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Structural Efficiency of Stitched Rod-Stiffened Composite Panels with Stiffener Crippling

机译:加劲肋压接的缝合杆加劲复合板的结构效率

摘要

The structural efficiency of rod-stiffened stitched specimens is evaluated to determine their weight saving potential if the stiffeners were allowed to buckle at less than or equal to design ultimate load. Analytical and experimental results from rod-stiffened and blade-stiffened single-stiffener specimens are presented. In both cases, skin and flanges were stitched together through-the-thickness prior to curing. No mechanical fasteners were used for the assembly. Specimens were loaded to failure in axial compression. Failure modes are discussed. Finite element and experimental results agree for the response of the structures. For some specimen configurations, improved structural efficiency can be obtained by allowing stiffeners to buckle at design limit load rather than requiring that buckling not occur prior to design ultimate load. In addition, through-the-thickness stitching can change the failure mechanism by suppressing delamination between skin and flange. A parametric study is presented herein which describes the possible weight savings with this approach.
机译:如果允许加劲肋在小于或等于设计极限载荷的作用下弯曲,则对加筋的缝合样品的结构效率进行评估,以确定其减轻重量的潜力。给出了杆加劲肋和叶片加劲肋单筋试件的分析和实验结果。在这两种情况下,在固化之前,都要先将皮肤和凸缘通过厚度缝合在一起。没有使用机械紧固件进行组装。样品被加载至轴向压缩失效。讨论了故障模式。有限元和实验结果对结构的响应一致。对于某些样本配置,通过使加劲肋在设计极限载荷下弯曲而不是要求在设计极限载荷之前不发生屈曲,可以提高结构效率。另外,通过缝合厚度,可以抑制皮肤和凸缘之间的分层,从而改变故障机理。本文介绍了一项参数研究,该研究描述了此方法可能减轻的重量。

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