Effect of Aging Treatment on the Microstructure and Low Temperature Tensile Properties in 5083 Aluminum Alloy Weldments

5083 Al합금 용접재의 조직 및 저온 인장성질메 미치는 시효처리의 영향

  • Lee, T.C. (Department of Metallurgical Engineering, Dong-A University) ;
  • Lee, H.W. (Welding Research Team, Samsung Heavy Industries Co.) ;
  • Joo, D.W. (Department of Metallurgical Engineering, Dong-A University) ;
  • Lee, J.H. (Department of Metallurgical Engineering, Dong-A University) ;
  • Sung, J.H. (Department of Metallurgical Engineering, Dong-A University)
  • 이태청 (동아대학교 금속공학과) ;
  • 이해우 (삼성중공업 조선플랜트연구소 용접연구팀) ;
  • 주동원 (동아대학교 금속공학과) ;
  • 이준희 (동아대학교 금속공학과) ;
  • 성장현 (동아대학교 금속공학과)
  • Received : 1999.11.01
  • Published : 2000.01.30

Abstract

The microstructural characteristics and low temperature tensile properties between $25^{\circ}C$ and $-196^{\circ}C$ for as-welded and age hardened specimen by using Al 5083-H321 for base metal, 5083-5356 and 5083-4043 weldments have been investigated. The hardness of 5083-5356 weldment decreases with aging treatment, whereas the weld region of 5083-4043 weldment shows remarkable increase in hardness after aging due to the precipitation of fine Si particle at the grain boundaries and interiors. Low temperature tensile properties of 5083 AI base metal, 5083-5356 and 5083-4043 weldments appear to be the increment of tensile strengths and elongations at the room temperature and $-196^{\circ}C$, while the decrement of tensile properties around $-50^{\circ}C$ is shown. Through the observation of fine serration to fracture in the stress-strain curve and tensile fractography, the increment of localized deformation leading to promote the neck initiation and the increment of the dimple size cause to decrease in tensile strengths and elongations around $-50^{\circ}C$. For the tensile specimen of the 5083 base metal, 5083-5356 and 5083-4043 weldments, the reason to increase in elongation after solution and aging treatment is the diminishment of fine pit, the resolution of Mg into the matrix and the spheridization of the eutectic Si.

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