Zhigang Yu | Alloys Design | Best Researcher Award | 13361

Assoc. Prof. Dr. Zhigang Yu | Alloys Design | Best Researcher Award

Assoc. Prof. Dr. Zhigang Yu, Shanghai University, China

Assoc. Prof. Dr. Zhigang Yu is a faculty member at Shanghai University, China, specializing in thermodynamics and design of magnesium alloys through multi-scale computational methods and machine learning. He earned his Ph.D. in 2019 from Shanghai University and currently serves as an Associate Professor in the School of Materials Science and Engineering. Dr. Yu has published extensively in high-impact journals such as Journal of Materials Science & Technology and J. Chem. Theory Comput., and is a corresponding author on several pioneering works. He is a recipient of the prestigious Shanghai Oriental Talents Program (2023) and serves on the Youth Committee of the Journal of Materials Informatics. His contributions to the field have been recognized through awards and invitations as a speaker and conference chair in prominent materials science forums.

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🎓 Early Academic Pursuits

From the very beginning of his academic journey, Dr. Zhigang Yu demonstrated an exceptional passion for materials science and engineering. Born in 1989 in China, he pursued his undergraduate studies at Yantai University, earning a Bachelor of Science in 2012. His early exposure to materials and mechanical processes sparked a deep curiosity that led him to pursue higher education at Shanghai University, one of China’s leading research institutions.

At Shanghai University, he obtained his Master of Arts in 2015, followed by a Ph.D. in 2019, focusing on thermodynamics and alloy behavior. Throughout his academic development, Dr. Yu showed consistent dedication, a thirst for scientific exploration, and an ability to connect theoretical knowledge with practical application. His academic performance and research aptitude set a strong foundation for what would become a promising and impactful career in research and innovation.

💼 Professional Endeavors

Dr. Yu’s professional trajectory is marked by steady growth and consistent excellence. After completing his doctorate, he joined Shanghai University as a Postdoctoral Research Fellow from January 2020 to September 2022. This period allowed him to deepen his research in material thermodynamics and begin independent investigations, particularly in computational alloy modeling.

In October 2022, he was appointed as an Associate Professor at the university, a role that recognizes his academic maturity and leadership potential. As a teacher and mentor, Dr. Yu plays a vital role in training the next generation of engineers and materials scientists while advancing his own research on magnesium alloy design and artificial intelligence integration.

🔬 Contributions and Research Focus

Dr. Yu’s research sits at the intersection of traditional metallurgy and modern computational science. His primary research areas include:

  • Thermodynamics of Magnesium Alloys 🔩

  • Multi-scale Calculation Methods 🧮

  • Machine Learning-Assisted Alloy Design 🤖

He applies cutting-edge multi-scale modeling techniques to predict the thermodynamic behavior of magnesium alloys, making them more lightweight, efficient, and suitable for industrial applications such as aerospace, automotive, and electronics. Additionally, Dr. Yu’s work in applying machine learning algorithms to materials design is revolutionary, contributing significantly to the growing field of materials informatics.

He has published extensively, with over 10 high-impact journal articles, many as first or corresponding author, in esteemed journals such as Journal of Materials Science & Technology, J. Chem. Theory Comput., Materials & Design, and Ceramics International.

🏆 Accolades and Recognition

Dr. Yu’s work has not gone unnoticed. Over the years, he has received numerous prestigious awards and honors, including:

  • 🥇 Best Paper in Magnesium Alloy Section at the 4th International Conference of Non-Ferrous Materials (2024)

  • 🧠 Awardee of the Shanghai Oriental Talents Program (2023), a significant recognition for promising young scientists

  • 🎤 Invited Speaker at the 8th Asian Conference on Materials and Data (2024)

  • 📘 Youth Committee Member, Journal of Materials Informatics (2025–2026)

  • 🎓 Conference Chair, 6th National Hydrogen Energy Doctoral Academic Forum (2017)

These recognitions reflect both the scientific merit of his work and his leadership within the academic community.

🌍 Impact and Influence

Dr. Zhigang Yu’s research has a far-reaching impact on both academic and industrial fields. His pioneering efforts in alloy design and modeling contribute directly to the development of sustainable and high-performance materials. Through his work, industries can develop lighter and stronger alloys, leading to improved fuel efficiency and environmental sustainability.

As a mentor, Dr. Yu is deeply involved in guiding students, fostering interdisciplinary thinking, and promoting scientific excellence. His research collaborations and publications influence peers globally, making him a recognized voice in the field of materials science.

🌟 Legacy and Future Contributions

Looking ahead, Assoc. Prof. Dr. Zhigang Yu is well-positioned to become a leading figure in the integration of artificial intelligence with materials science. His ability to blend classical metallurgical concepts with modern computation and machine learning gives him a unique edge in shaping the future of smart materials and sustainable technologies.

He aims to further expand his research by building interdisciplinary collaborations, participating in international research consortia, and mentoring young scholars to carry forward the torch of scientific discovery. His commitment to innovation, education, and societal benefit ensures a lasting legacy within and beyond the academic community.

Publication Top Notes

Contributors: Zhigang Yu; Yu Li; Shuai Jiang; Lei Shi; Jun Luan; Hongqiang Fan; Yunying Fan; Kuochih Chou
Journal: Alloys and Compounds
Year: 2025
ContributorsPengcheng Cai; Jiaheng Liu; Jun Luan; Junwei Chen; Jianhua Chen; Xionggang Lu; Zhigang Yu; Kuochih Chou
Journal: Materials Science & Technology
Year: 2025

VASE: A High-Entropy Alloy Short-Range Order Structural Descriptor for Machine Learning

ContributorsJiaheng Liu; Pengbo Wang; Jun Luan; Junwei Chen; Pengcheng Cai; Jianhua Chen; Xionggang Lu; Yunying Fan; Zhigang Yu; Kuochih Chou
Journal: Chemical Theory and Computation
Year: 2024

 

Shineng Sun | alloy | Best Researcher Award | 13331

Assoc. Prof. Dr. Shineng Sun | alloy | Best Researcher Award

Assoc. Prof. Dr. Shineng Sun, Shenyang Univesity, China

Assoc. Prof. Dr. Shineng Sun is a faculty member at Shenyang University, China, specializing in materials science and engineering. He holds a Ph.D. from Northeastern University and has been actively engaged in research on Zn-based alloys, focusing on their microstructure, mechanical properties, and corrosion resistance. His work has contributed to advancements in extrusion processing and alloy development, with numerous publications in high-impact journals such as Materials Science and Engineering A and Materials Letters. Dr. Sun’s research plays a crucial role in enhancing the performance of Zn-based materials for industrial and structural applications.

Profile

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🎓 Early Academic Pursuits

Assoc. Prof. Dr. Shineng Sun was born on April 9, 1987, in Dalian City, Liaoning Province, China. His academic journey began at Liaoning Technical University, where he obtained his Bachelor’s degree, laying a strong foundation in materials science. Driven by a passion for advanced research, he pursued his Master’s and Ph.D. at Northeastern University, one of China’s premier institutions. His doctoral studies focused on the structural and mechanical properties of metallic materials, particularly Zn-based alloys, an area that would later define his research career.

🌟 Professional Endeavors

Since 2018, Dr. Sun has been a dedicated faculty member at Shenyang University, serving as a teacher and researcher in the field of materials science. His role involves both instructing students and conducting innovative research on metal alloys, specifically focusing on their microstructure evolution and mechanical properties. His work is instrumental in advancing the understanding of metal extrusion processes and improving alloy performance for industrial applications.

👩‍🔬 Contributions and Research Focus

Dr. Sun’s research is primarily centered on Zn-based alloys, a critical material used in various industrial applications, including structural and biomedical engineering. His work explores:

  • Microstructure and Mechanical Properties: Investigating how extrusion and alloying elements influence material behavior.
  • Corrosion Resistance and Surface Treatments: Enhancing the longevity and durability of Zn alloys through innovative surface treatments.
  • Superplasticity and Ductility Improvements: Developing techniques to enhance the mechanical properties of Zn-Al and Zn-Mn alloys.

His studies, published in renowned journals such as Materials Science and Engineering A and Materials Letters, provide valuable insights into alloy development and metallurgical processing.

🏆 Accolades and Recognition

Dr. Sun’s contributions to materials science have earned him recognition within the academic and industrial communities. His research output includes multiple peer-reviewed journal articles, showcasing his expertise in alloy processing and development. The high citation impact of his work reflects its significance in advancing knowledge on Zn-based alloys. Additionally, his collaborations with fellow researchers have further cemented his reputation as a leading expert in his field.

🌍 Impact and Influence

Dr. Sun’s research not only contributes to the academic sphere but also holds practical implications for industries reliant on high-performance alloys. His work on Zn-based alloys is instrumental in improving materials for applications such as:

  • Aerospace and Automotive Engineering: Enhancing lightweight metal solutions.
  • Biomedical Implants: Developing corrosion-resistant materials for medical applications.
  • Manufacturing and Industrial Processing: Advancing extrusion techniques to optimize metal performance.

His mentorship of students at Shenyang University also plays a crucial role in shaping the next generation of materials scientists and engineers, fostering innovation in the field.

📚 Legacy and Future Contributions

Looking ahead, Dr. Sun continues to push the boundaries of metallurgical research, with ongoing projects focused on refining extrusion processes and discovering new alloy compositions. His future contributions are expected to further impact the development of sustainable and high-performance materials, bridging the gap between theoretical research and industrial application. As a dedicated educator and researcher, his legacy lies in both his scientific advancements and the inspiration he provides to aspiring engineers and scientists.

Dr. Shineng Sun remains a vital contributor to the field of materials science, with a research trajectory that promises continued innovation and impact in the years to come.

Publication Top Notes

Author: C., Xiao, Chi, S., Sun, Shineng, D., Meng, Dehui, B., Liu, Baoyi, H., Zhang, Haochun

Journal: of Materials Research and Technology, 

Year: 2025

Author: G., Ma, Guofeng, Z., Li, Zhanpeng, X., Zhao, Xiaorong, S., Wang, Shiyang, Y., Yang, Yanhong

Journal: Alloys and Compounds, 

Year: 2024

Xinli Liu | Powder metallurgy | Women Researcher Award

Mrs. Xinli Liu | Powder metallurgy | Women Researcher Award

Mrs. Xinli Liu, School of Materials Science and Engineering, Central South University, China

Mrs. Xinli Liu is a dedicated researcher at the School of Materials Science and Engineering, Central South University, China. Her work focuses on advanced materials development, emphasizing innovative approaches in material synthesis, characterization, and applications. With expertise in alloy engineering, nanotechnology, and sustainable materials, she contributes significantly to addressing challenges in energy efficiency, environmental sustainability, and industrial advancement. Mrs. Liu’s research is pivotal in bridging the gap between fundamental material science and practical engineering solutions.

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Early Academic Pursuits 🌱

Mrs. Xinli Liu’s academic journey began with a passion for materials science, which led her to pursue advanced studies in the field. Her dedication and intellectual curiosity culminated in her appointment as a Vice Professor at the prestigious School of Materials Science and Engineering, Central South University. Her early academic endeavors laid a strong foundation for her expertise in refractory metals, powder metallurgy, and sustainable materials development. Her educational achievements reflect her commitment to contributing to the advancement of materials science and engineering.

Professional Endeavors 💼

Mrs. Liu has demonstrated exceptional professional acumen through her leadership in various national and provincial projects. She has successfully hosted 5 national and 4 provincial research initiatives, showcasing her ability to address complex challenges in materials science. Collaborating with industry partners, she has translated research findings into practical solutions, fostering innovation and sustainability in the non-ferrous metals industry. Her dedication to advancing the recycling of refractory metals and her innovative approaches to material processing have solidified her reputation as a leader in her field.

Contributions and Research Focus 🔬

Mrs. Liu’s research contributions center on the plastic processing and recycling of rare metals and the development of cutting-edge technologies in powder metallurgy. Her work includes:

  • Coating Peeling and Recycling: Developing sustainable processes for surface coating removal and recycling, contributing to the efficient use of non-ferrous metal resources.
  • High-Entropy Silicide Coatings: Innovating protective coatings for tantalum and its alloys, enhancing their durability and performance.
  • Recycling Technologies: Collaborating with Hunan Dingli Technology Co., Ltd., Mrs. Liu developed advanced equipment for refractory metal recycling, achieving a recovery rate exceeding 90%.

Her prolific output includes 60 journal publications, 12 patents, and a book titled Advanced Techniques in Refractory Metals (ISBN: 978-7-5487-5115-1). These achievements underscore her dedication to advancing both the theoretical and practical aspects of materials science.

Accolades and Recognition 🏆

Mrs. Liu’s contributions have been widely recognized. Notably, she received the prestigious Second Prize of the Hunan Provincial Natural Science Award in 2018 for her groundbreaking research. Her citation index of 1003 (as per ResearchGate) and the application of her innovations in industrial settings reflect her impact on both academia and industry. Her achievements are a testament to her relentless pursuit of excellence.

Impact and Influence 🌍

Mrs. Liu’s work has a far-reaching impact on the scientific community and the environment. By pioneering sustainable recycling methods and developing technologies for high-value materials, she has promoted resource efficiency and environmental stewardship. Her collaboration with industry partners has also facilitated the industrialization of recycling processes, benefiting the broader economy and advancing the global agenda for sustainable development.

Legacy and Future Contributions 🌟

As a mentor, innovator, and researcher, Mrs. Liu continues to inspire the next generation of scientists in the field of materials science. Her ongoing projects aim to explore new frontiers in rare metal recycling and eco-friendly material processing, ensuring her legacy endures. She is committed to leveraging her expertise to address emerging challenges in resource sustainability and materials innovation.

Publication Top Notes

Influence of Solid Loading on the Gel-Casting of Porous NiTi Alloys

Contributors: Ze Wang; Zhiqiang He; Duan bohua; Xinli Liu; Dezhi Wang
Journal: Materials
Year: 2022

Microstructure and Mechanical Properties of Porous NiTi Alloy Prepared by Integration of Gel-Casting and Microwave Sintering

ContributorsZhiqiang He; Ze Wang; Dezhi Wang; Xinli Liu; Duan bohua
Journal: Materials
Year: 2022