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An efficient parameterized simulation framework for 3D scarf-repaired composite laminates
DOI:10.1016/j.compstruct.2024.117934.png)
摘要
En 中文
This paper proposes a parameterized simulation framework for predicting the load -bearing capacity of 3D scarfrepaired composite laminates which remarkably reduces the modeling time from several hours to just a few seconds. The specific implementation is demonstrated through a detailed step-by-step explanation. The main contribution lies in: (1) By introducing a reusable geometric partitioning method for composite layers and implementing a partitioning method -based numbering scheme for element and node, the effective management of element and node IDs of elements and nodes in such complex 3D models is greatly facilitated; (2) By ingeniously combining open -source meshing tools and text rewriting techniques, a highly efficient approach has been developed to construct complete models for such structures, showcasing the remarkable potential of these existing techniques in this field. The reliability of the efficient parameterized simulation framework proposed in this study is verified through the comparison between strength values acquired from progressive damage analysis (PDA) and experiment data reported in the existing literature.
Keyword:
3D scarf repaired composite laminates
Parameterized framework
PDA analysis
High -efficient simulation techniques
Finite element method
期刊
IF:
7.1
论文数:
1.8W
被引数:
8.0W
机构
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PLoS ONE
IF0
Parametric study on static and fatigue strength recovery of scarf-patch-repaired composite laminates围巾修补复合材料层压板静态和乏力强度恢复的参数研究
COMPOSITE STRUCTURES
IF7.1

