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Simulation of Elastic Properties of Solid-Lattice Hybrid Structures Fabricated by Additive Manufacturing

机译:添加剂制造制造的固体晶格混合结构弹性性能的仿真

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The lattice structure is promising in a variety of engineering applications because of its unique mechanical properties. To satisfy certain functional requirements, lattice structures combined with the skin and solid are preferred in many cases. Additive Manufacturing (AM) has reduced the difficulty in fabricating Solid-Lattice hybrid structures, which brings more potential for applications. However, analyzing such a complex structure is challenging for traditional methods. In this paper, a new simulation model is proposed to reduce the computational cost and avoid poor mesh quality in simulating elastic properties of Solid-Lattice hybrid structures by Finite Element Analysis. The connecting area of the lattice strut and the solid is investigated to determine the best parameter for the new simulation model. A structure is designed and the experiment is conducted to validate the proposed method. A comparison between the new simulation model and the traditional one shows that the computational cost is dramatically decreased and the mesh quality is improved by the proposed method. And both of the simulation results are close to the experimental result which can be used to predict the mechanical performance of Solid-Lattice hybrid structures.
机译:由于其独特的机械性能,晶格结构在各种工程应用中具有很大。为了满足某些功能要求,在许多情况下,晶格结构与皮肤和固体相结合。添加剂制造(AM)降低了制造固体晶格杂交结构的难度,这为应用提供了更多的应用。然而,分析这种复杂的结构对于传统方法具有挑战性。在本文中,提出了一种新的仿真模型,以降低计算成本,避免通过有限元分析模拟固体晶格混合结构的弹性性能的差的网格质量。研究了晶格支柱的连接区域和固体以确定新仿真模型的最佳参数。设计了一种结构,进行实验以验证所提出的方法。新仿真模型与传统的比较表明计算成本显着降低,并且通过所提出的方法改善了网格质量。仿真结果均接近实验结果,可用于预测固体晶格杂交结构的机械性能。

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