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Wrinkling of Functionally Graded Sandwich Structures Subject to Biaxial and In-Plane Shear Loads

机译:经过双轴和面内剪切载荷的功能渐进式夹层结构的皱纹

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Benefits of a functionally graded core increasing wrinkling stability of sandwich panels have been demonstrated in a recent paper (Birman, V., and Vo, N., 2017, "Wrinkling in Sandwich Structures With a Functionally Graded Core," ASME J. Appl. Mech., 84(2), p. 021002), where a several-fold increase in the wrinkling stress was achieved, without a significant weight penalty, using a stiffer core adjacent to the facings. In this paper, wrinkling is analyzed in case where the facings are subject to biaxial compression and/or in-plane shear loading, and the core is arbitrary graded through the thickness. Two issues addressed are the effect of biaxial or in-plane shear loads on wrinkling stability of panels with both graded and ungraded core, and the verification that functional grading of the core remains an effective tool increasing wrinkling stability under such two-dimensional (2D) loads. As follows from the study, biaxial compression and in-plane shear cause a reduction in the wrinkling stress compared to the case of a uniaxial compression in all grading scenarios. Accordingly, even sandwich panels whose mode of failure under uniaxial compression was global buckling, the loss of strength in the facings or core crimpling may become vulnerable to wrinkling under 2D in-plane loading. It is demonstrated that a functionally graded core with the material distributed to increase the local stiffness in the interface region with the facings is effective in preventing wrinkling under arbitrary in-plane loads compared to the equal weight homogeneous core.
机译:在最近的纸张(Birman,V.和Vo,N.,2017年,2017年,在夹心结构中,在初步的纸张(Birman,V.和Vo,N.,Nimary Rice)中,在初步的纸质面板的稳定性增加了辛幻面板的稳定性的好处已经证明了三明治面板的稳定性。 MECH。,84(2),p。021002),其中实现了皱纹应力的几倍增加,而没有显着的重量损失,使用与面部相邻的静止芯。在本文中,在面部受到双轴压缩和/或面内剪切载荷的情况下分析皱纹,并且芯是通过厚度的任意分级。解决了两个问题是双轴或面内剪切载荷对具有分级和未商生的核心的面板的皱纹稳定性,并且核心功能分级的验证仍然是在这种二维(2D)下提高皱纹稳定性的有效工具负载。如下从研究中,与所有分级场景中的单轴压缩的情况相比,双轴压缩和面内剪切导致皱纹应力的降低。因此,即使在单轴压缩下失效模式的夹层板也是全球屈曲,面部或岩心卷曲中的强度损失可能变得容易受到2D面内载荷的皱纹。结果证明,具有分布以增加界面区域中的局部刚度的材料的功能渐变芯在与等重均匀芯相比,在预防任意的面内载荷下防止皱纹。

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