Key Laboratory of Air-Driven Equipment Technology of Zhejiang Province, Quzhou University, Quzhou, 324000, China.
Key Laboratory of Metallurgical Equipment and Control Technology, Ministry of Education, Wuhan University of Science and Technology, Wuhan, 430081, China.
Sci Rep. 2022 Apr 4;12(1):5602. doi: 10.1038/s41598-022-09249-y.
In recent years, Hybrid Cellular Automata Method (HCAM) has been successfully applied to solve structural topology optimization problems. However, there was no report on HCAM research of three-dimensional composite structure composed of multiple materials and multiple bodies. Therefore, in this paper, three-dimensional non-cube cells of irregular size (such as tetrahedral cells with adaptive changes inside length) and Finite Element Method (FEM) are introduced to extend HCAM, which is better and more flexibly to fit complex geometric shapes. Furthermore, a better structure configuration of multi-material and multi-body structure is obtained. The typical example study showed that the proposed topology optimization method could effectively remove the redundant materials of multi-material and multi-body structure, and the optimized structure configuration could still meet the requirements of the original condition after geometric reconstructed. Thus it provided a reference for the intelligent design of other products.
近年来,混合元胞自动机方法(HCAM)已成功应用于求解结构拓扑优化问题。然而,目前还没有关于由多种材料和多个体组成的三维复合材料结构的 HCAM 研究的报道。因此,本文引入了三维非立方不规则尺寸的元胞(如具有自适应内部长度变化的四面体元胞)和有限元法(FEM)来扩展 HCAM,以更好、更灵活地适应复杂的几何形状。此外,还获得了多材料和多体结构的更好的结构配置。典型实例研究表明,所提出的拓扑优化方法可以有效地去除多材料和多体结构的冗余材料,并且经过几何重构后,优化后的结构配置仍然可以满足原始条件的要求。因此,它为其他产品的智能设计提供了参考。