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首页> 外文期刊>Engineering Structures >Modeling of the structural behavior of multilayer laminated glass beams: Flexural and torsional stiffness and lateral-torsional buckling
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Modeling of the structural behavior of multilayer laminated glass beams: Flexural and torsional stiffness and lateral-torsional buckling

机译:多层夹层玻璃梁的结构行为建模:弯曲和扭转刚度和横向扭转屈曲

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摘要

In recent years several investigations were performed about the behavior of laminated structural glass elements, namely in terms of their flexural and torsional stiffness, with the lateral-torsional buckling of beams being one of the most relevant and complex topics. Various analytical formulations were proposed to describe the equivalent stiffness of laminated elements; however, none covers more than three layers of glass in a comprehensive and unified manner, and those that exist are not consensual. This work proposes a new formulation, based on sandwich theory, which provides equivalent results to previous formulations in a limited set of conditions, but that is also able to characterize the behavior of simply supported laminated glass columns and beams up to five layers, subjected to compressive axial loads, mid-span loads, uniformly distributed loads, four-point bending, pure bending or torsion. The fundamentals of the formulation presented in this paper allow it to be extended to a larger number of layers and to different load and support conditions. The proposed formulation is assessed by means of a parametric study based on the comparison with numerical results retrieved from finite element simulations, in order to assess the range of validity of each expression. Two analytical approaches for the lateral-torsional buckling problem are studied in detail, with their fundamentals being explained. Another formulation, proposed in Australian Standard AS 1288, is also addressed. An experimental assessment of the work developed is achieved by comparing the results from flexural tests available in the literature with analytical and numerical predictions. (C) 2016 Elsevier Ltd. All rights reserved.
机译:近年来,对夹层结构玻璃元件的性能进行了几项研究,即在挠曲和扭转刚度方面,梁的横向扭转屈曲是最相关和最复杂的主题之一。提出了各种分析公式来描述叠层单元的等效刚度。但是,没有一个能够全面,统一地覆盖三层以上的玻璃,并且存在的玻璃层并非自愿的。这项工作提出了一种基于三明治理论的新配方,该配方在有限的一组条件下可提供与以前的配方相同的结果,但它也能够表征简单支撑的夹层玻璃柱和多达五层的梁的性能。压缩轴向载荷,中跨载荷,均匀分布载荷,四点弯曲,纯弯曲或扭转。本文介绍的配方的基本原理允许将其扩展到更多的层以及不同的载荷和支撑条件。通过与基于有限元模拟的数值结果进行比较的参数研究,对所提出的公式进行评估,以评估每个表达式的有效性范围。详细研究了横向扭转屈曲问题的两种分析方法,并解释了其基本原理。还解决了澳大利亚标准AS 1288中提出的另一种提法。通过比较文献中提供的弯曲试验的结果与分析和数值预测,可以对所开发的工作进行实验评估。 (C)2016 Elsevier Ltd.保留所有权利。

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