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DETERMINATION OF OPTIMAL UNIT-CELL SIZE OF HOMOGENEOUS CONFORMAL UNIT-CELL LATTICE STRUCTURE USING SOLID SHAPE MATCHING

机译:固体形状匹配确定均质共形单元格晶格的最佳单元格尺寸

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With rapid developments and advances in additive manufacturing technology, lattice structures have gained considerable attention. Lattice structures are capable of providing parts with a high strength to weight ratio. Most work done to reduce computational complexity is concerned with determining the optimal size of each strut within the lattice unit-cells but not with the size of the unit-cell itself. The objective of this paper is to develop a method to determine the optimal unit-cell size for homogenous periodic and conformal lattice structures based on the strain energy of a given structure. The method utilizes solid body finite element analysis (FEA) of a solid counter-part with a similar shape as the desired lattice structure. The displacement vector of the lattice structure is then matched to the solid body FEA displacement results to predict the structure's strain energy. This process significantly reduces the computational costs of determining the optimal size of the unit cell since it eliminates FEA on the actual lattice structure. Furthermore, the method can provide the measurement of relative performances from different types of unit-cells. The developed examples clearly demonstrate how we can determine the optimal size of the unit-cell based on the strain energy. Moreover, the computational cost efficacy is also clearly demonstrated through comparison with the FEA and the proposed method.
机译:随着增材制造技术的飞速发展和进步,晶格结构得到了相当大的关注。晶格结构能够提供具有高强度重量比的部件。为减少计算复杂度所做的大多数工作都与确定晶格单位单元内每个撑杆的最佳尺寸有关,而与单位单元本身的尺寸无关。本文的目的是开发一种基于给定结构的应变能确定均匀的周期性和共形晶格结构的最佳晶胞尺寸的方法。该方法利用具有与所需晶格结构相似的形状的固体对应零件的固体有限元分析(FEA)。然后将晶格结构的位移矢量与实体FEA位移结果进行匹配,以预测结构的应变能。由于此过程消除了实际晶格结构上的FEA,因此可显着降低确定单位晶胞最佳尺寸的计算成本。此外,该方法可以提供来自不同类型的单元电池的相对性能的测量。所开发的示例清楚地说明了我们如何根据应变能确定最佳的晶胞尺寸。此外,通过与有限元分析和所提出的方法进行比较,还可以清楚地证明计算成本效益。

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