姓名:傅华东
性别:男
在岗性质:全职硕导
最高学位:博士
专业技术职务:讲师
毕业学校:武汉理工大学
行政职务:无
所在院校:材料科学与工程学院
联系电话:
电子邮箱:fuhd0873@sina.com
2024.06-至今 南昌航空大学 复合材料系 讲师
2024.12-2025.11 中国航发沈阳黎明航空发动机有限责任公司 挂职研究员
博士毕业于武汉理工大学
1. 江西省自然科学基金面上项目,2026, 主持
2. 江西省自然科学基金青年项目,2025, 主持
3. 江西省职业早期青年人才培养项目,2025,主持
4. 江西省教育厅科学技术项目,2024,主持
5. 武汉理工大学协作横向项目,2025,主持
6. 南昌航空大学博士启动项目,2024,主持
发表论文情况:
1. Fu HD*,
Zhang L, Xie Y, Chen R, Huang ZX, Qin Y**, Zhang LM. Nano-armor of
polysilazane-derived ceramics constructed phenolic aerogel composites with
integrated performance for extreme heat: mechanically robust,
ablation-resistant, and microwave-absorbing. Advanced Composites and
Hybrid Materials, 2026, 9(4):313.
2. Fu HD*, Zhang L, Xie XL, Xie Y,
Wan QF, Qin Y**. Abandoned phenolic aerogel as a carbon source for in-situ
carbothermal ceramicization of silicone rubber composites towards superior
ablation resistance and thermal insulation. Polymer Degradation and
Stability, 2026, 251:112236.
3. Fu HD, Xie Y, Chen R, Qin WZ, Wang X*, Qin Y**. Multifunctional
integrated CNTs/Si-Zr hybrid phenolic aerogel composites with excellent thermal
protection and microwave absorbing properties. Ceramics International, 2025, 51(23): 40512-40522.
4. Fu HD*, Chen R, Xie Y, Wei Z, Qin Y**, Huang ZX. In situ nanoscale rapid phase
stabilization enables Zr-phenolic aerogel composites with excellent ablation resistance
in extreme thermal environments. ACS Applied Materials &
Interfaces, 2025, 17(18): 27215-27226.
5. Fu HD, Qin Y*, Peng ZW, Dou JP, Huang ZX. A novel co-continuous
Si-Zr hybrid phenolic aerogel composite with excellent antioxidant ablation
enabled by sea-island-like ceramic structure at high temperature. Ceramics International, 2024, 50(12): 21008-21019.
6. Fu HD, Qin Y*, Zou ZY, Fan JM, Dou JP, Chang K, Huang
ZX. Reinforced compressive and ablative properties of phenolic aerogel by
in-situ polycarbosilane-derived ceramic. Ceramics International, 2023, 49(24): 40392-40402.
7. Fu HD*, Qin Y, Zou ZY, Fan JM, Xue CY. Enhancement of the interlaminar performance of silica/phenolic laminates after high-temperature pyrolysis using a boron carbide/silicon carbide fibre z-pin. Materials & Design, 2022 (219): 110770.
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