• 제목/요약/키워드: Heat resistant alloy Liquid phase diffusion bonding

검색결과 2건 처리시간 0.014초

신개발 Ni-3Cr-4Si-3B 삽입금속으로 액상확산접합한 내열주강 접합부의 특성 (Characteristics of Liquid Phase Diffusion Bonded Joints Using Newly Developed Ni-3Cr-4Si-3B Insert Metal of Heat Resistant Alloy)

    • Journal of Welding and Joining
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    • 제18권6호
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    • pp.62-67
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    • 2000
  • Metallurgical characteristics of bonded region and high temperature mechanical properties of heat resistant alloy, Fe-35Ni-26Cr during liquid phase diffusion bonding were investigated employing AM17 insert metal. The insert metal for bonding, AM17 was newly developed Ni-base metal using interpolation method. Bonding of specimens were carried out at 1,403~1,463K for 600s in vacuum. The microconstituents in the bonded interlayer disappeared in the bonding temperature over 1,423K. The microstructures, alloying elements and hardness distribution in the base metal. The tensile strength and elongation of the joints at elevated temperatures were the same level as one of the base metal in the bonding temperature over 1,423K. The creep rupture strength and rupture lives of joints were almost identical to those of base metal.

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액상확산접합용 인서트금속의 화학조성 최적화에 관한 연구 (A Study on the Optimum Chemical Composition of Insert Metal for Liquid Phase Diffuse Bonding)

  • 김대업;정승부;강정윤
    • Journal of Welding and Joining
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    • 제18권5호
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    • pp.90-97
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    • 2000
  • Effect of alloy elements on joinability of insert metal for liquid phase diffusion bonding of heat resistant alloys was investigated in this study. Also, optimum chemical composition of insert metal was explained using interpolation method. The insert metals utilized was commercial Ni-base amorphous foils and newly developed Ni-base filler metals with B, Si and Cr in this study. Melting point and critical interlayer width(CIW) decreased with increasing additional amount of B, Si and Cr, melting point lowering element of the insert metal. Optimized chemical composition of insert metals could be estimated by interpolation method. The optimum amount of B, Si, Cr addition into the insert metal were found to be about 3%, 4% and 3%, respectively. The measured characteristic values, melting point, microhardness in the bonded interlayer and CIW of the insert metals were the almost identical to ones of the calculated results by interpolation method.

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