상세 보기
Through-Thickness Microstructures and Yield Strength Enhancement for AZ31 Mg Sheets Treated by Ultrasonic Nanocrystal Surface Modification
- Kang, Myungsung;
- Kang, Joo-Hee;
- Park, Hyeonuk;
- Kim, Jun-Hyung;
- Pyoun, Young-Sik;
- ... Park, Sung Hyuk;
- 외 6명
WEB OF SCIENCE
5SCOPUS
7초록
An ultrasonic nanocrystal surface modification (UNSM) technique was applied to a 1-mm thick AZ31 magnesium sheet. UNSM is a relatively new surface modification technique in which a hard, hemispherical tip (2.38 mm in diameter) strikes the surface at an ultrasonic frequency to induce plastically deformed gradient microstructures and deep compressive residual stresses through the thickness. After the UNSM treatment, the through-thickness microstructures were thoroughly investigated using electron microscopy and electron backscatter diffraction analysis. The through-thickness microstructures revealed zones that were severely deformed (down to 200 mu m from the surface) and twin-dominated (200 similar to 300 mu m deep from the surface). The severely deformed zone consisted of shear banding, grain subdivision and reorientation, due to the strong plastic deformation, accompanied by the formation of {1012} tensile twins (despite compressive strikes by the hemispherical tip), {10 (1) over bar1}-{10 (1) over bar2} double twins and {10 (1) over bar1} compression twins. The cause for tensile twinning was examined through a literature survey. In the twin-dominated zone, the twining activity prevailed as the slip activity gradually decayed through the thickness. The UNSM-induced hardness and microstructure enhancement was found to be effective down to about 300 similar to 400 mu m deep from the surface. Finally, the source of the increase in yield strength after the UNSM treatment of the AZ31 sheet was analyzed, and focused on individual cases of microstructural enhancement in the severely deformed zone and the twin zone, and the compressive residual stress.
키워드
- 제목
- Through-Thickness Microstructures and Yield Strength Enhancement for AZ31 Mg Sheets Treated by Ultrasonic Nanocrystal Surface Modification
- 저자
- Kang, Myungsung; Kang, Joo-Hee; Park, Hyeonuk; Kim, Jun-Hyung; Pyoun, Young-Sik; Baek, Minjae; Lee, Dong Jun; Lee, Seung Jin; Park, Sanghu; Kim, Hong Moule; Park, Sung Hyuk; Choi, Yoon Suk
- 발행일
- 2022-03
- 유형
- Article
- 저널명
- 대한금속·재료학회지
- 권
- 60
- 호
- 3
- 페이지
- 169 ~ 179
- 언어
- KOR
- 출판사
- KOREAN INST METALS MATERIALS
- 발행국가
- 대한민국
- 분량
- 11 페이지
- ISSN
- E 2288-8241
P 1738-8228