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Application of homogenization approaches to the numerical analysis of seating made of multi-wall corrugated cardboard

机译:均质化方法在多壁瓦楞纸板上采用座椅数值分析

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Corrugated cardboard presents small geometries that make unfeasible the use of detailed three-dimensional numerical models, though homogenization approaches can be used to define equivalent homogenous plate models at a macro-mechanical scale. In this paper, we performed a finite element analysis of a well-known chair design, originally made of honeycomb cardboard, but replacing this material with single-and multiple-wall corrugated cardboard. We compared the deflections obtained under some load cases defined by he European Standards EN 1728 and EN 12520 for seating designs, with those obtained for another com-mercial chair design, originally made of heavy-duty triple-wall corrugated cardboard, finding comparable val-ues. We also analysed optimized versions of both chairs, achieving lower deformations. In this way, we could find for each case the material settings with the better resistance-to-cost ratio, thus proving the utility of homogenization techniques on corrugated cardboard furniture design, as an aid to choose the most appropriate material settings.
机译:瓦楞纸板呈现出小几何形状,使得使用详细的三维数值模型不可行,尽管均匀化方法可用于以宏观机械刻度定义等效的均匀板模型。在本文中,我们对公知的椅子设计进行了有限元分析,最初由蜂窝纸板制成,但用单壁瓦楞纸板更换这种材料。我们比较了由欧洲标准EN 1728和EN 12520定义的一些负载案例下获得的偏转,用于座椅设计,其中包含另一个COM-MERMIS椅设计,最初由重型三壁瓦楞纸板制成,找到可比的VAL- ues。我们还分析了两把椅子的优化版本,实现了更低的变形。通过这种方式,我们可以找到以更好的抵抗成本比的材料设置,从而证明均质化技术对瓦楞纸板家具设计的效用,为选择最合适的材料设置。

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