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Mechanical Properties of Additively Manufactured Thick Honeycombs

机译:含有厚蜂窝的厚蜂窝的力学性能

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Honeycombs resemble the structure of a number of natural and biological materials such as cancellous bone, wood, and cork. Thick honeycomb could be also used for energy absorption applications. Moreover, studying the mechanical behavior of honeycombs under in-plane loading could help understanding the mechanical behavior of more complex 3D tessellated structures such as porous biomaterials. In this paper, we study the mechanical behavior of thick honeycombs made using additive manufacturing techniques that allow for fabrication of honeycombs with arbitrary and precisely controlled thickness. Thick honeycombs with different wall thicknesses were produced from polylactic acid (PLA) using fused deposition modelling, i.e., an additive manufacturing technique. The samples were mechanically tested in-plane under compression to determine their mechanical properties. We also obtained exact analytical solutions for the stiffness matrix of thick hexagonal honeycombs using both Euler-Bernoulli and Timoshenko beam theories. The stiffness matrix was then used to derive analytical relationships that describe the elastic modulus, yield stress, and Poisson’s ratio of thick honeycombs. Finite element models were also built for computational analysis of the mechanical behavior of thick honeycombs under compression. The mechanical properties obtained using our analytical relationships were compared with experimental observations and computational results as well as with analytical solutions available in the literature. It was found that the analytical solutions presented here are in good agreement with experimental and computational results even for very thick honeycombs, whereas the analytical solutions available in the literature show a large deviation from experimental observation, computational results, and our analytical solutions.
机译:蜂窝类似于许多天然和生物材料的结构,如松质骨,木材和软木塞。厚蜂窝也可用于能量吸收应用。此外,在面内负载下研究蜂窝的力学行为可以有助于了解更复杂的3D镶嵌结构的机械行为,例如多孔生物材料。在本文中,我们研究了使用添加剂制造技术制造的厚蜂窝的力学行为,其允许用任意和精确控制的厚度制造蜂窝状。使用熔融沉积建模,即添加剂制造技术,由聚乳酸(PLA)产生具有不同壁厚的厚蜂窝。在压缩下在面内机械测试样品以确定其机械性能。我们还使用Euler-Bernoulli和Timoshenko光束理论获得了厚六方蜂窝状刚度矩阵的精确分析解。然后使用刚度基质来衍生描述弹性模量,屈服应力和厚蜂窝比率的分析关系。有限元模型还建立了对压缩下厚蜂窝的力学行为的计算分析。使用我们的分析关系获得的机械性能与实验观察和计算结果以及文献中可用的分析解决方案进行比较。结果发现,这里呈现的分析解决方案与实验和计算结果吻合良好,即使对于非常厚的蜂窝,而文献中可用的分析解决方案表现出与实验观察,计算结果和我们的分析解决方案的大偏差。

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