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Design of profiled sandwich panels subject to local buckling effects

机译:型夹层面板的设计局限性屈曲效应

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Profiled sandwich panels subjected to local buckling failures are designed using conventional effective width principles included in the current design documents. However, a recent study of foam-supported thin steel plates using laboratory experiments and numerical analyses showed that conventional effective width principles cannot be used for plate elements with very high width to thickness (b/t) ratios. A modified design rule has been developed based on the results from experiments and numerical analyses. In this study, a series of full-scale experiments on profiled sandwich panels subjected to wind pressure loading were conducted to investigate the accuracy of the new design rule. Experimental results were compared with predictions from both the current and modified design rules. The comparison confirmed that the new improved design rule can accurately predict the strength of profiled sandwich panels. However, the current design method overestimates the strength in comparison with the experimental results. This paper presents the details of the new improved design rule and full scale experiments, the results, and comparisons with predictions from design rules.
机译:经过当前设计文件中包含的传统有效宽度原则,设计了局部屈曲故障的分布式夹层面板。然而,最近使用实验室实验和数值分析的泡沫支撑的薄钢板的研究表明,传统的有效宽度原理不能用于具有非常高的宽度(B / T)比的板元件。已经基于实验和数值分析的结果开发了修改的设计规则。在这项研究中,进行了一系列关于经过风力压力负荷的夹层夹层面板的一系列全尺度实验,以研究新设计规则的准确性。将实验结果与来自当前和修改的设计规则的预测进行了比较。比较证实,新的改进设计规则可以准确地预测成型夹层面板的强度。然而,与实验结果相比,当前的设计方法高估了强度。本文介绍了新改进的设计规则和全规范实验,结果和比较的详细信息,从设计规则预测。

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