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Shear strength at the interface of precast bridge concrete decks and girders subjected to cyclic loading with varying speeds

机译:预制桥梁混凝土桥面和大梁界面承受循环速度变化的抗剪强度

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Since its inception, the full-depth precast concrete deck panel system has attracted the attention of the bridge construction community. This alternative system constitutes a cost-effective solution that solves some of the issues associated with the traditional cast-in-place concrete decks. To ensure an adequate composite action, shear connectors are required at the interface deck-girders. Previous studies dealt mostly with the shear behavior of the interface between precast girders and cast-in place decks. Studies dealing with the alternative system are limited and were based on static push-off tests. In this paper, 12 cyclic loading tests were carried out to understand the cyclic behavior of the interface deck-girder of the alternative system and estimate its shear strength. Test variables included the number of shear connectors and speed of loading (i.e., loading rate). We observed that the common mode of failure of the interface is due to debonding of the deck from the girder. Test results showed that the shear strength increases with the number of shear connectors but decreases with the speed of loading. Moreover, the test results of specimens without shear connectors were used to estimate the cohesion factor at different loading speeds. Comparison between AASHTO LRFD code provisions and test results showed that the code provides an acceptable estimate of the shear strength provided that the cohesion factor is accurate.
机译:自成立以来,全深度的预制混凝土面板系统已引起桥梁施工界的关注。该替代系统构成了一种经济高效的解决方案,解决了与传统现浇混凝土面板相关的一些问题。为了确保足够的复合作用,在界面甲板大梁处需要剪切连接器。先前的研究主要涉及预制大梁与现浇面板之间的界面的剪切行为。关于替代系统的研究是有限的,并且是基于静态下推测试的。在本文中,进行了12次循环荷载试验,以了解替代系统的界面甲板梁的循环行为并估算其抗剪强度。测试变量包括剪切连接器的数量和加载速度(即加载速率)。我们观察到,界面失效的常见模式是由于甲板与大梁的剥离所致。试验结果表明,剪切强度随剪切连接器数量的增加而增加,但随加载速度的降低而减小。此外,没有剪切连接器的试样的测试结果被用来估计在不同加载速度下的内聚因子。 AASHTO LRFD规范规定与测试结果之间的比较表明,只要内聚因子准确,该规范就可以提供对剪切强度的可接受的估计。

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