Efficient Design-Optimization of Variable-Density Hexagonal Cellular Structure by Additive Manufacturing: Theory and Validation

被引:210
作者
Zhang, Pu [1 ]
Toman, Jakub [1 ]
Yu, Yiqi [1 ]
Biyikli, Emre [1 ]
Kirca, Mesut [2 ]
Chmielus, Markus [1 ]
To, Albert C. [1 ]
机构
[1] Univ Pittsburgh, Dept Mech Engn & Mat Sci, Pittsburgh, PA 15261 USA
[2] Istanbul Tech Univ, Dept Mech Engn, TR-34437 Istanbul, Turkey
来源
JOURNAL OF MANUFACTURING SCIENCE AND ENGINEERING-TRANSACTIONS OF THE ASME | 2015年 / 137卷 / 02期
关键词
cellular structure; additive manufacturing; design for manufacturing; modeling and simulation; MECHANICAL-PROPERTIES; METAL FABRICATION; LASER; IMPLANTS; STIFFNESS; STRENGTH;
D O I
10.1115/1.4028724
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Cellular structures are promising candidates for additive manufacturing (AM) due to their lower material and energy consumption. In this work, an efficient method is proposed for optimizing the topology of variable-density cellular structures to be fabricated by certain AM process. The method gains accuracy by relating the cellular structure's microstructure to continuous micromechanics models and achieves efficiency through conducting continuum topology optimization at macroscopic scale. The explicit cellular structure is then finally reconstructed by mapping the optimized continuous parameters (e.g., density) to cell structural parameters (e.g., strut diameter). The proposed method is validated by both finite element analysis and experimental tests on specimens manufactured by stereolithography.
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页数:8
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