Paper Publications
- [9] 高通. Design and fabrication of a (6.4γ–Al2O3 + 18Al13Fe4)/Al (wt.%) composite utilizing fine grain strengthening and dispersion strengthening at elevated temperatures. Materials and design, 215, 2022.
- [10] 赵凯. Interface precipitation and corrosion mechanisms in a model Al-Zn-Mg-Cu alloy strengthened by TiC particles. CORROSION SCIENCE, 110533, 2022.
- [11] 杨化冰. A new insight into heterogeneous nucleation mechanism of Al by non-stoichiometric TiCx. Acta Materialia, 117977, 2022.
- [12] 马霞. Influence mechanisms of Cu or Fe on the microstructures and tensile properties at 350°C of network AlNp reinforced Al composites. JOURNAL OF ALLOYS AND COMPOUNDS , 740, 452-460, 2018.
- [13] 高通. Modification of primary and eutectic phases in Al-33.2Cu and Al-20Mg(2)Si alloys by nano-treating. MATERIALS LETTERS Journal, 286, 2021.
- [14] 任蕾. A novel core-shell TiCx particle by modifying TiCx with B element and the preparation of the (TiCx + AlN)/Al composite. JOURNAL OF ALLOYS AND COMPOUNDS , 894, 2022.
- [15] 秦敬玉. Different evolution behaviors of NAl4 and PAl4 clusters in liquid Al-N and Al-P alloys. 计算材料科学, 196, 2021.
- [16] 孟凡超. Influence of evolution of heat-resistant phases on elevated temperature strengthening mechanism and deformation behavior in Al-Si multicomponent alloys. Current Applied Physics, 2022.
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