THE EFFECTS OF GRAIN BOUNDARY STRUCTURES ON MECHANICAL PROPERTIES IN NANOCRYSTALLINE Al ALLOY

  • Jang, Jin Man
  • Lee, Wonsik
  • Ko, Se-Hyun
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초록

This study investigates the effects of grain boundary structures on mechanical properties of nanocrystalline Al-0.7Mg-1.0Cu alloy using nanoindentation system. Grain boundary structure transforms to high angle grain boundaries from low angle ones with increase of heat treatment temperature and the transformation temperature is about 400 degrees C. Young's modulus and hardness are higher in sample with low angle grain boundaries, while creep length is larger in sample with high angle ones. These results indicate that progress of plastic deformation at room temperature is more difficult in sample with low angle ones. During compression test at 200 degrees C, strain softening occurs in all samples. However, yield strength in sample with low angle grain boundaries is higher twice than that with high angle ones due to higher activation energy for grain boundary sliding.

키워드

nanocrystalline Al alloyYoung's modulushardnessnanoindentationlow and high angle grain boundaryDEFORMATIONALUMINUMLOAD
제목
THE EFFECTS OF GRAIN BOUNDARY STRUCTURES ON MECHANICAL PROPERTIES IN NANOCRYSTALLINE Al ALLOY
저자
Jang, Jin ManLee, WonsikKo, Se-Hyun
DOI
10.24425/amm.2021.136408
발행일
2021
유형
Article
저널명
Archives of Metallurgy and Materials
66
4
페이지
971 ~ 975