢筋直径和试样的整个深度的2.5倍和5倍)。粘合强度的测量是根据IS 2770-1进行的直接拉拔测试,并与Rilem TC 9-RC指定的测试程序进行了比较。将获得的实验粘结应力值与从文献中可用的各种模型获得的粘结应力值进行比较。然后提出了一种分析模型来预测振动和自密实混凝土中带肋钢筋的粘结强度。

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