Property Analysis of Periodic Lattice Structure with Considering its Size Effect

Li Linling, Shi Liming, Zhang Xiaoyu
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Abstract

The periodic lattice structure has obvious advantages in lightweight and multi-functional design. With the development of manufacturing technology, especially the development of selective laser melting, the periodic lattice structure has been more extensively used, and attracts more attention in studying its structural behavior. According to the characteristics of periodic lattice structure, ABAQUS is used to establish its geometric model, and the mechanical properties are simulated and analyzed under compression. Considering three kinds of cantilever beams with solid, periodic lattice and rubber-filled periodic lattice as examples, and comparing with the theoretical results of modal frequencies, the simulation method of the periodic lattice structure is improved. The simulation analysis method is used to analyze the change of mechanical parameters and the change of the damping characteristics of the three types of cantilever beams caused by the dimension difference in different directions. The simulation results can provide a basis for the performance test of the periodic lattice structure and provide a reference for the design of the periodic lattice structure which meets the performance requirements.

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考虑尺寸效应的周期点阵结构性质分析
周期晶格结构在轻量化和多功能设计方面具有明显优势。随着制造技术的发展,特别是选择性激光熔化的发展,周期晶格结构得到了更广泛的应用,并在研究其结构行为方面引起了更多的关注。根据周期性晶格结构的特点,利用ABAQUS建立了其几何模型,并对其压缩力学性能进行了仿真分析。以实心、周期格构和橡胶填充周期格构三种悬臂梁为例,与模态频率的理论结果进行比较,改进了周期格构的仿真方法。采用仿真分析方法,分析了三种悬臂梁在不同方向上尺寸差异引起的力学参数变化和阻尼特性的变化。仿真结果可以为周期性晶格结构的性能测试提供依据,也可以为满足性能要求的周期性晶格的设计提供参考。
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