메뉴 건너뛰기
.. 내서재 .. 알림
소속 기관/학교 인증
인증하면 논문, 학술자료 등을  무료로 열람할 수 있어요.
한국대학교, 누리자동차, 시립도서관 등 나의 기관을 확인해보세요
(국내 대학 90% 이상 구독 중)
로그인 회원가입 고객센터 ENG
주제분류

추천
검색

논문 기본 정보

자료유형
학술저널
저자정보
Jan Dutkiewicz (Polish Academy of Sciences) Piotr Bobrowski (Polish Academy of Sciences) Stanislav Rusz (Technical University Ostrav) Ondrej Hilser (Technical University Ostrav) Tomasz A. Tański (Silesian Technical University) Wojciech Borek (Silesian Technical University) Marek Łagoda (AGH University of Science and Technology) Paweł Ostachowski (AGH University of Science and Technology) Paweł Pałka (AGH University of Science and Technology) Grzegorz Boczkal (AGH University of Science and Technology) Dariusz Kuc (Silesian Technical University) Tomasz Mikuszewski (Silesian Technical University)
저널정보
대한금속·재료학회 Metals and Materials International Metals and Materials International Vol.24 No.5
발행연도
2018.1
수록면
1,077 - 1,089 (13page)

이용수

표지
📌
연구주제
📖
연구배경
🔬
연구방법
🏆
연구결과
AI에게 요청하기
추천
검색

초록· 키워드

오류제보하기
MgLiAl alloy containing 9 wt% Li and 1.5% Al composed of hexagonal α and bcc β phases was cast under protecting atmosphereand hot extruded. Various methods of severe plastic deformation were applied to study their effect on structure and grainrefi nement. Rods were subjected to 1–3 passes of Twist Channel Angular Pressing TCAP (with helical component), cycliccompression to total strain ε = 5 using MAXStrain Gleeble equipment, both performed at temperature interval 160–200 °Cand, as third SPD method, KOBO type extrusion at RT. The TCAP pass resulted in grain refi nement of α phase from 30 μmdown to about 2 μm and that of β phase from 12 to 5 μm. Maxstrain cycling 10 × up to ε = 5 led to much fi ner grain size of300 nm. KOBO method performed at RT caused average grain size refi nement of α and β phases down to about 1 μm. Hardnessof alloy decreased slightly with increasing number of TCAP passes due to increase of small void density. It was higherafter MAXStrain cycling and after KOBO extrusion. TEM studies after TCAP passes showed higher dislocation density inthe β region than in the α phase. Crystallographic relationship (001) α|| (110) β indicated parallel positioning of slip planesof both phases. Electron diff raction technique confi rmed increase of grain misorientation with number of TCAP passes. Stress/strain curves recorded at temperature 200 °C showed superplastic forming after 1st and 3rd TCAP passes with bettersuperplastic properties due to higher elongation with increasing number of passes. Values of strain rate sensitivity coeffi cientm were calculated at 0.29 after 3rd TCAP pass for strain rate range 10 −5 to 5 × 10 −3 s −1 . Deformation by MAXStrain cyclingcaused much more effective grain refi nement with fi ne microtwins in α phase. Superplastic deformation was also observed inalloy deformed by KOBO method, however the value of m = 0.21 was obtained at lower temperature of deformation equal to160 °C and deformation rate in the range 10 −5 to 5 × 10 −3 . Tensile samples deformed superplastically showed grain growthand void formation caused by grain boundary slip. Summarizing, all methods applied resulted in suffi cient grain refi nementto obtain the effect of superplastic deformation for alloys of two phase α + β structure.

목차

등록된 정보가 없습니다.

참고문헌 (18)

참고문헌 신청

함께 읽어보면 좋을 논문

논문 유사도에 따라 DBpia 가 추천하는 논문입니다. 함께 보면 좋을 연관 논문을 확인해보세요!

이 논문의 저자 정보

최근 본 자료

전체보기

댓글(0)

0