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선체 블록의 조정 배관 변형과 조립 정확도 평가를 위한 열변형 해석 및 이상치 예측Thermal Deformation Analysis and Outlier Prediction for Assembly Accuracy Estimation in Adjustment Piping Fabrication

Other Titles
Thermal Deformation Analysis and Outlier Prediction for Assembly Accuracy Estimation in Adjustment Piping Fabrication
Authors
명인선황세윤이원구이장현
Issue Date
Mar-2025
Publisher
한국CDE학회
Keywords
Adjustment pipe; FCAW(Flux-cored arc welding); Finite element method; Machine learning; Welding deformation
Citation
한국CDE학회 논문집, v.30, no.1, pp 93 - 107
Pages
15
Indexed
KCI
Journal Title
한국CDE학회 논문집
Volume
30
Number
1
Start Page
93
End Page
107
URI
https://scholarworks.gnu.ac.kr/handle/sw.gnu/77351
DOI
10.7315/CDE.2025.093
ISSN
2508-4003
2508-402X
Abstract
The adjustment pipes are components used to connect fixed pipes where step have occurred in ship blocks. This study proposes a method for predicting the deformation of adjustment pipes that occurs during the fabrication. Thermo-elasto-plastic finite element analysis (FEA) was employed to numerically simulate deformations occurring under various welding conditions. By integrating both experimental and analytical data, a model was developed to quickly and accu- rately predict welding deformation and compliance with tolerance limits using machine learning algorithms. To manage the complexity of high-dimensional variables, Principal Component Analysis (PCA) was utilized, and predictive models were constructed using KNN, Decision Tree, and XGBoost algorithms. The prediction results indicated that XGBoost algorithm achieved the highest accuracy in predicting the amount of deformation, and Decision Tree algo- rithm excelled in predicting compliance with tolerance limits. The results of this study are expected to contribute to the design and quality control of adjustment pipes by providing a methodology that provides reliable predictions under various welding conditions.
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해양과학대학 (조선해양공학과)
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