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Mechanical properties of additively manufactured octagonal honeycombs

机译:增材制造的八边形蜂窝的机械性能

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摘要

Honeycomb structures have found numerous applications as structural and biomedical materials due to their favourable properties such as low weight, high stiffness, and porosity. Application of additive manufacturing and 3D printing techniques allows for manufacturing of honeycombs with arbitrary shape and wall thickness, opening the way for optimizing the mechanical and physical properties for specific applications. In this study, the mechanical properties of honeycomb structures with a new geometry, called octagonal honeycomb, were investigated using analytical, numerical, and experimental approaches. An additive manufacturing technique, namely fused deposition modelling, was used to fabricate the honeycomb from polylactic acid (PLA). The honeycombs structures were then mechanically tested under compression and the mechanical properties of the structures were determined. In addition, the Euler-Bemoulli and Timoshenko beam theories were used for deriving analytical relationships for elastic modulus, yield stress, Poisson's ratio, and buckling stress of this new design of honeycomb structures. Finite element models were also created to analyse the mechanical behaviour of the honeycombs computationally. The analytical solutions obtained using Timoshenko beam theory were close to computational results in terms of elastic modulus, Poisson's ratio and yield stress, especially for relative densities smaller than 25%. The analytical solutions based on the Timoshenko analytical solution and the computational results were in good agreement with experimental observations. Finally, the elastic properties of the proposed honeycomb structure were compared to those of other honeycomb structures such as square, triangular, hexagonal, mixed, diamond, and Kagome. The octagonal honeycomb showed yield stress and elastic modulus values very close to those of regular hexagonal honeycombs and lower than the other considered honeycombs.
机译:蜂窝状结构由于其诸如低重量,高刚度和孔隙率的有利特性而已被发现作为结构和生物医学材料的许多应用。增材制造和3D打印技术的应用允许制造具有任意形状和壁厚的蜂窝,从而为优化特定应用的机械和物理性能开辟了道路。在这项研究中,使用解析,数值和实验方法研究了具有新几何形状的蜂窝结构的机械性能,称为八角形蜂窝。增材制造技术,即熔融沉积建模,被用来由聚乳酸(PLA)制造蜂窝。然后在压缩条件下对蜂窝结构进行机械测试,并确定其机械性能。另外,使用Euler-Bemoulli和Timoshenko梁理论推导了这种新型蜂窝结构设计的弹性模量,屈服应力,泊松比和屈曲应力的解析关系。还创建了有限元模型来通过计算分析蜂窝的机械性能。使用Timoshenko束理论获得的解析解在弹性模量,泊松比和屈服应力方面接近于计算结果,尤其是相对密度小于25%时。基于季莫申科解析解的解析解和计算结果与实验结果吻合良好。最后,将所提出的蜂窝结构的弹性特性与其他蜂窝结构的弹性特性进行了比较,例如正方形,三角形,六边形,混合,菱形和Kagome。八边形蜂窝的屈服应力和弹性模量值非常接近规则的六边形蜂窝,但低于其他认为的蜂窝。

著录项

  • 来源
    《Materials science & engineering》 |2016年第12期|1307-1317|共11页
  • 作者单位

    Department of Mechanical Engineering, Amirkabir University of Technology (Tehran Polytechnic), Hafez Ave, Tehran, Iran,Department of Biomechanical Engineering, Faculty of Mechanical, Maritime, and Materials Engineering, Delft University of Technology (TU Delft), Mekelweg 2,2628 CD Delft, The Netherlands;

    Department of Mechanical Engineering, Amirkabir University of Technology (Tehran Polytechnic), Hafez Ave, Tehran, Iran;

    Department of Mechanical Engineering, Amirkabir University of Technology (Tehran Polytechnic), Hafez Ave, Tehran, Iran;

    Department of Biomechanical Engineering, Faculty of Mechanical, Maritime, and Materials Engineering, Delft University of Technology (TU Delft), Mekelweg 2,2628 CD Delft, The Netherlands;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Octagonal honeycomb; Timoshenko beam theory; Analytical relationships; Porous structures;

    机译:八角形蜂窝;季莫申科梁理论;分析关系;多孔结构;

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