고함량의 Mg을 함유한 Al-Mg 합금의 이축교번단조 변형에 따른 미세조직 및 인장특성 변화

Microstructure Evolution and Tensile Properties of Al-Mg Alloy Containing a High Content of Mg by Biaxial Alternative Forging
  • 신영철
  • 하성호
  • 윤영옥
  • 김세광
  • 최호준
  • ... 현승균
  • 외 1명

초록

Microstructure evolution and tensile properties of Al-8mass%Mg alloy casting billet by biaxial alternative forging were investigated in this study. An alternative forging system tailored in this study was used to allow continuous strain accumulations on the alloy workpiece. A finite element (FE) simulation results revealed that the strain was mainly concentrated in the core and that the shear bands developed into a form with an X shape in the cross-section of workpiece after the alternative forging using octangular rod shaped dies. With increasing the forging passes, it was observed that the Al-8mass%Mg alloy workpieces were significantly deformed, and cracks began to form and propagate on the both ends of the forged workpieces after five passes at room temperature. In as-forged microstructures taken by microscopes, twins, clustering of dislocations, and fine subgrains were found. Tensile strengths of the forged specimens showed significant increases depending on the number of forging passes, and a trade-off relationship was observed between the elongation and strength. At room temperature and 100 ℃, the workpieces showed similar behaviors in microstructural evolution and tensile properties depending on forging passes, while the increase range in strength was reduced at 200 ℃.

키워드

Al-Mg SystemStrain HardeningMulti-ForgingMicrostructureTensile Property
제목
고함량의 Mg을 함유한 Al-Mg 합금의 이축교번단조 변형에 따른 미세조직 및 인장특성 변화
제목 (타언어)
Microstructure Evolution and Tensile Properties of Al-Mg Alloy Containing a High Content of Mg by Biaxial Alternative Forging
저자
신영철하성호윤영옥김세광최호준현경환현승균
DOI
10.5228/kstp.2019.28.6.361
발행일
2019-12
유형
Y
저널명
소성가공
28
6
페이지
361 ~ 367