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Optimal design of sandwich panels made of wood veneer hollow cores

机译:木质单板空心夹芯板的优化设计

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摘要

In response to the growing interest in replenishable, lightweight, stiff and strong materials, a novel sandwich panel with a hollow core has been manufactured using commercially produced 3-ply veneer. In this paper, the out-of-plane shear behaviour of the novel hollow core is analysed and the expressions for the failure loads are developed. A strength-based optimisation problem is formulated for predicting the optimum values of the panel dimensions that would produce minimum panel weight when subjected to bending. It has been found that the minimum weight, as predicted by the full four-parameter optimisation, is slightly lower than that obtained by using the closed form expressions derived on the basis of simplified three-parameter optimisation. Relationships between the active failure modes are explored. Design maps are shown for a wide range of loading that can be used to calculate the minimum panel weight and the corresponding values of the geometric parameters. The approach developed is general and is equally applicable for sandwich panels with similar hollow cores made of other materials.
机译:为了响应对可补充,轻便,坚硬和坚固的材料的日益增长的兴趣,已经使用商业生产的三层薄板制造了具有空心芯的新型夹心板。本文分析了新型空心铁心的平面外剪切行为,并建立了破坏荷载的表达式。制定了基于强度的优化问题,以预测面板尺寸的最佳值,该值在受到弯曲时会产生最小的面板重量。已经发现,通过全四参数优化预测的最小重量略低于通过使用基于简化的三参数优化得出的闭式表达式获得的最小重量。探索了主动失效模式之间的关系。显示了适用于各种载荷的设计图,可用于计算最小面板重量和几何参数的相应值。开发的方法是通用的,并且同样适用于具有由其他材料制成的类似中空芯的夹芯板。

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