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Shear glass panels with point-fixed mechanical connections: Finite-Element numerical investigation and buckling design recommendations

机译:带定点机械连接的剪力玻璃面板:有限元数值研究和屈曲设计建议

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In the paper, an extensive Finite-Element (FE) numerical study is carried out on glass shear walls with point mechanical connectors. Based on calibration of FE models to experimental and numerical data of literature, both linear bifurcation analyses (lba) and incremental nonlinear static simulations (inls) are performed, in order to assess the shear budding response of the examined structural panels. Analytical fitting curves are proposed for the shear buckling reduction factor, so that the Euler's critical load associated to a given number of point connectors could be correctly calculated. Based on extensive inls analyses, the buckling failure mechanism is emphasised for a wide set of geometrical configurations of practical interest. Finally, simple buckling design considerations derived from earlier research projects are extended to glass shear walls with point mechanical connectors. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在本文中,对具有点机械连接器的玻璃剪力墙进行了广泛的有限元(FE)数值研究。基于有限元模型对文献的实验数据和数值数据的校准,进行了线性分叉分析(lba)和增量非线性静态模拟(inls),以评估所检查结构板的剪力出芽响应。针对剪切屈曲减小因子提出了分析拟合曲线,以便可以正确计算与给定数量的点连接器相关的欧拉临界载荷。基于广泛的inls分析,屈曲破坏机制被强调为一系列具有实际意义的几何构型。最后,从早期研究项目中得出的简单屈曲设计注意事项已扩展到具有点机械连接器的玻璃剪力墙。 (C)2016 Elsevier Ltd.保留所有权利。

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