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In-plane elasticity of regular hexagonal honeycombs with three different joints: A comparative study

机译:具有三种不同关节的常规六边形蜂窝的面内弹性:比较研究

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This paper is focused on the in-plane linear elastic properties of regular hexagonal honeycombs with three different joint geometries: hexagonal joint, circular joint and triangular joint. A combination of theoretical and finite element (FE) methods was adopted to investigate their in-plane elastic moduli (Young's modulus, shear modulus and Poisson's ratio), and a good agreement between the two methods was obtained. The influences of the geometric parameters on the elastic moduli, such as rho*/rho(s )and r/l, were fully discussed. Interestingly, a special relationship can exist among the three joint types, that is, the circular joint can be considered as a minimum circumscribed circle of the hexagonal and triangular joints. Based on this, a comparison among the honeycombs with three different types of joints was conducted. Compared to the conventional regular hexagonal honeycomb, the Young's modulus of the circular joint, hexagonal joint, and triangular joint honeycombs is enhanced by 61%, 80% and 431%, respectively; while the shear modulus is improved by 101%, 133% and 469%, respectively. Consequently, the triangular joint honeycomb was shown to be more successful in microstructural layout compared with the other two types of honeycombs. This work could be a good guide for the design of novel cellular structures.
机译:本文专注于普通六边形蜂窝线的平面线性弹性特性,具有三种不同的关节几何形状:六边形接头,圆形关节和三角形关节。采用理论和有限元(Fe)方法的组合来研究其面内弹性模量(杨氏模量,剪切模量和泊松比),并获得两种方法之间的良好一致性。完全讨论了几何参数对弹性模量的影响,例如Rho * / Rho(S)和R / L。有趣的是,三种关节类型中可以存在特殊关系,即,圆形接头可以被认为是六边形和三角形关节的最小围绕圆圈。基于此,进行了具有三种不同类型关节的蜂窝之间的比较。与传统的六边形蜂窝相比,圆形关节,六边形关节和三角形关节蜂窝的杨氏模量分别增强了61%,80%和431%;虽然剪切模量分别提高了101%,133%和469%。因此,与其他两种类型的蜂窝相比,示出了三角形关节蜂窝在微观结构布局中更成功。这项工作可能是设计新细胞结构的良好指南。

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