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해상풍력 발전용 타워 제작시 고장력강재의 초층용접에 관한 용접특성 연구
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  • 해상풍력 발전용 타워 제작시 고장력강재의 초층용접에 관한 용접특성 연구
저자명
정성명,김일수,김지선,나현호,이지혜,Jung. Sung-Myoung,Kim. Ill-Soo,Kim. Ji-Sun,Na. Hyun-Ho,Lee. Ji-Hye
간행물명
한국생산제조시스템학회지
권/호정보
2012년|21권 2호|pp.349-353 (5 pages)
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한국생산제조시스템학회
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이 논문은 한국과학기술정보연구원과 논문 연계를 통해 무료로 제공되는 원문입니다.
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기타언어초록

As the world wind energy market grows rapidly, the productions of wind power generation equipment have recently increased, but manufacturers are not able meet this requirement. Particularly offshore wind energy industry is one of the most popular renewable energy sectors. To generalize welding processes, the welding automation is considered for steel structure manufacturing in offshore wind energy to get high quality and productivity. Welding technology in construction of the wind towers is depended on progress productivity. In addition, the life of wind tower structures should be considered by taking account of the natural weathering and the load it endures. The root passes are typically deposited using Gas Tungsten Arc Welding(GTAW) with a specialized backing gas shield. Not only the validation consists of welders experienced in determining the welding productivity of the baseline welding procedure, but also the standard testing required by the ASME section IX and API1104 codes, toughness testing was performed on the completed field welds. This paper presents the welding characteristics of the root-pass welding of high tensile steel in manufacturing of offshore wind tower. Based on the result from welding experiments, optimal welding conditions were selected after analyzing correlation between welding parameters(peak current, background current and wire feed rate) and back-bead geometry such as back-bead width(mm) and back-bead height performing root-pass welding experiment under various conditions. Furthermore, a response surface approach has been applied to provide an algorithm to predict an optimal welding quality.