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Effect of circumferential sealant joints and metal supporting frames on the buckling behavior of glass panels subjected to in-plane shear loads

机译:周向密封胶接头和金属支撑框架对平面内剪切载荷作用下玻璃板屈曲行为的影响

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摘要

In this paper, the structural stability of adhesively supported glass panels subjected to in-plane shear walls is assessed by means of extended finite-element (FE) investigations and analytical methods. Based on past research projects, careful consideration is given to glass panels with two-side circumferential linear adhesive connections and supporting metal frames, which are frequently used in practice for facades and building envelopes. In accordance with earlier research contributions, the effects deriving from adhesive connections and supporting frames of various stiffnesses are highlighted in terms of expected Euler’s critical shear loads and ultimate buckling resistances. Further extended nonlinear incremental studies are then discussed, and the major structural effects deriving from the interaction between the glass sheets, the circumferential adhesive joints, the supporting metal frames and additional small steel supports often used to transfer the maximum compressive reaction forces to the structural background are properly highlighted. As shown, compared to classical theories of ideally simply supported or fully clamped panels under the action of in-plane shear loads, the actual boundary conditions should be carefully taken into account. At the same time, the effects deriving from multiple combinations of several geometrical and mechanical aspects should be properly assessed. In the specific case, numerically derived buckling coefficients and fitting curves of practical use are proposed for an appropriate calculation of the expected Euler’s critical load for the studied configurations. Finally, the application and validity of a normalized Eurocode-based design buckling curve recalled from literature is also assessed. Based on the rather good agreement between FE and analytical calculations, the same approach is then proposed as practical and suitable design method for the studied loading and boundary conditions.
机译:在本文中,通过扩展有限元(FE)研究和分析方法评估了承受平面内剪力墙的粘合支撑玻璃面板的结构稳定性。根据过去的研究项目,对带有两侧周向线性粘合剂连接和支撑金属框架的玻璃面板进行了仔细考虑,这些玻璃面板在实践中经常用于外墙和建筑围护结构。根据早期的研究成果,根据预期的欧拉临界剪切载荷和极限屈曲强度,强调了胶粘剂连接和各种刚度的支撑框架所产生的影响。然后讨论了进一步扩展的非线性增量研究,主要的结构效果是由玻璃板,周向胶接点,支撑金属框架和附加的小钢支撑之间的相互作用而产生的,这些相互作用通常用于将最大压缩反作用力传递给结构背景正确突出显示。如图所示,与在平面内剪切载荷作用下理想地简单支撑或完全夹紧的面板的经典理论相比,应仔细考虑实际边界条件。同时,应适当评估几个几何和机械方面的多种组合所产生的效果。在特定情况下,提出了数值计算的屈曲系数和实际使用的拟合曲线,用于对所研究构型的预期欧拉临界载荷进行适当计算。最后,还评估了从文献中忆及的基于标准化欧洲规范的设计屈曲曲线的应用和有效性。基于有限元与解析计算之间相当好的一致性,然后针对研究的荷载和边界条件,提出了相同的方法作为实用且合适的设计方法。

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  • 作者

    Amadio Claudio; Bedon Chiara;

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  • 年度 2015
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  • 原文格式 PDF
  • 正文语种 eng
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