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Material Selection for CFRP-Aluminium-Foam-Sandwiches Manufactured by a PUR Spraying Process

机译:用PUR喷涂工艺制造的CFRP-铝 - 泡沫三明治的材料选择

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Sandwich structures are ideal for planar parts which require a high bending stiffness at a low weight. Usually, sandwich structures are manufactured using a joining step, in which the face sheets and the core are connected. The PUR spraying process allows to include the infiltration of the face sheet fibres, the curing of the matrix and the joining of the face sheets to the core within one process step. Furthermore, this manufacturing process allows for the use of open cell core structures without infiltrating the core, which enables a comparison of different material configurations, assembled by the same manufacturing process. The selection of these materials, with the aim of the lowest possible mass of the sandwich composite at a constant bending stiffness, is displayed systematically within this work.It could be shown that the bending modulus calculated from the component properties matched the experimentally achieved values well, with only few exceptions. The optimum of the bending modulus, the face sheet thickness and the resulting effective density could be calculated and also matched the experimental values well. The mass-specific bending stiffness of the sandwich composites with core structures of open cell aluminium foams was higher than with closed cell aluminium foams, but was exceeded by sandwich composites with Nomex honeycomb cores.
机译:夹层结构非常适用于需要低重量的高弯曲刚度的平面部件。通常,使用连接步骤制造夹层结构,其中面板和芯连接。 PUR喷涂工艺允许包括面板纤维的渗透,在一个工艺步骤内将基质的固化和面板的连接到芯中。此外,该制造工艺允许在不渗透芯的情况下使用开放式电池芯结构,这使得能够比较由相同的制造工艺组装的不同材料配置。这些材料的选择,目的是在该工作中系统地显示出在恒定弯曲刚度的尽可能低的夹层复合材料的夹层复合材料的目的。可以说明从组件性质计算的弯曲模量与实验达到的值良好匹配,只有少数例外。可以计算弯曲模量,面板厚度和所得到的有效密度的最佳选择,并良好地匹配实验值。具有开放电池铝泡沫芯结构的夹层复合材料的质量特异性弯曲刚度高于闭孔铝泡沫,但用Nomex蜂窝芯的夹层复合材料超过夹层。

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