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Analytical solutions for rollover instability of concrete beams on elastomeric bearing pads

机译:弹性支承垫上混凝土梁翻滚不稳定性的解析解

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摘要

During construction, concrete beams are susceptible to rollover failure when unbraced and supported by elastomeric bearing pads. This failure occurs mainly due to the presence of initial horizontal curvature of the beam and the low torsional restraint provided by the supports. Besides, the uncertainties and variability about modulus of elasticity, initial imperfections and supports conditions can increase the risk of collapse of such elements. In contrast, there is a lack in analytical equations to predict the few published experimental results in this field that present different loading conditions from self-weight. Also, another lack is about recommendations of required pad stiffness for beam stability during construction. Thus, the current research focuses on presenting closed-form analytical solutions to predict the rollover load of beams supported by bearing pads and subjected to different loading conditions. Furthermore, this paper presents recommendations about required pad stiffness for the standard AASHTO bulb-tee beams subjected to self-weight. The variational Rayleigh-Ritz method enabled to determine the analytical solutions, and furthermore, the classical Southwell equation allowed to consider the effect of initial sweep on the beam stability. With this, the required pad stiffness was determined through Monte Carlo simulations. The proposed equations accurately predicted the experimental results available in the literature. The analytical and experimental rollover loads differed by 4.37% and 13.6% for the two studied cases. Besides, Monte Carlo simulations were performed to determine tolerances for initial imperfections.
机译:在施工期间,混凝土梁在不受支撑并由弹性轴承垫支撑时容易发生翻倒破坏。发生这种故障的主要原因是梁的初始水平曲率的存在以及支撑件提供的低扭转约束力。此外,关于弹性模量,初始缺陷和支撑条件的不确定性和可变性会增加此类元件坍塌的风险。相反,缺乏分析方程式来预测该领域中少数已发表的实验结果,这些实验结果显示了与自重不同的加载条件。同样,另一个不足是关于在施工期间梁稳定所需的垫刚度的建议。因此,当前的研究重点是提出封闭形式的分析解决方案,以预测由轴承瓦支撑并承受不同载荷条件的梁的侧翻载荷。此外,本文提出了有关承受自重的标准AASHTO球泡三通梁所需的垫块刚度的建议。可变的Rayleigh-Ritz方法可以确定解析解,此外,经典的Southwell方程允许考虑初始扫描对光束稳定性的影响。这样,所需的垫块刚度就可以通过Monte Carlo模拟确定。提出的方程式准确地预测了文献中可获得的实验结果。在两个研究案例中,分析和实验侧翻载荷相差4.37%和13.6%。此外,进行了蒙特卡洛模拟以确定初始缺陷的公差。

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