2018
7. Guo, X.Z., Zhao, Y.H., Zhang, S.H., U-R relationship prediction method for aluminum alloy circular tube free-bending process based on sensitivity analysis of material parameters. Advanced Manufacturing Technology, 2018. 99(5): 1967-1977.
6. Liang, N.N., Zhao, Y.H.*, Li, Y., Zhu, Y.T., Lavernia, E.J., Influence of microstructure on thermal stability of ultrafine-grained Cu processed by equal channel angular pressing. Journal of Materials Science, 2018. 53(18): 13173-13185.
5. Xia, Z.H., Zhang, M., Zhang, Y., Zhao, Y.H., Liaw, P.K., Qiao, J.W., Effects of Ni-P amorphous films on mechanical and corrosion properties of Al0.3CoCrFeNi high-entropy alloys. Intermetallics, 2018. 94: 65-72.
4. Ding, Z.G., Liu, W., Sun, H., Li, S., Zhang, D.L., Zhao, Y.H., Lavernia, E.J., Zhu, Y.T., Origins and dissociation of pyramidal <c+a> dislocations in magnesium and its alloys. Acta Materialia, 2018. 146: 265-272.
3. Liang, N., Liu, J., Lin, S., Wang, Y., Wang, J.T., Zhao, Y., Zhu, Y., A multiscale architectured CuCrZr alloy with high strength, electrical conductivity and thermal stability. Journal of Alloys and Compounds, 2018. 735: 1389-1394.
2. Zou, J.Y., Liu, D.D., Zhao, J.N., Zhao, Y.H., Zhu, Y.T., Li, Q.W., Ni nanobuffer layer provides light-weight CNT/Cu fibers with superior robustness, conductivity, and ampacity. ACS Applied Materials & Interfaces, 2018. 10(9): 8197-8204.
1. Lu, Y.P., Gao, X.X., Dong, Y., Wang, T.M., Chen, H.L., Maob, H.H., Zhao, Y.H.*, Jiang, H., Cao, Z.Q., Li, T.J., Guo, S.*, Preparing bulk ultrafine-microstructure high-entropy alloys via direct solidification. Nanoscale, 2018. 10(4): 1912-1919.