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  2024, Vol. 45 Issue (2): 201-212    
  研究论文 本期目录 | 过刊浏览 | 高级检索 |
基于MJF的极小曲面结构力学行为及吸能特性研究
肖江海 侯俊玲 李群
西安交通大学航天航空学院, 复杂服役环境重大装备结构强度与寿命全国重点实验室
The Study on Mechanical Behavior and Energy Absorption Characteristics of Minimal Surface Structures Based on MJF
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摘要 极小曲面结构是一种表面连续光滑的曲面多孔结构,具有低密度、高强度以及优良的减震吸能等特性,在航空航天、汽车工业、机械装备等领域的结构轻量化设计方面,具有广泛的应用前景。本文采用多射流熔融(MultiJet Fusion,MJF)增材制造技术,结合参数化建模方法,以尼龙PA12为原料制备了体积分数同为20%的3种极小曲面多孔结构(G曲面、P曲面、D曲面)。利用准静态压缩试验和数值模拟,分析了不同极小曲面结构的力学响应和吸能特性。研究发现:在力学响应方面,3种极小曲面的平台名义应力分别为4.0MPa、2.1MPa和4.75MPa,明显高于相同体积分数下BCC点阵结构的平台名义应力(2.0MPa),具有更好的承载能力;在吸能方面,G曲面、P曲面和D曲面的单位体积吸能量近似可达BCC点阵结构的7倍、4倍、8倍。综上所述,与传统BCC点阵结构相比,MJF增材制造工艺制备的极小曲面结构能够更好的分散压力,减少应力集中,表现出优异的力学性能和吸能特性,具有非常好的应用前景。
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肖江海 侯俊玲 李群
关键词 极小曲面多孔结构增材制造力学性能吸能特性    
Abstract:The minimal surface structure is a continuous and smooth porous structure. It has the advantages of low density, high intensity, and excellent energy absorption capability. This paper has studied the mechanical properties and energy absorption characteristics of the minimal surface prepared by additive manufacturing process using nylon PA12. First, using the parametric modelling method, three kinds of minimal surface porous structures (G-surface, P-surface and D-surface) with the same volume fraction of 20% are designed. The corresponding minimal surface structures are manufactured with MultiJet Fusion(MJF) additive manufacturing technology. The mechanical response and energy absorption characteristics of different minimal surface structures are then analyzed by combining quasi-static compression tests and numerical simulations. For the mechanical response, it is found that the three kinds of minimal surface structures show better load-bearing capacities compared with the traditional BCC lattice structure. In detail, the nominal stresses of the three minimal surface structures (G-surface, P-surface and D-surface) are 4.0MPa, 2.1MPa and 4.75MPa, respectively. The nominal stress value of the BCC lattice structure under the same volume is 2.0MPa. It is clear that all values of the three minimal surface structures are significantly higher than that of the BCC lattice structure. For the study of energy absorption, the energy absorption per unit volume is used as one of key parameter to evaluate the energy absorption characteristic of porous structure. The results indicate that the values of the energy absorption per unit volume for the three minimal surface structures (G-surface, P-surface, and D-surface) are all higher than that of the BCC lattice structure. The energy absorption per unit volume for the three minimal surface structures can approximately reach 7, 4 and 8 times that of BCC lattice structures. In conclusion, the minimal surface structure can show excellent characteristics of mechanical property and energy absorption and has extensive application prospects in the fields of aerospace, automotive industry and machinery.
收稿日期: 2023-07-21      出版日期: 2024-04-11
基金资助:基于构型力理论的高温镍基合金材料损伤研究;基于构型力的镍基高温合金氧致疲劳裂纹扩展行为研究;基于修正Battelle双曲线模型的埋地输气管道止裂控制研究
通讯作者: 侯俊玲     E-mail: junlhou@mail.xjtu.edu.cn
引用本文:   
肖江海 侯俊玲 李群. 基于MJF的极小曲面结构力学行为及吸能特性研究[J]. , 2024, 45(2): 201-212.
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