1. Chen Rongchuang (#), Hong Cheng , Li Jianjun (*), et al. Austenite grain growth and grain size distribution in isothermal heat-treatment of 300M steel. Procedia Engineering, 2017, 207, 663-668. (EI) 2. Chen Rongchuang(#); Zheng Zhizhen(*); Li Ning; Li Jianjun; Feng Fei, In-situ investigation of phase transformation behaviors of 300M steel in continuous cooling process, Materials Characterization, 2018.10, 144: 400-410 (SCI Q1) 3. Chen Rongchuang(#); Zheng Zhizhen(*); Li Jianjun; Li Ning; Feng Fei, In Situ Investigation of Grain Evolution of 300M Steel in Isothermal Holding Process, Materials, 2018.10, 11(10): 1862 (SCI Q2) 4. Chen Rongchuang(#); Guo Peng; Zheng Zhizhen(*); Li Jianjun; Feng Fei, Dislocation Based Flow Stress Model of 300M Steel in Isothermal Compression Process, Materials, 2018.06, 11(6): 972 (SCI Q2) 5. Chen Rongchuang(#); Zheng Zhizhen(*); Li Jianjun; Feng Fei, Constitutive Modelling and Hot Workability Analysis by Microstructure Examination of GH4169 Alloy, Crystals, 2018.07, 8(7): 282 (SCI Q2区) 6. Chen, R., Xiao, H., Wang, M., Li, J. Flow Behavior and Hot Processing Map of GH4698 for Isothermal Compression Process. Processes 2019, 7, 491. (SCI 2区论文) 7. Chen, R., Xiao, H., Wang, M., Li, J. Hot Workability of 300M Steel Investigated by In Situ and Ex Situ Compression Tests. Metals 2019, 9, 880. (SCI 1区论文) 8. Chen, R., Zeng, J., Yao, G. Flow Stress Model of 300M steel for Multi-pass Compression. Metals, 2020. (SCI 1区论文) 9. 陈荣创(#); 郑志镇(*); 李建军; 李蓬川, 局部控温对300M钢大型锻件微观组织演化的影响, 塑性工程学报, 2018, (05): 46~52 (中文核心) 10. 陈荣创,李建军,高强钢起落架模锻过程的微观组织模拟[C],第十三届泛珠三角(扩大)塑性工程(锻压)学术年会,湖北武汉,2019.11.(国内会议论文) |