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고상확산접합된 Haynes230의 인장성질에 미치는 접합조건의 영향
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  • 고상확산접합된 Haynes230의 인장성질에 미치는 접합조건의 영향
저자명
강길모,전애정,김홍규,홍성석,강정윤,Kang. Gil-Mo,Jeon. Ae-Jeong,Kim. Hong-Kyu,Hong. Sung-Suk,Kang. Chung-Yun
간행물명
大韓溶接·接合學會誌
권/호정보
2013년|31권 3호|pp.76-83 (8 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 study investigated the effect of bonding temperature and holding time on microstructures and mechanical properties of diffusion bonded joint of Haynes230. The diffusion bonds were performed at the temperature of 950, 1050, and $1150^{circ}C$ for holding times of 30, 60, 120 and 240 minutes at a pressure of 4MPa under high vacuum condition. The amount of non-bonded area and void observed in the bonded interface decreased with increasing bonding temperature and holding time. Cr-rich precipitates at the linear interface region restrained grain migration at $950^{circ}C$ and $1050^{circ}C$. However, the grain migration was observed in spite of short holding time due to the dissolution of precipitates to base metal in the interface region at $1150^{circ}C$. Three types of the fracture surface were observed after tensile test. The region where the coalesce and migration of grain occurred much showed high fracture load because of base metal fracture whereas the region where those did less due to the precipitates demonstrated low fracture load because of interface fracture. The expected fracture load could be derived with the value of fracture area of base metal ($A_{BF}$) and interface ($A_{IF}$), $Load=201A_{BF}+153A_{IF}$. Based on this equation, strength of base metal and interface fracture were calculated as 201MPa and 153MPa, respectively.