[3] Min Wu*, Jian Liu, Xia Luo*, Yunzhong Liu, et al. The Powder Breakage Behavior and Mechanism During Semi-solid Powder Forming. JOM, 2023, 75: 2511–2524
[4] Xia Luo*, Mingyu Li, Jun Ren, Yuliang Zhao, Min Wu, Bensheng Huang. Deformation micromechanism and constitutive analysis behind the semisolid powder compression of medical Mg-Zn alloy. JOM, 2022, 74: 899–908
[5] Xia Luo*, Min Wu, Chao Fang, Bensheng Huang. The Current Status and Development of Semi-solid Powder Forming (SPF). JOM, 2019, 71 (12): 4349-4361.
[6] Xia Luo*, Chao Fang, Zhou Fan, Bensheng Huang. Semi-solid powder moulding for preparing medical Mg-3Zn alloy, microstructure evolution and mechanical properties. Mater. Res. Express, 2019, 6: 076528.
[7] Xia Luo*, Thomas Ebel, Florian Pyczak, Yuanhua Lin. Carbide evolution and its potential reduction methods in Ti-22Nb based alloys prepared by Metal Injection Moulding. Materials Letters, 2017, 193: 295-298
[8] Xia Luo, Yunzhong Liu*. The Effect of Particle size on the Mechanical Properties of Semi-solid Powder Rolled AA7050 strips. JOM, 2016, 68(12): 3078-3087.
[9] Xia Luo, Yunzhong Liu*, Zhuoqiang Mo, Caixin Gu. Semi-solid powder rolling of AA7050 alloy strips: densification behavior and deformation behavior. Metall. Mater. Trans. A, 2015, 46A: 2185-2193.
[10] Xia Luo, Yunzhong Liu*, Caixin Gu, Zhilong Li. Study on the Progress of Solidification, Deformation and Densification during Semi-solid powder rolling. Powder Technology, 2014, 216: 161-169.
[11] Yunzhong Liu, Xia Luo*. Microstructure evolution during semi-solid powder rolling and post-treatment of 7050 aluminum alloy strips. J. Mater. Process. Tech. 2014, 214: 165-174.