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Post-tensioned girders with low amounts of shear reinforcement:Shear strength and influence of flanges

机译:剪力较小的后张大梁:抗剪强度和法兰的影响

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摘要

Assessing the strength of existing structures has become a major issue for structural engineers. Such analyses are often performed after changes of use of the structure or due to new design codes requirements. This is particularly relevant with respect to the shear strength of post-tensioned concrete bridges. Such structures were often designed in the past with fairly low amounts of shear reinforcement and do not comply with current code requirements in terms of amount of transverse reinforcement or shear strength. However, it should be noted that codes of practice cover the design of a wide range of cases and sometimes neglect some load-carrying actions or may be too conservative for assessing others. Therefore, the use of more refined models may potentially increase the predicted shear resistance and avoid unnecessary strengthening of existing structures. In this paper, an investigation on the behaviour of post-tensioned beams with low amounts of shear reinforcement and flanges is presented. First, the results of an experimental programme on twelve reinforced concrete beams (10.0 m long, 0.78 m high) failing in shear are described. The test series is used to analyse the most significant parameters influencing the shear strength and the failure modes. Its results are compared to a number of design codes showing different levels of accuracy. The test results are finally compared to the results of analyses based on elastic-plastic stress fields. This technique shows excellent results when compared to the test results and allows investigating on the role of the various shear-carrying actions, of the prestressing level and on the transverse reinforcement amount with respect to the various potential failure modes.
机译:评估现有结构的强度已成为结构工程师的主要问题。此类分析通常在更改结构用途后或由于新的设计规范要求而进行。这对于后张拉的混凝土桥梁的抗剪强度特别重要。这样的结构在过去通常被设计为具有相当低的抗剪增强量,并且在横向增强或抗剪强度方面不符合当前的规范要求。但是,应该指出的是,实践准则涵盖了各种情况的设计,有时会忽略某些负载行为,或者对于评估其他行为可能过于保守。因此,使用更精确的模型可能会增加预测的抗剪强度,并避免对现有结构进行不必要的加固。在本文中,对具有少量抗剪钢筋和翼缘的后张梁的性能进行了研究。首先,描述了对十二个钢筋混凝土梁(长10.0 m,高0.78 m)没有剪切的实验程序的结果。该测试系列用于分析影响剪切强度和破坏模式的最重要参数。将其结果与显示不同精度等级的许多设计规范进行比较。最后将测试结果与基于弹塑性应力场的分析结果进行比较。与测试结果相比,该技术显示出优异的结果,并且可以研究各种剪力作用,预应力水平以及关于各种潜在破坏模式的横向加固量的作用。

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