Changyu Ma, Ph.D.

Assistant Professor
Engineering Department
Mulligan Center for Engineering 307
Expertise:
additive manufacturing, ODS alloys, powder processing
Biography
Changyu Ma, Ph.D., has been working as an Assistant Professor at King's College since August 2024, following two years as a Postdoctoral Research Associate at California State University, Northridge. He obtained his Ph.D. in Materials Science and Engineering from West Virginia University, his M.S. in Materials Science and Engineering from Shandong University, and his B.S. in Materials Shaping and Control Engineering from the China University of Petroleum (East China). He has experience in additive manufacturing, superalloys, and powder processing.Education
- B.S.E, Materials Shaping and Control Engineering, China University of Petroleum (East China)
- M.S.E., Materials Science and Engineering, Shandong University
- Ph.D., Materials Science and Engineering, West Virginia University
Publications and Presentations
- Changyu Ma, Tianqi Zheng, Yu-Keng Lin, Jianhao Zhu, Y. Morris Wang, Xiaochun Li, Bingbing Li*, Optimization of printing parameters for Haynes 282 fabricated by pulsed wave laser powder bed fusion. Prog Addit Manuf, 2024.
- Hanlin Fan, Chenshu Liu, Shijie Bian, Changyu Ma, Junlin Huang, Xuan Liu, Marshall Doyle, Thomas Lu, Edward Chow, Lianyi Chen, Jerry Ying His Fuh, Wenfeng Lu, Bingbing Li*, New Era Towards Autonomous Additive Manufacturing: A Review of Recent Trends and Future Perspectives, International Journal of Extreme Manufacturing, 2025.
- Tianqi Zheng, Changyu Ma, Alexander Killips, Bingbing Li, Xiaochun Li*, Nanoparticles-Enabled Additive Manufacturing of High Strength 6061 Aluminum Alloy via Laser Powder Bed Fusion, Manufacturing letters, 2024, Vol. 41:753-757.
- Changyu Ma, Tianqi Zheng, Yu-Keng Lin, Philip Mallory, Xiaochun Li, Y. Morris Wang, Bruce Kang, Bingbing Li*, Achieving uniform distribution of nanoparticles in oxide dispersion strengthened (ODS) SS316L through laser powder bed fusion (L-PBF), Manufacturing letters, 2024, Vol. 41:766-771.
- Changyu Ma*, Manikanta Grandhi, Philip Mallory, Zhichao Liu, Bingbing Li, Bruce Kang, Directed energy deposited SS316L with nano-Y2O3 additions: powder processing, microstructure, and mechanical properties. Prog Addit Manuf, 2024.
- Ahmad Rashad, Alejandro Gomez, Ankit Gangrade, Fatemeh Zehtabi, Kalpana Mandal, Surjendu Maity, Changyu Ma, Bingbing Li, Ali Khademhosseini, Natan Roberto de Barros*, Effect of Viscosity of GelMA-Gelatin Bioinks on Bone Cells. Biofabrication. 2024 Sep 3;16(4).
- Haolin Fan, Hongji Zhang, Changyu Ma, Tongzi Wu, Jerry Ying Hsi Fuh, Bingbing Li*, Enhancing Metal Additive Manufacturing Training with the Advanced Vision Language Model: A Pathway to Immersive Augmented Reality Training for Non-Experts, Journal of Manufacturing Systems, 2024, Vol. 75: 257-269.
- Gabriel Costabeber, Nayrim Brizuela Guerra*, Giovana Sant’Ana Pegorin Brasil, Josana Carla da Silva Sasaki, Mateus Scontri, Betina Sayeg Burd, Yanjin , Kalpana Mandal, Marvin Mecwan, Neda Farhadi, Alejandro Gómez, Changyu Ma, Cassamo Ussemane Mussagy, Glaucio Ribeiro Silva, Lindomar Soares dos Santos, Natan Roberto de Barros, Gustavo Franco Barbosa, Vadim Jucaud, Bingbing Li, Rondinelli Donizetti Herculano, Additive manufacturing of polylactic acid scaffolds dip-coated with polycaprolactone for bone tissue engineering, Materials Today Communications, 2024, Vol. 40: 109646.
- Changyu Ma, Natan Roberto de Barros, Tianqi Zheng, Alejandro Gomez, Marshall Doyle, Jianhao Zhu, Himansu Sekhar Nanda, Xiaochun Li, Ali Khademhosseini, Bingbing Li*, 3D Printing and Surface Engineering of Ti6Al4V Scaffolds for Enhanced Osseointegration in an In Vitro Study, Biomimetics 2024, 9, 423.
- Changyu Ma*, Sarwesh Narayan Parbat, Marcela L. Redigolo, Minking K. Chyu, Bruce Kang, Ni-based ODS alloy prepared by direct energy deposition process: powder fabrication, microstructure, mechanical property, and oxidation resistance, Prog Addit Manuf, 2024.
- Changyu Ma*, Bruce Kang, Oxidation Behavior of Ni-based Oxide Dispersion-Strengthened (ODS) alloy Fabricated by Direct Energy Deposition (DED) at 1100 ℃, Journal of Materials Engineering and Performance, 2024.
- Manikanta Grandhi, Changyu Ma, Zhichao Liu*, Bruce Kang, Microstructural Characterization and Properties of Laser-DED Built Oxide Dispersion Strengthened SS316L, Manufacturing Letters, 2022, Vol. 33, P: 758-764.
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