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副教授 博士生导师
入职时间:
2015-09-18
所在单位:
资源加工与生物工程学院
学历:
博士研究生毕业
办公地点:
姜涛院士团队
性别:
男
联系方式:
yanglingzhi@163.com
学位:
博士学位
在职信息:
在职
毕业院校:
北京科技大学
学科:
冶金工程
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论文成果
[21]Lingzhi Yang, Zeshi Yang, Guangsheng Wei, Yufeng Guo, Feng Chen, Fuqiang Zheng. Influence of Ambient and Oxygen Temperatures on Fluid Flow Characteristics Considering Swirl-type Supersonic Oxygen Jets. ISIJ
[22]Zeshi Yang, Lingzhi Yang, Ting Cheng, Feng Chen, Fuqiang Zheng, Shuai Wang, Yufeng Guo. Fluid Flow Characteristic of EAF Molten Steel with Different Bottom-Blowing Gas Flow Rate Distributions. ISIJ International. 2020,60(9): 1957-1967.
[23]胡航,杨凌志*,易娟,张盟,宋景凌,郭宇峰.电弧炉炼钢能量优化与节能技术研究现状与展望[J].工业加热,2021,50(03):1-7+12.
[24]Hang Hu, Lingzhi Yang*, Yufeng Guo, Feng Chen, Shuai Wang, Fuqiang Zheng, Bo Li. Numerical Simulation of Bottom-Blowing Stirring in Different Smelting Stages of Electric Arc Furnace Steelmaking. Metals 2021, 11(5), 799;
[25]Botao Xue, Lingzhi Yang* , Yufeng Guo, Feng Chen, Shuai Wang, Fuqiang Zheng, Zeshi Yang. Design and Construction of a Laboratory-Scale Direct-Current Electric Arc Furnace for Metallurgical and High-Titanium Slag Smelting Studies. Metals 2021, 11(5), 732;
[26]杨凌志,薛波涛,宋景凌,魏光升,郭宇峰,谢鑫,刘全胜.电弧炉炼钢炉渣成分实时预报模型. 工程科学学报[J].2020,42(S1):39-46.
[27]Ming Lv*, Rong Zhu, Lingzhi Yang*.High Efficiency Dephosphorization by Mixed Injection during Steelmaking Process. Steel research international. 2019, 90(3): 1800454
[28]杨泽世,杨凌志*,宋景凌,郭宇峰,魏光升,王柏惠,孙永钊.电弧炉EBT区不同底吹搅拌条件的钢液流动数值模拟[J].工程科学学报,2018,40(S1):123-129[J].工程科学学报
[29]Shuai Wang, Yufeng Guo*, Jianjun Fan, Yu He, Tao Jiang, Feng Chen, Fuqiang Zheng, Lingzhi Yang*.Initial stage of deposit formation process in a coal fired grate-rotary kiln for iron ore pellet production. Fuel Processing Technology. 175 (2018) 54-63
[30]Guangsheng Wei, Rong Zhu, Xuetao Wu, Lingzhi Yang*, Kai Dong, Ting Cheng*, and Tianping Tang. Study on the Fluid Flow Characteristics of Coherent Jets with CO2 and O2 Mixed Injection in Electric Arc Furnace Steelmaking Processes. Metallurgical & Materials Transactions B. 2018, 49B(3):1405-1420
[31]Guangsheng Wei, Rong Zhu*, Xuetao Wu, Kai Dong, Lingzhi Yang*, Runzao Liu. Technological Innovations of Carbon Dioxide Injection in EAF-LF Steelmaking. JOM,pp1-8. https://doi.org/10.1007/s11837-018-2814-3[J]
[32]Zeshi Yang, Ling-zhi Yang*, Yu-feng Guo, Guangsheng Wei, Ting Cheng.Simulation of Velocity Field of Molten Steel in Electric Arc Furnace Steelmaking. 9th International Symposium on High-Temperature Metallurgical Processing. Phoenix, 2018.03.11-2018.03.15, pp 69-79[C]
[33]Lingzhi Yang*, Rong Zhu, Kai Dong, Guangsheng Wei. Research of Digital Platform and Process Guidance Model in EAF Steelmaking Process. 9th International Symposium on High-Temperature Metallurgical Processing. Phoenix, 2018.03.11-2018.03.15, pp 591-600[C]
[34]Tianping Tang, Lingzhi Yang, Rong Zhu, Guangsheng Wei.Guangsheng Wei, Rong Zhu, Lingzhi Yang, Tianping Tang. Hybrid Modeling for Endpoint Carbon Content Prediction in EAF Steelmaking. Materials Processing Fundamentals 2018. Phoenix, 2018.03.11-2018.03.15, pp 211-224[C]
[35]L Yang, T Jiang, G Li, Y Guo, F Chen .Present Situation and Prospect of EAF Gas Waste Heat Utilization Technology. High Temperature Materials and Processes. DOI : https://doi.org/10.1515/htmp-2016-0218[J]
[36]王柏惠,杨凌志,郭宇峰,董凯,王超,杨泽世.电弧炉炼钢成分预报现状与熔池搅拌对其影响[J].中国冶金,2017,27(12):1-7
[37]Fei Zhao, Dongbai Sun,Rong Zhu, Lingzhi Yang*. Effect of Shrouding Gas Parameters on Characteristics of Supersonic Coherent Jet. Metallurgical & Materials Transactions B, 2017, 48(3): 1807-1816
[38]Lingzhi Yang, Yufeng Guo, Feng Chen, ZeQiang Xie, Baihui Wang, Alloy Yield Prediction Model Based on the Data Analysis in EAF Steelmaking Process, 8th International Symposium on High-Temperature Metallurgical Processing, San Diego, Calif., USA,2017.02.26-2017.02.28
[39]Ling-zhi Yang,Tao Jiang, Guang-hui Li, Yu-feng Guo. Discussion of Carbon Emissions for Charging Hot Metal in EAF Steelmaking Process, High Temperature Materials and Processes. 2017, 36(6): 615-621
[40]G. Ma, R. Zhu, K. Dong, Z. Li, R. Liu, L.Yang* , G. Wei Development and application of electric arc furnace combined blowing technology, Ironmaking & Steelmaking, 2016, 43(8), 594-599
共57条 2/3
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