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Investigation of elastic moduli of Kraft paper honeycomb core sandwich panels

机译:牛皮纸蜂窝芯夹芯板的弹性模量研究

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In order to understand the influence of the thicknesses of Kraft paper honeycomb core and medium density fiberboard skins on the stiffness of the sandwich panel, the corresponding finite element models for the resulting sandwich panels were developed. The material properties for the core and skin components of these finite element models were determined using the published data and specifications. It was found that a decrease in the thickness ratio of the core to skin layer (shelling ratio) resulted in an increase in the modulus of elasticity and shear modulus of the sandwich panels. The increase was significant when the shelling ratio was smaller than six. Cell size only affected the modulus of elasticity of the sandwich panels under the flat-wise compression and panel's inter-laminar shear modulus. Regression equations relating the stiffness of the sandwich panels to the shelling ratio and core cell size were obtained using the finite element model simulated results and were found to compare well with the existing models for layered wood composites.
机译:为了理解牛皮纸蜂窝状芯和中密度纤维板的厚度对夹心板刚度的影响,开发了相应的所得夹心板有限元模型。这些有限元模型的核心和蒙皮组件的材料属性是使用已发布的数据和规范确定的。已经发现,芯与表皮层的厚度比(脱壳比)的减小导致夹心板的弹性模量和剪切模量的增加。当炮击率小于六时,这种增加是显着的。单元尺寸仅影响夹心板在平面压缩和板间层间剪切模量下的弹性模量。使用有限元模型模拟结果获得了将夹心板的刚度与脱壳率和芯孔尺寸相关联的回归方程,并与现有的层状木质复合材料模型进行了比较。

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