다중 반응표면분석법을 이용한 980MPa급 GA강판의 저항 점 용접조건 최적화

Optimization of Welding Parameters in Resistance Spot Welding of 980 MPa Grade GA Steel Sheet using Multi-Response Surface Methodology

초록

In this study, the welding quality prediction model with high reliability was developed for the 980 MPa grade TRIP steel with minimum conditions in resistance spot welding process using response surface methodology. The welding time and welding current were selected as the important parameters. The welding quality was predicted by deriving four parameters including tensile shear strength, nugget size, expulsion, and button fracture. The experiment was carried out by using the central composite design. Then, the regression equation derived using the result data was analyzed and the effect of the independent variable on the objective function was analyzed by ANOVA. The welding time had a very small effect on tensile shear strength and nugget, but welding current had a dominant effect on the two properties. Also, the reliability of the derived regression model equation is verified by R correlation coefficient and experiments.

제목
다중 반응표면분석법을 이용한 980MPa급 GA강판의 저항 점 용접조건 최적화
제목 (타언어)
Optimization of Welding Parameters in Resistance Spot Welding of 980 MPa Grade GA Steel Sheet using Multi-Response Surface Methodology
저자
SOONGKEUN HYUN
학회명
2018 대한용접접합학회
개최지
김대중컨벤션센터 (광주)
학회 개최일
2018-04-19 ~ 2018-04-20