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个人简介

矫维成,男,航天学院复合材料与结构研究所 教授、博士生导师、副所长。 全国创新争先奖牌“特种环境复合材料技术创新团队”成员,中国硅酸盐学会玻璃钢分会副理事长、黑龙省复合材料学会理事、党支部书记。 教育经历 1999年08月-2003年07月 哈尔滨工业大学 高分子材料与工程专业 本科 2003年08月-2005年07月 哈尔滨工业大学 材料学专业 硕士 2005年08月-2010年09月 哈尔滨工业大学 材料学专业 博士 工作经历 2010年12月-2016年12月 哈尔滨工业大学航天学院复合材料与结构研究所 讲师、副教授 2013年07月-2014年07月 日本东京工业大学有机高分子专业 访问学者 2016年12月-至今 哈尔滨工业大学航天学院复合材料与结构研究所 教授、副所长 2018年4月-至今 哈尔滨工业大学航天学院复合材料与结构研究所 教授、博士生导师、副所长 主要成果 主持973课题、国家自然科学基金联合基金重点项目/面上项目/青年基金、航空基金、省自然科学基金面上项目等 获国家技术发明二等奖、省技术发明一等奖、省长特别奖等科技奖励6项 发表及合作发表SCI论文80余篇;合著《先进复合材料压力容器》专著一部,获授权发明专利36项 参与制定国军标2项:《航天用碳纤维复合材料气瓶规范》(GJB 9383-2018)、《航天用碳纤维复合材料贮箱规范》(GJB 9384-2018);团体标准1项:《纤维增强聚合物基复合材料超低温力学性能试验方法》(T/CSTM 00653-2022) 2021年第二十三届、2018年第二十二届玻璃钢复合材料学术交流会大会邀请报告;2014年日本东京ISF 2014国际会议上做主题会场特邀报告;作为分会场主席(Session Chair)主持JISSE 12国际会议、CCCM-3复合材料国际会议分会场报告

研究领域

先进树脂基复合材料、防/除冰材料

近期论文

查看导师新发文章 (温馨提示:请注意重名现象,建议点开原文通过作者单位确认)

Hongyuan Guo, Weicheng Jiao*, Haozheng Jin, Zijian Yuan, Xiaodong He. Microsphere Structure Composite Phase Change Material with Anti-Leakage, Self-Sensing, and Photothermal Conversion Properties for Thermal Energy Harvesting and Multi-Functional Sensor. Advanced Functional Materials. 2022, 202209345. (IF 19.924) Guomin Ding, Weicheng Jiao*, Rongguo Wang, Yue Niu, Liuyang Chen, Lifeng Hao. Ultra-fast, Reversible Transition of Super-wettability of Graphene Network and Controllable Underwater Oil Adhesion for Oil Microdroplet Transportation. Advanced Functional Materials. 2018, 28(18), 1706686.(IF 19.924) Jun Li, Weicheng Jiao*, Yinchun Wang, Yuxin Yin, Xiaodong He. Spraying pressure-tuning for the fabrication of the tunable adhesion superhydrophobic coatings between Lotus Effect and Petal Effect and their anti-icing performance. Chemical Engineering Journal, 2022, 434, 134710.(IF 13.273) Zhenming Chu, Weicheng Jiao*, Jun Li, Hongyuan Guo, Yongting Zheng, Rongguo Wang, Xiaodong He. A novel wrinkle-gradient strain sensor with anti-water interference and high sensing performance. Chemical Engineering Journal, 2021, 421, 129873.(IF 13.273) Zhenming Chu, Weicheng Jiao*, Yifan Huang, Yongting Zheng, Rongguo Wang, Xiaodong He. Superhydrophobic gradient wrinkle strain sensor with ultra-high sensitivity and broad strain range for motion monitoring. Journal of Materials Chemistry A, 2021, 9, 9634-9643.(IF 12.732) Guomin Ding, Weicheng Jiao*, Rongguo Wang, Meiling Yan, Zhenming Chu, Xiaodong He. Superhydrophobic heterogeneous graphene networks with controllable adhesion behavior for detecting multiple underwater motions. Journal of Materials Chemistry A, 2019, 7, 17766-17774. (IF 12.732) Guomin Ding, Weicheng Jiao*, Rongguo Wang, Zhenming Chu, Yifan Huang. An underwater, self-sensing, conductive composite coating with controllable wettability and adhesion behavior. Journal of Materials Chemistry A, 2019. 7, 12333-12342.(IF 12.732) Guomin Ding, Weicheng Jiao*, Liuyang Chen, Meiling Yan, Lifeng Hao, Rongguo Wang. Self-sensing, Superhydrophobic, Heterogeneous Graphene Network with Controllable Adhesion Behavior. Journal of Materials Chemistry A, 2018. 6, 16992 - 17000.(IF 12.732) Guomin Ding, Weicheng Jiao*, Rongguo Wang, Yue Niu, Lifeng Hao, Fan Yang, Wenbo Liu. Biomimetic, Multifunctional, superhydrophobic graphene film with self-sensing and fast recovery for microdroplet transportation. Journal of Materials Chemistry A, 2017,5,17325-17334.(IF 12.732) Yue Niu, Weicheng Jiao*, Rongguo Wang, Guomin Ding, Yifan Huang. Hybrid Nanostructures combining Graphene-MoS2 Quantum Dots for Gas Sensing. Journal of Materials Chemistry A, 2016, 4, 8198–8203.(IF 12.732) Yue Niu, Rongguo Wang, Weicheng Jiao*, Guomin Ding, Lifeng Hao, Fan Yang, et al. MoS2 Graphene fiber based gas sensing devices. Carbon. 2015, 95:34-41.(IF 9.594) Yifan Huang, Weicheng Jiao*, Zhenming Chu, Siyong Wang, Liuyang Chen, Xinmiao Nie, Rongguo Wang, Xiaodong He. High sensitivity, humidity-independent, flexible NO2 and NH3 gas sensor based on SnS2 hybrids functional graphene ink. ACS Applied Materials & Interfaces. 2020, 12(1), 997-1004. (IF 9.229) Yifan Huang, Weicheng Jiao*, Zhenming Chu, Xinmiao Nie, Rongguo Wang, Xiaodong He. SnS2 Quantum Dots Based Optoelectronic Flexible Sensor for Ultrasensitive Detection of NO2 Down to One-ppb. ACS Applied Materials & Interfaces. 2020, 12(22), 25178-25188. (IF 9.229) Weicheng Jiao, Masatoshi Shioya, Rongguo Wang, Fan Yang et al. Improving the gas barrier properties of Fe3O4/graphite nanoplatelet reinforced nanocomposites by a low magnetic field induced alignment. Composites Science and Technology. 2014, 99, 124-130.(IF 8.528) Meiling Yan, Weicheng Jiao*, Fan Yang, Guomin Ding, Huiran Zou, Zhonghai Xu, Rongguo Wang. Simulation and measurement of cryogenic-interfacial-properties of T700/modified epoxy for composite cryotanks. Materials & Design, 2019, 185,108050. (IF 7.991) Rongguo Wang, Weicheng Jiao, Wenbo Liu, Fan Yang, Xiaodong He.Slippage coefficient measurement for non-geodesic filament-winding process. Composites Part A-Applied Science and Manufacturing. 2011, 42(3), 303-309. (IF 7.664) Yifan Huang, Weicheng Jiao*, Zhenming Chu, Guomin Ding, Meiling Yan, Xue Zhong, Rongguo Wang. Ultrasensitive ppb-level NO2 gas sensors at room temperature based on SnS2/rGO nanohybrids with P-N transition property and optoelectronic visible light enhancement performance. Journal of Materials Chemistry C, 2019, 7, 8616-8625 (IF 7.393) Feng Yuan, Weicheng Jiao*, Fan Yang, Wenbo Liu, Jiayin Liu, Zhonghai Xu, Rongguo Wang. Scalable Exfoliation for Large-Size Boron Nitride Nanosheets by Low Temperature Thermal Expansion-Assisted Ultrasonic. Journal of Materials Chemistry C, 2017,5,6359-6368 (IF 7.393) Zhenming Chu, Weicheng Jiao*, Yifan Huang, Liuyang Chen, Yongting Zheng, Rongguo Wang, Xiaodong He. Directional Rebound Control of Droplets on Low-Temperature Regular and Irregular Wrinkled Superhydrophobic Surfaces. Applied Surface Science. 2020, 530, 147099. (IF 6.707) Meiling Yan, Weicheng Jiao*, Guomin Ding, Zhenming Chu, Yifan Huang, Rongguo Wang. High strength and toughness epoxy nanocomposites reinforced with graphene oxide-nanocellulose micro/nanoscale structures. Applied Surface Science. 2019, 497, 143802. (IF 6.707)

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