Li, S.; Wang, W.; Cui, Y.; Xie, J.; Wang, A.; Mao, Z.; Zhang, F.
Trace Zr Addition Enhances Strength and Plasticity in Cu-Zr/Al2Cu/Al Alloys via Local FCC-to-BCC Transition: Molecular Dynamics Insights on Interface-Specific Deformation and Strain Rate Effects. Materials 2025, 18, 1480.
https://doi.org/10.3390/ma18071480
AMA Style
Li S, Wang W, Cui Y, Xie J, Wang A, Mao Z, Zhang F.
Trace Zr Addition Enhances Strength and Plasticity in Cu-Zr/Al2Cu/Al Alloys via Local FCC-to-BCC Transition: Molecular Dynamics Insights on Interface-Specific Deformation and Strain Rate Effects. Materials. 2025; 18(7):1480.
https://doi.org/10.3390/ma18071480
Chicago/Turabian Style
Li, Shuang, Wenyan Wang, Yunfeng Cui, Jingpei Xie, Aiqin Wang, Zhiping Mao, and Feiyang Zhang.
2025. "Trace Zr Addition Enhances Strength and Plasticity in Cu-Zr/Al2Cu/Al Alloys via Local FCC-to-BCC Transition: Molecular Dynamics Insights on Interface-Specific Deformation and Strain Rate Effects" Materials 18, no. 7: 1480.
https://doi.org/10.3390/ma18071480
APA Style
Li, S., Wang, W., Cui, Y., Xie, J., Wang, A., Mao, Z., & Zhang, F.
(2025). Trace Zr Addition Enhances Strength and Plasticity in Cu-Zr/Al2Cu/Al Alloys via Local FCC-to-BCC Transition: Molecular Dynamics Insights on Interface-Specific Deformation and Strain Rate Effects. Materials, 18(7), 1480.
https://doi.org/10.3390/ma18071480