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Structural assessment and lateral–torsional buckling design of glass beams restrained by continuous sealant joints

机译:连续密封胶接缝约束的玻璃梁的结构评估和横向扭转屈曲设计

摘要

Glass is largely used in practice as a structural material, e.g. as beam and plate elements able to carry loads. Their structural interaction is often provided by mechanical connections, although recent trends are moving toward the minimization of metal components and the primary involvement of adhesives or silicone structural joints working as partially rigid continuous restraints.ududIn this work, the lateral–torsional buckling (LTB) behavior of glass beams laterally restrained by continuous silicone joints is assessed. Based on earlier contributions of literature and extended parametric Finite-Element (FE) numerical investigations, closed-form solutions are suggested for the estimation of their Euler’s critical buckling moment under various loading conditions. Finally, by means of more detailed incremental nonlinear analyses, their global LTB response is also investigated, to assess their sensitivity to initial geometrical imperfections as well as their prevalent LTB failure mechanism. In conclusion, a generalized buckling design curve able to account for the structural contribution provided by structural silicone joints is proposed for a rational and conservative LTB verification.
机译:实际上,玻璃主要用作结构材料,例如玻璃。作为能够承受载荷的梁和板单元。它们的结构相互作用通常是通过机械连接来提供的,尽管最近的趋势正在朝着金属部件的最小化和粘合剂或硅酮结构接头的主要作用,它们起部分刚性连续约束的作用。 ud ud在这项工作中,横向-扭转屈曲评估了连续硅酮接缝横向约束的玻璃梁的(LTB)行为。根据文献的早期贡献和扩展的参数化有限元(FE)数值研究,建议采用闭式解来估计其在各种载荷条件下的欧拉临界屈曲力矩。最后,通过更详细的增量非线性分析,还研究了它们的整体LTB响应,以评估它们对初始几何缺陷的敏感性以及普遍的LTB失效机理。总之,为合理和保守的LTB验证提出了一种能够解释结构硅树脂接头提供的结构影响的广义屈曲设计曲线。

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