Samuel Awe | Material Engineering | Editorial Board Member

Dr. Samuel Awe | Material Engineering | Editorial Board Member

Research Manager | Automotive Components Floby AB | Sweden

Dr. Samuel A. Awe is a distinguished researcher specializing in metal casting technology, corrosion prevention, thermomechanical modelling, and advanced coatings, with a strong focus on process optimization and material enhancement for industrial applications. His research primarily centers on hydrometallurgical and electrometallurgical processes, solidification behavior in complex alloys, and innovative surface engineering solutions for automotive components, while emerging interests include sustainable extraction methods, environmentally responsible metallurgy, and performance-driven coating technologies. Over his career, Dr. Awe has held impactful roles in both academia and industry, including significant research and development responsibilities at Automotive Components Floby AB in Sweden, where he contributed to material innovation for high-performance automotive systems. He has produced a notable body of work on antimony recovery, alkaline sulphide hydrometallurgy, solidification microstructures, and Fe-based coating technologies, establishing himself as an authority on the processing behavior of complex sulfide minerals and alloy systems. Among his major contributions are optimized flowsheets for antimony extraction, detailed dissolution kinetics models for tetrahedrite minerals, advancements in electrowinning of antimony, and influential studies on sulphur oxyanion formation affecting non-ferrous metallurgy processes. His work has also driven progress in the development of high-temperature Al-Cu-Si alloy systems, grey cast-iron brake disc coatings, and microstructure-wear correlations in high-velocity air-fuel (HVAF) deposited coatings. Dr. Awe’s research has generated widely cited publications, practical industrial insights, and methodology improvements that support safer, cleaner, and more efficient metal extraction techniques. His modelling of impurity removal, contributions to flotation chemistry, and extensive characterization of thermomechanical behavior in engineered alloys continue to inform both metallurgical science and industrial decision-making. Through these advances, he has strengthened pathways for improving resource efficiency, minimizing environmental impact, and elevating material performance in demanding engineering environments. Guided by a clear vision for global impact, Dr. Awe aims to advance sustainable metallurgical innovation, enhance industrial materials’ reliability, and support technologies that contribute to responsible resource utilization. His work bridges fundamental research and real-world application, ensuring that scientific progress translates into societal benefit, industrial competitiveness, and long-term innovation across the materials and manufacturing sectors.

Profile: Google Scholar

Featured Publications 

1. Awe, S. A., & Sandström, Å. (2010). Selective leaching of arsenic and antimony from a tetrahedrite-rich complex sulphide concentrate using alkaline sulphide solution. Minerals Engineering, 23(15), 1227–1236.

2. Awe, S. A., Jan-Eric, S., Nils-Johan, B., & Åke, S. (2013). Process flowsheet development for recovering antimony from Sb-bearing copper concentrates. Minerals Engineering, 49, 45–53.

3. Awe, S. A., Samuelsson, C., & Sandström, Å. (2010). Dissolution kinetics of tetrahedrite mineral in alkaline sulphide media. Hydrometallurgy, 103(1–4), 167–172.

4. Aranke, O., Algenaid, W., Awe, S., & Joshi, S. (2019). Coatings for automotive gray cast iron brake discs: A review. Coatings, 9(9), 27.

5. Awe, S. A., Seifeddine, S., Jarfors, A. E. W., Lee, Y. C., & Dahle, A. K. (2016). Development of new Al–Cu–Si alloys for high temperature performance. Advanced Materials Letters.

Subing Yang | Material characterization

Celebrating Excellence: Congratulations to Dr. Subing Yang on Receiving the “Best Researcher Award”! 🌟🏆

  • Assoc Prof Dr. Subing Yang, Jiangsu University, China: Material characterization

🎉 Congratulations, Dr. Subing Yang! 🎉It is with great joy and admiration that we extend our heartfelt congratulations on receiving the prestigious “Best Researcher Award” by ScienceFather Your outstanding contributions to the field of materials science, particularly in the areas of microstructure characterization, irradiation effects, and surface modification, have set a remarkable standard for excellence.

Your dedication to advancing knowledge and your innovative approach to understanding and mitigating irradiation-induced damage have not only enriched the scientific community but have also brought immense pride to our institution. This well-deserved recognition is a testament to your hard work, perseverance, and the impactful contributions you’ve made to the world of research.

May this award serve as a celebration of your accomplishments thus far and as an inspiration for the continued brilliance we anticipate from your future endeavors. We are honored to have such an exceptional researcher as part of our academic community. Once again, congratulations on this well-earned achievement, and here’s to many more successes in your illustrious career! 🌟👏

 

Professional Profiles:

Bio Summary:

Dr. Subing Yang is an Associate Professor at Jiangsu University with expertise in microstructure characterization, irradiation effects on materials, and surface modification. He completed his Ph.D. in Quantum Science and Engineering from Hokkaido University, focusing on residual elastic strain and defects in He+ ion irradiated 4H-SiC. Dr. Yang has a strong background in electron microscopy and has actively contributed to research in the field of materials science, particularly in understanding and mitigating irradiation-induced damage. His current research at Jiangsu University continues to explore microstructure characterization and surface modification techniques for metals.

Education:
  • Doctor of Philosophy (Ph.D.) in Quantum Science and Engineering
    • Hokkaido University, 2017.09 – 2020.09
    • Research: Residual elastic strain and defects in He+ ion irradiated 4H-SiC
  • Master of Metallurgical Engineering
    • University of Science and Technology Beijing, 2014.09 – 2017.01
    • Research: Irradiation effect of high-energy particles on steel
  • Bachelor of Metallurgical Engineering
    • Inner Mongolia University of Science and Technology, 2010.09 – 2014.06
Professional Journey:
  • Postdoctoral Fellow
    • Hokkaido University, 2020.10 – 2022.09
    • Research: Microstructure characterization, irradiation effect of high-energy particles, surface modification, and oxidation of metal.
  • Associate Professor
    • Jiangsu University, from 2022.12 – present
    • Research: Continuation of microstructure characterization, irradiation effects, and surface modification studies.
Research Focus and Skills:
  1. Microstructure Characterization:
    • Analyzing inner material microstructures using various microscopy technologies.
    • Proficient in electron microscopy, including focused-ion-beam system, transmission electron microscope, and scanning TEM.
    • Skills in SEM, EBSD, XPS, AFM.
  2. Irradiation Effects on Materials:
    • Studying the impact of irradiation-induced damage on materials used in nuclear reactors and aerospace.
    • Characterizing damages using EBSD, Raman microscopy, TEM, etc.
    • Investigating mechanisms to mitigate damages.
  3. Surface Modification and Metal Oxidation:
    • Modifying surfaces using ion implantation and studying the effects on oxidation.
    • Exploring anti-oxidation technologies like coatings and surface alloying.
Publications & Contributions:
  1. Author Metrics:
    • Document & Citation Trends:
      • Chart displaying the number of documents published and citations received across the years (2015-2023).
    • Documents:
      • 11 documents in total.
      • Results list showing the most recent 10 documents.
    • Metrics Summary:
      • 2 Preprints
      • 18 Co-Authors
    Notable Publications:
    1. Effects of gas phase ion irradiation and vacuum annealing on the visible light photocatalytic properties of WO3
      • Published in Vacuum, 2022, 206, 111519
      • 1 Citation
    2. Tailored copper oxidation in alkaline aqueous solution after helium cation implantation
      • Published in Applied Surface Science, 2022, 591, 153087
      • 1 Citation
    3. An investigation of surface contamination introduced during He+ implantation and subsequent effects on the thermal oxidation of Cu
      • Published in Applied Surface Science, 2022, 579, 152163
      • 2 Citations
    4. Room-Temperature Hydrogen Absorption of Ti with Robust Surface Coated by Hexagonal Boron Nitride
      • Published in ACS Applied Energy Materials, 2022, 5(1), pp. 951–957
      • 1 Citation
    5. Anisotropic defect distribution in He+-irradiated 4H-SiC: Effect of stress on defect distribution
      • Published in Acta Materialia, 2021, 211, 116845
      • 19 Citations
    6. Electron energy-loss spectroscopic evaluation of depth-dependent swelling of He+ ion-irradiated 4H-SiC correlated with defect type
      • Published in Journal of Applied Physics, 2020, 127(17), 175106
      • 4 Citations
    7. Development of Laser-HVEM and Its Application on In-situ Observation on Lattice Defects Behavior
      • Published in Jiegou Huaxue, 2020, 39(4), pp. 623–629
      • 0 Citations
    8. Non-destructive evaluation of the strain distribution in selected-area He+ ion irradiated 4H-SiC
      • Published in Applied Surface Science, 2020, 500, 144051
      • 11 Citations
    9. Effect of pulsed-laser and/or electron irradiation on vacancy diffusion in SUS316L austenitic stainless steel
      • Published in Gongcheng Kexue Xuebao/Chinese Journal of Engineering, 2017, 39(6), pp. 903–908
      • 2 Citations
    10. Effect of laser and/or electron beam irradiation on void swelling in SUS316L austenitic stainless steel
      • Published in Journal of Nuclear Materials, 2017, 488, pp. 215–221
      • 8 Citations
Research Timeline of Dr. Subing Yang
  • 2010 – 2014: Bachelor’s Degree
    • Metallurgical Engineering at Inner Mongolia University of Science and Technology
  • 2014 – 2017: Master’s Degree
    • Metallurgical Engineering at University of Science and Technology Beijing
    • Research: Irradiation effect of high-energy particles on steel
  • 2017 – 2020: Ph.D. in Quantum Science and Engineering
    • Quantum Science and Engineering at Hokkaido University
    • Research: Residual elastic strain and defects in He+ ion irradiated 4H-SiC
  • 2020 – 2022: Postdoctoral Fellowship
    • Research at Hokkaido University
      • Microstructure characterization
      • Irradiation effect of high-energy particles
      • Surface modification and oxidation of metal
  • 2022 – Present: Associate Professor at Jiangsu University
    • Continued research in microstructure characterization, irradiation effects, and surface modification