l 學(xué)術(shù)論文 [1] Bing Ma,et al. Effect of different Y components on optimization of dispersive Y2O3 particles in ODS-Cu. Journal of Nuclear Materials 571 (2022) 154016 [小類一區(qū)Top] [2] Bing Ma, et al. The optimization of Cu6Y sourced ODS-Cu: Effect of Y2O3 content Nuclear Materials and Energy 34 (2023) 101404. [小類一區(qū)] [3] Bing Ma, et al. The size dependence of microstructure and hardness on the MA powders for the MA-HIP processed Cu-Y2O3 dispersion-strengthened alloys. Nuclear Materials and Energy 24 (2020) 100773. [小類一區(qū)] [4] Bing Ma, et al. Development of Y2O3 dispersion strengthened Cu alloy using Cu6Y and Cu2O addition through the MA-HIP process. Fusion Engineering and Design 161 (2020) 112045. [5] Bing Ma, et al. Irradiation creep lifetime analysis on first wall structure materials for CFETR. Fusion Engineering and Design 118 (2017) 117–123. [6] Bing Ma, et al. Influence of Cu-Y compound content on the microstructure of Cu-Y2O3 dispersion strengthened alloys synthesized by MA and HIP process. Plasma and Fusion Research. Volume 16, 2405053 (2021). [7] B. Huang, Bing Ma*, et al. Investigations on the formation of multi-modal size distribution of mechanochemically processed Cu-Y-CuO powders. Fusion Engineering and Design 158 (2020) 111852. [8] Xiaoyuan Sun, Yifan Zhang*, Bing Ma*, et al. A comparative study on the microstructure and performance stability of Cu-Al2O3 and Cu-Y2O3 alloys after high-temperature annealing. Nuclear Materials and Energy 36 (2023) 101480 [9] Yongqiang Qin, Chenyu Deng, Bing Ma*, Yifan Zhang, Laima Luo*, Yucheng Wu. Effects of composite oxide addition on the microstructure and properties of ODS copper. Journal of Alloys and Compounds. 1 (2023) 170380. ● 授權(quán)專利 [1] 馬冰, 羅來馬, 吳玉程等,一種通過含銅金屬間化合物制備銅基復(fù)合材料的方法.發(fā)明, 授權(quán). [2] 馬冰, 羅來馬, 吳玉程等,一種制備金屬基復(fù)合材料的雙坩堝霧化制粉設(shè)備.發(fā)明,授權(quán). [3] 馬冰, 羅來馬, 吳玉程等,一種用來制備Cu基復(fù)合粉體的新型過程控制劑兼原位氧化劑. 發(fā)明, 實(shí)審中. |