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TMCP강의 용접 공정별 입열량에 따른 용접부 물성 평가 및 비교
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  • TMCP강의 용접 공정별 입열량에 따른 용접부 물성 평가 및 비교
저자명
최철영,지창욱,김형찬,남대근,김정돈,김순국,박영도,Choi. Chul Young,Ji. Chang Wook,Kim. Hyoung Chan,Nam. Dae-Geun,Kim. Joungdon,Kim. Soon Kook,Park. Ye
간행물명
Journal of welding and joining
권/호정보
2014년|32권 1호|pp.6-14 (9 pages)
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대한용접접합학회
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이 논문은 한국과학기술정보연구원과 논문 연계를 통해 무료로 제공되는 원문입니다.
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기타언어초록

This paper has an aim to evaluate microstructure and fracture toughness of TMCP steel weldment applied for off-shore wind tower with the focus on the effect of heat input on the weldment with various welding processes; FCAW(13kJ/cm and 30kJ/cm), SAW(62kJ/cm), and EGW(177kJ/cm). Based on experimental results developed from this study, it was found that the impact toughness of top side for TMCP steel weldments with heat input up to 62 kJ/cm satisfied the required minimum value except the EGW(177kJ/cm). The heat input and microstructure are the main factors of impact toughness. The heat input of 13kJ/cm on back side with low heat input increased the amount of grain boundary ferrite which has low impact toughness, and heat input of 177kJ/cm on top side is significant enough to produce the austenite grain growth. The compositions and sizes of inclusions which are the dominant factors for the formation of acicular ferrite were analyzed by OM and EDS. As the heat input increased, the inclusions also grew and a nucleation site decreased. The size of nonmetallic inclusions and the crack width was nearly similar, therefore the inclusions were related with the crack propagation.