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首页> 外文期刊>Journal of Sandwich Structures and Materials >Delamination Growth and Residual Strength of Compressively Loaded Sandwich Panels with Stiffness Tailored Face Sheets
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Delamination Growth and Residual Strength of Compressively Loaded Sandwich Panels with Stiffness Tailored Face Sheets

机译:刚度定制面板的受压夹芯板的分层生长和残余强度

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This study shows that a simple approach to stiffness tailoring of composite face sheets can improve the performance of sandwich panels under compressive loading when delaminations are present. The simple stiffness tailoring concept used here is to reposition of all 0 deg material (aligned with the loading direction) into regions of certain width near the edges of the sandwich panel. This concept has been shown to improve the buckling and postbuckling performance of solid plates and to offer control of delamination growth. To evaluate this tailoring design concept in sandwich panels, numerical simulations of onset and propagation of the delamination growth were conducted with uniform face sheets and tailored face sheets. The delamination front tracing method previously developed by the authors was used to perform the delamination growth analysis. The interfacial elements, which allow the growth of the delamination front to be traced, are placed at the interface between the top face sheet and the core in the undelaminated region. They enable calculation of the strain energy release rates and application of a fracture mechanics delamination growth criterion. Gap elements were used to avoid interfacial overlap. Based on the numerical study, the improvement in the ultimate load provided by the simple stiffness tailoring concept ranges from 80 percent to 100 percent, depending on the extent of tailoring. Substantial improvements in the residual strength and stiffness, after significant delamination growth, can also be observed. Therefore, this article provides a potential design concept that can improve the damage tolerance of sandwich panels without adding weight.
机译:这项研究表明,当出现分层时,采用简单的方法来调整复合面板的刚度可以改善夹心板在压缩载荷下的性能。这里使用的简单的刚度定制概念是将所有0度材料(与加载方向对齐)重新放置到夹心板边缘附近一定宽度的区域中。该概念已被证明可以改善实心板的屈​​曲和后屈曲性能,并提供对分层增长的控制。为了评估夹层板中的定制设计概念,使用均匀的面板和定制的面板对脱层生长的开始和扩展进行了数值模拟。作者先前开发的分层前沿追踪方法用于进行分层增长分析。界面元素(可追踪分层前沿的增长)放置在未分层区域中顶面板和型芯之间的界面处。它们使应变能释放速率的计算和断裂力学分层增长准则的应用成为可能。间隙元素用于避免界面重叠。根据数值研究,简单的刚度剪裁概念可以使极限载荷的提高幅度在80%到100%之间,具体取决于剪裁的程度。在明显的分层增长之后,还可以观察到残余强度和刚度的显着改善。因此,本文提供了一种潜在的设计概念,可以在不增加重量的情况下提高夹心板的损伤承受能力。

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