Synergistic effect of ball milling time and nano-sized Y2O3 addition on hardening of Cu-based nanocomposites

Author:

Salur EminORCID

Publisher

Springer Science and Business Media LLC

Subject

Mechanical Engineering,Civil and Structural Engineering

Reference59 articles.

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2. Şap S, Uzun M, Usca ÜA, Pimenov DY, Giasin K, Wojciechowski S. Investigation on microstructure, mechanical, and tribological performance of Cu base hybrid composite materials. J Market Res. 2021;15:6990–7003.

3. Chakraborty S, Gupta A, Roy D, Basumallick A. Studies on nano-metal dispersed Cu–Cr matrix composite. Mater Lett. 2019;257: 126739.

4. Yang H, Ma Z, Lei C, Meng L, Fang Y, Liu J, Wang H. High strength and high conductivity Cu alloys: a review. Sci China Technol Sci. 2020;63:2505–17.

5. Li J, Ding H, Li B, Gao W, Bai J, Sha G. Effect of Cr and Sn additions on microstructure, mechanical-electrical properties and softening resistance of Cu–Cr–Sn alloy. Mater Sci Eng A. 2021;802: 140628.

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