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전역 최적화 알고리즘을 이용한 파이버 레이저 용접 열원 모델 구현에 관한 연구 Part I : 다층 용접 열원의 검증

원문정보

A Study for Heat Source Model for Fiber Laser Welding with Global Optimization AlgorithmPart I. Verification of Multi Layered Heat Source Model

표창민

피인용수 : 0(자료제공 : 네이버학술정보)

초록

영어

Welding is the most widely used technology for manufacturing in the automobile, and shipbuilding industries. Fiber laser welding is rapidly introduced into the field to minimize welding distortion and fast welding speed. Although it is advantageous to use finite element analysis to predict welding distortion and find optimized welding conditions, there are various heat source model for fiber laser welding. In this study, a welding heat source was proposed using a multi-layered heat source model that encompasses most of the existing various welding heat source models: conical shape, curved model, exponential model, conical-cylindrical model, and conical-conical model. A case study was performed through finite element analysis using the radius of each layer and the ratio of heat energy of the layer as variables, and the variables were found by comparing them with the actual experimental results. For case study, by applying Adaptive simulated annealing, one of the global optimization algorithms, we were able to find the heat source model more efficiently.

목차

ABSTRACT
1. 서론
2. 유한요소해석 및 최적화 알고리즘
2.1 Software
2.2 재료물성도출
2.3 유한요소해석모델의 구성
2.4 최적화 알고리즘
2.5 용접열원모델
3. 용접 실험
3.1 실험 장비
3.2 용접 시편
3.3 용접 비드 분석
4. 용접 영원 모델 탐색 방법
4.1 용접 열원 모델의 합격 판정 기준
4.2 열원 모델 파라미터의 범위
5. 결과 및 논의
6. 결론
후기
References

저자정보

  • 표창민 Chang-Min Pyo. Korea Institute of Industrial Technology, Researcher

참고문헌

자료제공 : 네이버학술정보

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