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首页> 外文期刊>International Journal of Precision Engineering and Manufacturing >Topology Optimization and Additive Manufacturing of Customized Sports Item Considering Orthotropic Anisotropy
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Topology Optimization and Additive Manufacturing of Customized Sports Item Considering Orthotropic Anisotropy

机译:考虑正交各向异性的定制体育项目的拓扑优化和添加剂制造

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Topology optimization is a shape optimization method connected with finite element (FE) structural analysis, and has recently received increasing attention owing to rapid evolution of additive manufacturing (AM). In this study, a rifle support for the sport biathlon is developed by combining three-dimensional (3D) scanning, FE analysis, topology optimization, and AM. Considering that the biathlon requires a stable shooting motion under hard breathing after a distance of cross-country skiing, the rifle support was designed to be fitted to a human body based on 3D scanning data. Topology optimization was then performed to reduce the part weight efficiently, and its structural safety and stiffness were evaluated by FE analyses considering the orthotropic material properties and the relevant printing directions. The optimized design and printing direction were showed 12.7% improvements in the specific stiffness and 23-43% improvements in the structural safety according to the direction. The final design was fabricated using a fused deposition modeling type 3D printer with acrylonitrile butadiene styrene filament. Compression tests were then performed to evaluate its structural safety, and the resulting relative critical force showed a 40% improvement in comparison with the original design.
机译:拓扑优化是一种形状优化方法,其与有限元(FE)结构分析相连,并且由于添加剂制造(AM)的快速演变,最近得到了更大的关注。在这项研究中,通过组合三维(3D)扫描,FE分析,拓扑优化和AM来开发对运动脑病的步枪支持。考虑到偏乡滑雪距离在硬呼吸下需要稳定的拍摄运动,设计步枪支撑基于3D扫描数据适用于人体。然后进行拓扑优化以有效地减少部分重量,并且通过考虑正交材料特性和相关印刷方向的Fe分析评估其结构安全性和刚度。优化的设计和印刷方向显示了特定刚度的12.7%,并且根据方向,结构安全的改善23-43%。使用具有丙烯腈丁二烯苯乙烯长丝的熔融沉积建模型3D打印机制造最终设计。然后进行压缩试验以评估其结构安全性,并且与原始设计相比,所得到的相对临界力显示出40%的改善。

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