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Authors:
Tang, Shunlong |
Zhou, Meng |
Zhang, Yi |
Xu, Deye |
Zhang, Zhiyang |
Zheng, Xianhua |
Li, De |
Li, Xu |
Tian, Baohong |
Jia, Yanlin |
Liu, Yong |
Volinsky, Alex A. |
Marchenko, Ekaterina S.
Source: Materials science and engineering A. 2023. Vol. 871. P. 144910 (1-16)
Type: статьи в журналах
Date: 2023
Description:
In this paper, new Cu–Ni–Sn–Ti–Cr and Cu–Ni–Sn–Ti–Cr–Ce alloys were prepared and studied. After solution treatment and 60% cold rolling, the Cu–Ni–Sn–Ti–Cr alloy with micro-hardness of 221 HV, a tensi
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Source: Materials and manufacturing processes. 2023. Vol. 38, № 6. P. 659-667
Type: статьи в журналах
Date: 2023
Description:
Porous NiTi alloys were obtained by self-propagating high-temperature synthesis (SHS) using layer-bylayer combustion in closed and open gas flow reactors under a protective argon atmosphere. The maxim
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Source: Journal of alloys and compounds. 2022. Vol. 918. P. 165617 (1-12)
Type: статьи в журналах
Date: 2022
Description:
Aluminum alloying effects (up to 2 at %) on the macrostructure, microstructure, and mechanical properties of porous nitinol (NiTi) obtained by self-propagating high-temperature synthesis (SHS) were st
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Source: Journal of alloys and compounds. 2022. Vol. 909. P. 164761 (1-12)
Type: статьи в журналах
Date: 2022
Description:
Powder metallurgy Cu-30Fe alloy was prepared by mechanical alloying, pressureless sintering, and rolling processes. The alloy microstructure and physical properties affected by rolling were studied. T
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