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Equivalent Elastic Modulus of Asymmetrical Honeycomb

机译:不对称蜂窝的等效弹性模量

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The equivalent elastic moduli of asymmetrical hexagonal honeycomb are studied by using a theoretical approach. The deformation of honeycomb consists of two types of deformations. The first is deformation inside the unit, which is caused by bending, stretching, and shearing of cell walls and rigid rotation of the unit; the second is relative displacement between units. The equivalent elastic modulus related to a direction parallel to one cell wall of the honeycomb is determined from the relative deformation between units. In addition, a method for calculating other elastic moduli by coordinate transformation is described, and the elastic moduli for various shapes of hexagon, which are obtained by systematically altering the regular hexagon, are investigated. It is found that the maximum compliance ??????|max and the minimum compliance ??????|min of elastic modulus ?????? in one rotation of the (??,??) coordinate system vary as the shape of the hexagon is changed. However, ??????|max takes a minimum and ??????|min takes a maximum when the honeycomb cell is a regular hexagon, for which the equivalent elastic moduli are unrelated to the selected coordinate system, and are constant with ??11=??22.
机译:采用理论方法研究了不对称六角形蜂窝的等效弹性模量。蜂窝的变形包括两种类型的变形。首先是单元内部的变形,这是由于单元壁的弯曲,拉伸和剪切以及单元的刚性旋转引起的。第二个是单元之间的相对位移。根据单元之间的相对变形来确定与平行于蜂窝的一个孔壁的方向有关的等效弹性模量。另外,描述了一种通过坐标变换来计算其他弹性模量的方法,并且研究了通过系统地改变正六边形而获得的各种形状的六边形的弹性模量。发现弹性模量的最大柔度Δε| max和最小柔度Δε| min。 (Δθ,Δθ)坐标系的旋转一圈会随着六边形的形状变化而变化。但是,当蜂窝单元为正六边形时,Δε| max为最小值,Δε| min为最大值,其等效弹性模量与所选坐标系无关,且常数,Δ11=Δ22。

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