강관의 고주파 저항용접에서 내로우갭 주위의 전자기장 및 온도분포 해석Analysis of Electromagnetic Field and Temperature Distribution around Narrow Gap in High-frequency Resistance Welding of Steel Pipe
- Other Titles
- Analysis of Electromagnetic Field and Temperature Distribution around Narrow Gap in High-frequency Resistance Welding of Steel Pipe
- Authors
- 양영수; 배강열
- Issue Date
- Oct-2023
- Publisher
- 한국정밀공학회
- Keywords
- 고주파 저항용접; 유한요소해석; 온도분포; 전자기장; 내로우갭; High frequency resistance welding; Finite element analysis; Temperature distribution; Electromagnetic field; Narrow gap
- Citation
- 한국정밀공학회지, v.40, no.10, pp 829 - 837
- Pages
- 9
- Indexed
- SCOPUS
KCI
- Journal Title
- 한국정밀공학회지
- Volume
- 40
- Number
- 10
- Start Page
- 829
- End Page
- 837
- URI
- https://scholarworks.gnu.ac.kr/handle/sw.gnu/68149
- DOI
- 10.7736/JKSPE.023.053
- ISSN
- 1225-9071
2287-8769
- Abstract
- When a narrow gap was formed under appropriate welding conditions in the steel pipe manufacturing process using highfrequency resistance welding, temperature distribution was analyzed to predict the length of the gap. Assuming the length of the gap from the apex point to the welding point at an applied voltage, and calculating the temperature distribution around the gap, the length of the gap with an appropriate fusion width at the welding point could be estimated. Along with this, the current density and magnetic flux density distributions that appeared in the narrow gap were obtained according to the change in the applied voltage, and the distribution shape and size of the electromagnetic force acting on the gap were also predicted. The current density, magnetic flux density, and electromagnetic force gradually increased along the narrow gap, showing the maximum value at the welding point. In the temperature distribution in the narrow gap, the surface of the front end began to melt at an appropriate applied voltage, and the melting width was the largest at the welding point. As the applied voltage increased, the narrow gap became longer, and the appropriate gap length appeared in proportion to the applied voltage.
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Collections - 융합기술공과대학 > Division of Mechatronics Engineering > Journal Articles

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