Site icon Sciencefather

Han Sun | Multiscale simulation | Young Scientist Award

Dr. Han Sun – Multiscale simulation – Young Scientist Award

Shanghai University | China

      Profiles

Scopus

📍Current Position

Han Sun is currently a third-year doctoral student at the School of Materials Science and Engineering, Shanghai University, located in Shanghai, China. His research, conducted under the supervision of Prof. Jian Yang, focuses on advancing low-carbon steelmaking processes and understanding the microstructure and thermophysical properties of metallurgical slag and melts.

 

📝Publication Achievements 

Han Sun has made significant contributions to the field of metallurgical engineering through his extensive publication record. As the first author, he has published 12 SCI papers, with 11 appearing in JCR Q1 & Q2 journals. Notable papers include: “Effect of slag basicity on dephosphorization at lower basicity and lower temperature based on industrial experiments and Ion-Molecular Coexistence Theory” in Metallurgical and Materials Transactions B (2021). “Insight into the structure and transport properties of CaO-SiO2-P2O5 system during the phosphorus enrichment process: A molecular dynamics simulation” in Journal of Non-Crystalline Solids (2024). “Topological understanding of TiO2 on rheological behavior and heat transfer of the CaO-SiO2-FeO-MgO system at different basicities: molecular dynamics simulation and thermodynamics” in Ceramics International (Accepted).

 

🔍Ongoing Research

Han Sun’s current research focuses on several cutting-edge areas in metallurgical engineering: Molecular Dynamics Simulation: Using machine learning potential functions to accurately predict thermophysical parameters and mechanical properties in metallurgical processes. Dephosphorization Hot-State Experiments: Investigating the micro-mechanisms of phosphorus fixation by CaO using first principles theory. Resource Utilization: Exploring methods for extracting valuable elements from metallurgical waste and their high-value resource utilization. Machine Learning Applications: Predicting the composition and performance of finished products in integrated iron and steel plants.

 

🔬 Research Interests

Han Sun’s research interests are centered around the following key areas: Low-Carbon Steelmaking Processes: Developing new methodologies to reduce carbon emissions in steelmaking. Metallurgical Slag and Ferroalloy Properties: Understanding the microstructure and thermophysical properties of these materials. Non-Metallic Inclusions in Steel: Studying their distribution and formation mechanisms. Resource Utilization of Metallurgical Waste: Finding efficient ways to recycle and utilize waste products from metallurgical processes.

 

🎓Academic Background

Han Sun’s academic journey began at Shanghai University, where he earned his Bachelor of Metallurgical Engineering in June 2019. He continued at the same institution for his Master of Metallurgical Engineering, graduating in June 2021. He is now pursuing a Doctor of Metallurgical Engineering degree at Shanghai University, starting from September 2021. His academic work has been deeply rooted in the study of metallurgical processes, guided by Prof. Jian Yang.

 

🏆Scholarships and Awards 

Han Sun’s excellence has been recognized through various scholarships and awards, including: 2022-2023 Excellence Award in China Innovation Challenge (Ningbo).2020-2021 Grand Prize in Jiangsu Metallurgical Engineering Graduate Innovation Practice Competition. Top-level Scholarship for Doctoral Candidates at Shanghai University (2020-2023). Kennametal Scholarship (2023) and Leadingmetal Scholarship (2023).

 

🧬Bioinformatics 

While Han Sun’s primary focus is on metallurgical engineering, there is an intriguing intersection with bioinformatics, particularly in the application of computational techniques and simulations. Bioinformatics methods, such as molecular dynamics simulations, are increasingly being utilized to study complex systems and processes. In metallurgy, similar computational approaches can be applied to model the behavior of metallurgical slags and melts, enhancing the accuracy of predictions and improving process efficiencies. Han Sun’s use of molecular dynamics simulations in metallurgy aligns with the broader application of bioinformatics principles to study and optimize complex systems.

 

🌐Professional Associations 

Han Sun is an active member of several professional associations related to metallurgy and materials science. These associations provide a platform for him to collaborate with peers, participate in conferences, and stay updated on industry trends.

 

 📚Training & Workshops 

Throughout his academic career, Han Sun has participated in various training sessions and workshops that have enhanced his research skills. These include workshops on advanced metallurgical techniques, molecular dynamics simulations, and the application of new materials science theories.

 

🎤Oral Presentations and🗣️Thought Leadership 

Han Sun has presented his research findings at several notable conferences: The 9th Asia Steel International Conference (2024): Presented on the melt structure of the CaO-SiO2-P2O5 system during the phosphorus enrichment process. The 13th China Steel Annual Conference (2022): Discussed the development of a new low-cost double slag converter steelmaking process. 8th International Congress on the Science and Technology of Steelmaking (2022): Addressed dephosphorization at low temperature and low basicity in steelmaking.

 

🧑‍🔬Tasks Completed as a Researcher 

As a researcher, Han Sun has successfully completed numerous tasks including: Conducting high-temperature industrial experiments and laboratory analyses. Performing advanced molecular dynamics simulations and theoretical calculations. Publishing significant research findings in reputable scientific journals. Securing patents related to metallurgical processes and improvements.

 

🚀Success Factors 

The success of Han Sun’s research can be attributed to several factors: In-depth Knowledge: His strong background in metallurgical engineering and related fields. Innovative Approach: Utilization of modern simulation techniques and theoretical frameworks. Collaborative Efforts: Working with experienced researchers and participating in collaborative projects. Dedication: Consistent focus on advancing both theoretical and practical aspects of metallurgy.

 

🧪Publications & Laboratory Experience

Han Sun’s extensive publication record, including high-impact papers in journals such as Metallurgical and Materials Transactions B and ISIJ International, highlights his expertise. His laboratory experience is underscored by his proficiency in operating complex equipment and utilizing advanced software for simulations and data analysis.

 

🔍 Conclusion

Han Sun exemplifies a dedicated and innovative researcher in metallurgical engineering. His substantial publication record, ongoing research, and significant contributions to both theoretical and practical aspects of the field underscore his expertise and impact. His work not only advances the understanding of steelmaking processes and waste utilization but also reflects a broader application of computational methods that resonate with bioinformatics principles. With a strong academic background, a track record of success, and ongoing engagement in cutting-edge research, Han Sun is well-positioned to continue making meaningful contributions to metallurgical science and engineering.

Publications

Influence of the Basicity on Phosphorus Enrichment Properties of Decarbonization Slag in Low-Carbon Double Slag Converter Steelmaking Process with Industrial Experiments, Mineralogy, and Ion–molecule Coexistence Theory

      Authors: Sun, H., Yang, J., Zhang, R.

      Journal: Steel Research International,     

Phosphorus Removal Properties of the Fe–C–Si–Mn–P–S Metallic Melts Based on the Atom–Molecule Coexistence Theory: Mutual Verification by Industrial and Laboratorial Experiments

       Authors: Sun, H., Yang, J., Yang, W., Zhang, R.

     Journal: Metallurgical and Materials Transactions B: Process Metallurgy and Materials Processing Science   

Composition Engineering on the Structure and Transport Properties of CaO–SiO2–P2O5 System: A Computational Insight

      Authors: Sun, H., Yang, J., Zhang, R.

      Journal: Metallurgical and Materials Transactions B: Process Metallurgy and Materials Processing Science

Dephosphorization Kinetics of Hot Metal at Low Slag Basicity and Low Temperature under the Different Fe2O3 Addition Amounts

     Authors: Zhang, R., Yang, J., Xu, L., Yang, W., Gao, J.

     Journal: Steel Research International

Prediction of lime utilization ratio of dephosphorization in BOF steelmaking based on online sequential extreme learning machine with forgetting mechanism

       Authors: Zhang, R., Yang, J., Sun, H., Yang, W.

       Journal:  International Journal of Minerals, Metallurgy and Materials

 
Han Sun | Multiscale simulation | Young Scientist Award
Exit mobile version