一、个人基本信息
姓名:刘玉浩
出生年月:1994年10月
籍贯:内蒙古赤峰市
性别:男
民族:汉
职称:讲师
政治面貌:中共党员
最高学历:博士
工作单位:中国民航大学航空工程学院飞机系
通讯地址:天津市东丽区津北公路2898号中国民航大学北教2-304
邮政编码:300300
办公电话:18800441556
电子邮箱:19b909046@stu.hit.edu.cn
二、学习和工作经历
2026.06 — 至今 中国民航大学 航空工程学院飞机系,副教授
2023.12 — 2026.03 中国民航大学 航空工程学院飞机系,讲师
2019.09 — 2023.12 哈尔滨工业大学,材料科学与工程学院,材料学,博士
2016.09 — 2019.07 内蒙古工业大学,材料科学与工程学院,材料工程,硕士
2012.09 — 2016.07 内蒙古工业大学,材料科学与工程学院,材料成型及控制工程,本科
三、主要研究方向
(1)功能材料:高温、承载、电磁/红外隐身材料
(2)多物理场模拟
(3)遗传算法
(4)周期性编织体复合材料
近年来主持和参与的项目:
(1) 国家青年自然科学基金,纤维/周期性编织结构设计及其宽频吸波机制,2024年,主持。
(2) 中央高校基本业务费项目,周期性编织结构增强SiC陶瓷的材料设计及吸波机制研究,2023年,主持。
(4) 先进纺织复合材料教育部重点实验室开放基金, 柔性拓扑编织结构复合材料的电磁波诱导及宽频微波吸收机制研究, 2025-01,主持
(3) 天津市教委科研计划项目,液态金属电池Sb-Cu合金正极对不锈钢集流体的腐蚀机制和稳定化策略研究,2024,参与。
(4) 轻质高温隔热石墨烯/改性纤维复合材料设计和制备, 横向,参与。
(5) 螺旋陶瓷纤维气凝胶宽频吸声结构调控及其高温声能耗散机制研究,天津市科技局科技计划项目-自然基金-多元基金项目-面上项目,参与。
(6) 天津航空新能源产业发展策略研究,横向,参与。
获得奖项:
作为第四完成人,参与完成“面向可重复使用商业运载火箭尾部轻量化防隔热材料关键技术及应用”项目,该项目以中国民航大学为第一单位,荣获天津市科学技术进步二等奖。
五、著作和论文目录
1. Liu, Yuhao (本人), Xiaoxiao Huang, Xu Yan, Long Xia, Tao Zhang, Jiahao Sun, Yanan Liu, Yu Zhou. Pushing the Limits of Microwave Absorption Capability of Carbon Fiber in Fabric Design Based on Genetic Algorithm [J], Journal of advanced ceramic. 2023, 12: 329-340. (SCI一区, IF=16.9)
2. Liu, Yuhao (本人); Xiao, Xianlin; Liu, Hongli; Cai, Hua; Jiao, Yanan; Zhang, Kaili; Li, Yutong; Yan, Yuefeng; Liu, Yanan; Zhang, Xueqian; Chu, Peng; Huang, Xiaoxiao; Ultra-Broadband Microwave Absorbers via Gradient EM Parameters and Engineered Nanogaps in 1D NiO/Ni/Gap/C Composites [J], ACS Applied Electronic Materials, 2025, 7(18): 8598-8608. (SCI三区, IF=4.7)
3. Liu, Yuhao (本人); Li, Mingwei; Zhang, Miaomiao; Liu, Hongli; Jiao, Yanan; Li, Yutong; Yan, Yuefeng; Liu, Yanan; Chu, Peng; Huang, Xiaoxiao; Dual-Shell Fe3O4@Fe3C hollow microtubes: Enabling ultrathin broadband microwave absorption and thermal shielding in encapsulated SiC composites, Journal of Alloys and Compounds, 2025, 1044(5): 184393. (SCI二区, IF=6.3)
4. Liu, Yuhao (本人);Cao, Wenshuo;Liu, Hongli;Xu, Guanqi;Yan, Yuefeng;Jiao, Yanan;Zhang, Kaili;Liu, Yanan;Zhang, Xueqian;Chu, Peng;Huang, Xiaoxiao;Rational Design of Skin Depth-Tuned Hollow Cobalt based Microtubes for High-Performance Microwave Absorption[J], ACS Applied Electronic Materials, 2025, 7(17): 8135 - 8144. (SCI三区, IF=4.7)
5. Liu, Yuhao (本人), Xiaoxiao Huang, Xu Yan, Tao Zhang, Jiahao Sun, and Yanan Liu [J] ACS Applied materials & interface. 2023,15:27056-27064 (SCI一区, IF=9.5)
6. Liu, Yuhao (本人), Xiaoxiao Huang, Jiahao Sun, Guansheng Ma, Yuefeng Yan, Boshi Gao, Xu Yan, Yanan Liu. Multi-scale optimization of selectively magnetized isotropic carbon fiber fabrics for microwave absorption using machine learning. [J] Composites science and technology. 2023,243:110257 (SCI一区, IF=9.1)
7. Liu, Yuhao (本人), Liangming Yan, Xiaohu Hou, Dongnan Huang, Jiangbo Zhang,Jian Shen. Effect of percentage reduction per pass on precipitates and corrosion resistance of an Al-Zn-Mg-Cu-Zr plate [J] Rare Metals. 2019 (SCI一区, IF=6.9)
8. Kaili Zhang, Liu, Yuhao (本人), Yanan Liu, Yuefeng Yan, Guansheng Ma, Bo Zhong, Renchao Che, Xiaoxiao Huang. Tracking Regulatory Mechanism of Trace Fe on Graphene Electromagnetic Wave Absorption[J]. Nano-Micro Letters. 2024, 16 (1): 66. (SCI一区, IF=26.6)
9. Liangming Yan,Liu, Yuhao (本人), Ge Shi, Jian Sun, Xiaogang Li, Huimin Liu. Effect of Homogenization on Microstructure and Mechanical Property of Mg-5.9Zn-1.6Zr-1.6Nd-0.9Y Alloy [J] Rare Metal Materials and Engineering. 2019 (SCI四区,IF=1.2).
10. Jiahao Sun, Xiaoxiao Huang, Liu, Yuhao (本人), Kaili Zhang, Yuefeng Yan, Yanan Liu, Xu Yan, Enhanced microwave absorption performance originated from interface and unrivaled impedance matching of SiO2/carbon fiber[J]. Applied Surface Science. 2023, 623:157029. (SCI一区, IF=6.7)
11. Xu Yan, Xiaoxiao Huang, Yanting Chen, Liu, Yuhao (本人), Long Xia, Tao Zhan, Haiyan Lin, Dechang Jia, Bo Zhong, Guangwu Wen, Yu Zhou, A Theoretical Strategy of Pure Carbon Materials for Lightweight and Excellent Absorption Performance [J], Carbon. 2021, 174:662-672 (SCI二区, IF=10.9)
12. 黄小萧,刘玉浩等人,一种多功能、耐高温、宽频吸收的周期性编织电磁波吸收材料的制备方法和 应用,专利号:202111294852.2