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Flexural-torsional buckling: Experimental analysis of laminated glass elements

机译:弯扭屈曲:夹层玻璃元件的实验分析

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摘要

Buckling failure is a common condition of collapse for structural glass elements typically characterized by high slenderness ratios. Due to a combination of multiple mechanical and geometrical aspects, the effective buckling resistance of glass load-carrying elements is complex to predict, especially in presence of laminated cross sections or interacting applied loads. In this work, buckling experiments are performed on laminated glass beam-columns having rectangular cross section and subjected to combined uniaxial compression and bending. Extended numerical and analytical comparisons with test results are performed. As shown, a general good agreement is found between experimental results and existing prediction models.
机译:屈曲破坏是通常以高细长比为特征的结构玻璃元件坍塌的常见条件。由于多种机械和几何方面的结合,玻璃负载承载元件的有效抗屈曲性很难预测,尤其是在存在层压横截面或相互作用的施加负载的情况下。在这项工作中,对具有矩形横截面并经过组合的单轴压缩和弯曲的夹层玻璃梁柱进行了屈曲实验。与测试结果进行了扩展的数值和分析比较。如图所示,在实验结果和现有的预测模型之间发现了总体良好的一致性。

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