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Comprehensive study on fail-safe topological design method for 3D structures

delete2024-04-26
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PRE
AI
H
Hongxin Wang
Y
Yujun Liao
G
Guilin Wen
L
Liangliang Chen
刘杰 封面图
刘杰 (Jie Liu) *
DOI:10.1007/s10409-024-23452-xdelete
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摘要

摘要

En 中文
Fail-safe topology optimization is valuable for ensuring that optimized structures remain operable even under damaged conditions. By selectively removing material stiffness in patches with a fixed shape, the complex phenomenon of local failure is modeled in fail-safe topology optimization. In this work, we first conduct a comprehensive study to explore the impact of patch size, shape, and distribution on the robustness of fail-safe designs. The findings suggest that larger sizes and finer distribution of material patches can yield more robust fail-safe structures. However, a finer patch distribution can significantly increase computational costs, particularly for 3D structures. To keep computational efforts tractable, an efficient fail-safe topology optimization approach is established based on the framework of multi-resolution topology optimization (MTOP). Within the MTOP framework, the extended finite element method is introduced to establish a decoupling connection between the analysis mesh and the topology description model. Numerical examples demonstrate that the developed methodology is 2 times faster for 2D problems and over 25 times faster for 3D problems than traditional fail-safe topology optimization while maintaining similar levels of robustness.
Keyword:
Robust design
Fail-safe structures
Multi-resolution topology optimization
Computational efficiency
XFEM

期刊

A
Acta Mechanica Sinica
IF:
4.6
论文数:
2.9K
被引数:
4.7K

机构

Y
Yanshan University
学者数:
1.7W
论文数: 1.1W
被引数: 1.3W
G
Guangzhou University
学者数:
1.8W
论文数: 1.3W
被引数: 1.8W
G
Guangzhou Medical University
学者数:
2.7W
论文数: 1.4W
被引数: 3.2W
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