半规则各向异性多孔结构的性能取向设计

Chao Xu, L. Pan, Ming Li, Shuming Gao
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引用次数: 0

摘要

多孔材料/结构在工业上有广泛的应用,因为它们的孔的大小、形状和位置可以根据不同的要求进行调整。然而,多孔结构的精确控制和面向性能的设计仍然是迫切和具有挑战性的,特别是在3D打印制造技术发达的情况下。在本研究中,各向异性多孔结构的控制和设计比各向同性结构具有更多的自由度,可以实现更复杂的力学目标。该方法引入超级公式来表示结构单元,利用PGD将设计问题映射为最优问题,并利用MMA对最优问题进行求解,得到具有理想性能的结构。并对该方法在设计空间扩展、物理方向捕获等方面的性能进行了测试。
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Performance Oriented Design of Semiregular Anisotropic Porous Structures
Porous materials / structures have wide applications in industry, since the sizes, shapes and positions of their pores can be adjusted on various demands. However, the precise control and performance oriented design of porous structures are still urgent and challenging, especially when the manufacturing technology is well developed due to 3D printing. In this study, the control and design of anisotropic porous structures are studied with more degrees of freedom than isotropic structures, and can achieve more complex mechanical goals. The proposed approach introduces Super Formula to represent the structural cells, maps the design problem to an optimal problem using PGD, and solves the optimal problem using MMA to obtain the structure with desired performance. The proposed approach is also tested on the performance of the expansion of design space, the capture of the physical orientation and so on.
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