Analiz evolyutsii mikrostruktury splava Co-28Cr-6Mo v protsesse goryachey deformatsii
Author:
Affiliation:
1. Национальный исследовательский технологический университет МИСИС (НИТУ МИСИС)
2. ФГБУН Институт металлургии и материаловедения им. А.А. Байкова Российской академии наук (ИМЕТ РАН)
Publisher
The Russian Academy of Sciences
Reference12 articles.
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2. Ibrahim, M.Z. Biomedical materials and techniques to improve the tribological, mechanical and biomedical properties of orthopedic implants: A review article / Ibrahim M.Z., Sarhan A.A.D., Yusuf F., Hamdi M. //j. Alloys and Comp. 2017. V.714. P.636-667.
3. Yamashita, Y. Dynamic recrystallization behavior of biomedical CCM alloy with additions of C and N / Yamashita Y., Li Y., Onodera E., Matsumoto H., Chiba A. // Mater. Trans. 2010. V.51. Is.9. P.1633-1639.
4. Guo, S. An investigation on the hot deformation behavior and processing maps of Co-Ni-Cr-W-based superalloy / Guo S., Wu S., Guo J., Shen Y., Zhang W. //j. Manufact. Proc. 2022. V.74. P.100-111.
5. Chiba, A. Construction of processing map for biomedical Co-28Cr-6Mo-0,16N alloy by studying its hot deformation behavior using compression tests / Chiba A., Lee S-H., Matsumoto H., Nakamura M. // Mater. Sci. Eng. A. 2009. V.513, 514. P.286-293.
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