研究方向 |
·三维编织与纺织复合材料 ·3D打印与纺织品增材制造 ·静电纺丝与微纳纺织材料 |
科研项目
· 主持,国家重点研发计划课题、国家科技重大专项子课题、四川省重大科技专项课题等
· 主持,国家自然科学基金、上海市自然科学基金、博士后科学基金等
代表性论文:
1.“Additive manufacturing of multi-directional preforms for composites: opportunities and challenges”, Materials Today, 18(9), 503-512 (2015).
2.“Microstructural design and additive manufacturing and characterization of 3D orthogonal short carbon fiber/acrylonitrile-butadiene-styrene preform and composite”, Composites Science and Technology, 126, 139-148 (2016).
3.“Microstructural characterization of additively manufactured multi-directional preforms and composites via X-ray micro-computed tomography”, Composites Science and Technology, 131, 48-60 (2016).
4.“Printing direction dependence of mechanical behavior of additively manufactured 3D preforms and composites”, Composite Structures, 184, 917-923 (2018).
5.“Structural modeling and mechanical characterizing of three-dimensional four-step braided composites: A review”, Composite Structures, 207, 119-128 (2019).
6.“Preparation and characterization of B4C particle coated composites for stab-resistance”, Composite Structures, 228, 111370 (2019).
7.“Slip effect based bimodal nanofibrous membrane for high-efficiency and low-resistance air purification”, Separation and Purification Technology, 275, 119258 (2021).
8.“Preparation of oil-in-water core-sheath nanofibers through emulsion electrospinning for phase change temperature regulation”, Polymer, 256, 125252 (2022).
9.“3D printed electrospun nanofiber-based pyramid-shaped solar vapor generator with hierarchical porous structure for efficient desalination”, Chemical Engineering Journal, 452(3), 139402 (2023).
10.”Fabrication and braiding angle effect on the improved interlaminar shear performances of 3D braided sandwich hybrid composites”, Journal of Materials Research and Technology-Jmr&T, 25, 5795-5806 (2023).
11.”Effects of structural parameters on radial crashworthiness of 3D braided hybrid tubes with Janus structure”, Thin-Walled Structures, 201(A), 111991 (2024).
12.”Fiber bundle deposition model and variable speed printing strategy for in-situ impregnation 3D printing of continuous fiber reinforced thermoplastic composites”, Composites Science and Technology, 225, 110723 (2024).
13.”Impacts of viscosity on bending behavior of the electrospun jet: Simulation model and experiment”, Polymer, 311, 127529 (2024).
14.”Interference-free assemblable representative volume elements of three-dimensional braided composites for effective elastic properties prediction”, Polymer Composites, DOI:10.1002/pc.29803 (2025).
15. “Simulation of temperature field and optimization of process parameters for in-situ impregnation 3D printing of continuous fiber reinforced composites”, Composites Part A-Applied Science and Manufacturing. (2026)
16. “Interlaminar shear performances and failure mechanisms of 3D braided Janus hybrid composites”, Composites Part A-Applied Science and Manufacturing. (2026)
专利专著:
代表性已授权专利:
1.一种混杂三维编织预制件的制备方法. ZL 2014 1 0225605.0
2.一种3D编织二合板型纤维混杂预制件及其制备方法. ZL 2015 1 0140894.9
3.一种3D编织多合板型纤维混杂预制件及其制备方法. ZL 2015 1 0170815.9
4.一种无间隙排列透气柔性防刺材料及其制备方法. ZL 2019 1 0109669.7
5.一种包缠式柔性防刺材料及其制备方法. ZL 2019 1 0109674.8
6.一种3D编织皮芯结构管状预制体及其制备方法. ZL 2022 1 0833015.0
7.一种纤维分布可控的纤维复合材料3D打印方法. ZL 2022 1 0816496.4
8.一种三维编织储纱装置及其使用方法. ZL 2024 1 1293319.8
代表性专著:
1. “Additive Manufacturing of Multi-Directional Preforms and Composites: Microstructural Design, Fabrication, and Characterization”, in Mechanics of Materials Volume IV Measurement and Applications, series edited by C.-H. Hsueh, volume edited by K. K. Chawla and N. Chawla, Springer-Singapore (2018).
代表性参编教材:
1. 高端产业用纺织品,部委级规划教材
2. 纤维增强复合材料与汽车轻量化技术,部委级规划教材