[1] 中国博士后科学基金会:第78批面上资助,2025.12-2027.06,主持;
[2] 中国博士后科学基金会:2025年度国家资助博士后研究人员计划C档,2025.07-2027.07,主持;
[3] 河南省科技厅:2026年度河南省科技攻关项目,2026.01-2027.12,主持;
[4] 国家部委:***基础加强计划,高精***超结构的****技术研究, 2020-2025,主要参与;
[5] 国家部委:***前沿创新领域,***功能超结构的***关键技术,2024-2025,主要参与;
[6] HJJ预研:可调吸波功能结构理论设计,2020-2021,主要参与;
[7] 国家自然科学基金:复杂极薄超表面结构的增材制造极其可调隐身性能研究, 2016-2019,主要参与。
代表性论文:
[1] Duan, Yubing; Zhao, Yunfeng; Xing, Hao; Shen, Dawei; Yang, Zhen; 3D printed multiscale resonant labyrinth composite metastructure for enhanced low-frequency microwave absorption, Journal of Science-advanced Materials and Devices, 2026, 11: 101079.
[2] Yubing Duan; Hao Xing; Chang Liu; Dawei Shen; Design and realization of low-frequency and broadband microwave absorption extension with a 3D-printed bidirectional gradient metastructure, Materials Science and Engineering: B, 2026, 327: 119293.
[3] Duan YB, Liang QX, Zhen Y, et al. A wide-angle broadband electromagnetic absorbing metastructure using 3D printing technology[J]. Materials & Design, 2021, 208:109900.
[4] Duan YB, Liang QX, Zhen Y, et al. Bamboo-inspired composite metastructure for broadband microwave absorption and load bearing[J]. Materials Research Bulletin, 2023, 166:112368.
[5] Duan YB, Liang QX, Zhen Y, et al. 3D printed labyrinth multiresonant composite metastructure for broadband and strong microwave absorption[J]. Science China Technological Sciences, 2023, 66(12):3574-3584.
[6] Duan YB, Liang QX, Zhen Y, et al. Ultrabroadband metastructure absorber with angular stability for conformal applications[J]. Materials Today Physics, 2023, 39:101278.
[7] Zhen Y, Liang QX, Duan YB, et al. A 3D-printed lightweight broadband electromagnetic absorbing metastructure with preserved high-temperature mechanical property[J]. Composite Structures, 2021, 274:114330.
[8] Zhen Y, Liang QX, Duan YB, et al. An ultrabroadband metamaterial absorber based on remarkable magnetic coupling via constructing conductive composite resonators and magnetic gradient gyroid structure[J]. Virtual and Physical Prototyping, 2023, 18(1):e2262445.
[9] 杨贞,梁庆宣,段玉冰等. 多层级异质异构吸波超材料功能化设计及熔融沉积3D打印[J]. 机械工程学报,2023,59:1-9.
代表性专利:
[1] 李涤尘,梁庆宣,段玉冰等. 一种迷宫型双向梯度低频宽带强微波吸收结构:中国,CN 114336082A [P]. 2021-04-12.
[2] 李涤尘,梁庆宣, 杨贞,段玉冰等. 一种基于导电复合材料的低频宽带吸波超结构:中国,CN 114336069A[P]. 2021-04-12.