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Buckling of sandwich struts with a particular application in composite multi-layer glazing

机译:用特定应用在复合多层玻璃上的特定应用弯曲

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摘要

Sandwich-like structures can significantly reduce the self-weight and size of load-bearing elements. However determining the flexural response of multi-layered sandwich structures is not a trivial task, particularly their buckling response. This study consists of novel theoretical work for extending Allen's and Southwell's buckling theories in order to develop a comprehensive model for the buckling response of multi-layered composite sandwich struts. The new model is applied here to predict the buckling of composite glazing, made of glass face sheets separated by and adhesively-bonded to inner core profiles, thereby reducing the weight and thickness of conventional glazing panels. Existing physical test data on composite glazing is currently limited to flexural responses under out-of-plane loading and no published data exists for in-plane loading. Therefore three composite glazing struts were fabricated and tested in axial compression in this study, and the test data is used to validate the new model. As expected, failure of the composite glazing struts originated at regions of high shear stress close to end supports. It was found that the critical buckling loads predicted by the new analytical model are within 4% of those obtained from Southwell plots of the experimental data. Similarly, the new model provides a very good fit to the load-deflection and the load-stress responses from the experiments. This is a significant improvement on traditional Euler-based layered or monolithic models that, for this particular application, produce an underestimation of 90% and an overestimation of 40% of the critical buckling loads, respectively, and would therefore result in uneconomic or unsafe designs, respectively.
机译:夹层状结构可以显着降低承重元件的自重和尺寸。然而,确定多层夹层结构的弯曲响应不是琐碎的任务,特别是它们的屈曲响应。本研究包括延长艾伦和南威尔屈曲理论的新型理论工作,以开发多层复合三明治支柱屈曲响应的综合模型。这里应用了新模型以预测由玻璃面板制成的复合玻璃板,由玻璃面板和粘接到内芯型材分开,从而减小了常规玻璃板的重量和厚度。对复合玻璃窗的现有物理测试数据目前限于平面外负载下的弯曲响应,并且不存在面内载荷的公开数据。因此,在本研究中,在轴向压缩中制造并测试了三个复合玻璃支柱,并且测试数据用于验证新模型。正如预期的那样,复合玻璃支柱的故障起源于高剪切应力的区域接近结束支撑。结果发现,新分析模型预测的关键屈曲负荷在实验数据的南德韦地图中的4%范围内。类似地,新模型提供了非常好的拟合载荷偏转和来自实验的负载应力响应。这是对传统的基于欧拉的分层或单片模型的显着改进,即对于这种特殊应用,分别产生90%的低估90%并分别高估40%的关键屈曲负荷,因此导致不经济或不安全的设计, 分别。

著录项

  • 来源
    《Engineering Structures》 |2021年第1期|111545.1-111545.14|共14页
  • 作者

    Pascual Carlos; Overend Mauro;

  • 作者单位

    Univ Cambridge Dept Engn Glass & Facade Technol Res Grp Trumpington St Cambridge CB2 1PZ England|Bellapart SAU Ctra Parcelaria 32 Les Preses 17178 Spain;

    Univ Cambridge Dept Engn Glass & Facade Technol Res Grp Trumpington St Cambridge CB2 1PZ England|Delft Univ Technol Dept Architectural Engn Technol Struct Design & Mech Julianalaan 134 NL-2628 BL Delft Netherlands;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Adhesive connection; Analytical modelling; Composite glazing strut; Critical buckling load; Sandwich structure;

    机译:粘合剂连接;分析模型;复合玻璃支柱;关键屈曲负荷;三明治结构;
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