Dr. Dou Hu, The University of Hong Kong, China.
Publication profile
Education and Experience
Postdoctoral Fellow (2024) – The University of Hong Kong, Hong Kong
Doctor of Engineering in Materials Science (2024) – Northwestern Polytechnical University (NWPU), Xi’an, China
Master of Engineering in Materials Science (2020) – Northwestern Polytechnical University (NWPU), Xi’an, China
Bachelor of Engineering in Composite Materials & Engineering (2017) – Northwestern Polytechnical University (NWPU), Xi’an, China
Suitability For The Award
Dr. Dou Hu is a distinguished materials scientist whose innovative contributions to additive manufacturing, ceramic and composite materials design, and high-temperature oxidation have established him as a leader in the field. With an impressive publication record and significant accolades, he is highly deserving of the Best Researcher Award.
Professional Development
Dr. Dou Hu specializes in additive manufacturing, ceramic composites, and high-temperature materials. His focus is on the design, simulation, and fabrication of ablation-resistant and self-healing coatings for extreme environments, such as aerospace and industrial sectors. By employing plasma spraying and exploring fiber-reinforced composites, he enhances materials’ resistance to oxidation, thermal stress, and particle impact (🔥). Dou also integrates multiscale simulation techniques to study and improve the performance of ultra-high-temperature ceramics and their interfaces. His cutting-edge research contributes to advancing the durability and functionality of next-generation engineering materials. 🔬🛰️
Research Focus
Awards and Honors
2024 – One Hundred National Postgraduate Model of Party Members (Top 1%)
2023 – Star of Self Strengthening among Chinese College Students (Top 1‰)
2022 – National Silver Award, The 8th China International College Students’ “Internet+” Innovation and Entrepreneurship Competition (Top 1‰ globally)
Publications
ZrC modified carbon/carbon composites using ZrSi2 and Zr-Cu alloys as reactive infiltrating materials – 2024, Journal of Alloys and Compounds; Cited by: 1 
Ablation resistant C/C-HfC-ZrC-TaC-SiC composites prepared by reactive melt infiltration – 2024, Ceramics International; Cited by: 0 
Ablation resistant behavior of silicide modified HfB2-SiC coating on graphite by spark plasma sintering: Role of MeSi2 addition – 2024, Journal of the European Ceramic Society; Cited by: 1 
Improving repair performance for damaged C/C composites via heat-treatment temperature optimization and surface pretreatment – 2024, Journal of Materials Science & Technology; Cited by: 6 
Insights into (Hf-Zr-Ta-Nb) C thermal protective system: Ablation behavior, morphology evolution and atomic bonding – 2024, Ceramics International; Cited by: 7 
Insights into service-derived Zr-Ta-O film: Morphology evolution, temperature resistance, and atomic bonding – 2024, Journal of the European Ceramic Society; Cited by: 6 
Effects of air plasma flame on the ZrB2-based UHTC coatings: Microstructure, phase evolution and ablation resistance – 2023, Journal of Materials Science & Technology; Cited by: 16 