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武鲜艳

【来源:WilliamHill官方网址 | 发布日期:2018-09-21 】

威廉希尔官网纺织工程系教师信息表

姓名

武鲜艳

性别

学位

博士

职称

副教授

电话

15268305468

Email

xywu@zjxu.eud.cn

研究领域及研究方向

研究领域:产业用纺织品

研究方向:纺织复合材料,包括三维机织和三维编织复合材料结构设计、制备、动态力学性能、有限元分析等

代表荣誉及奖励

1.2022年嘉兴学院优秀本科毕业论文指导老师

2.2021入选嘉兴学院百青培养计划

代表性论文

(按时间倒序排列)

[1]   Xianyan Wu*, Baozhong Sun, Baicun   Wang, et al. X-ray microtomography analysis of the damage mechanisms in 3D   circular braided carbon fiber/epoxy resin composite tubes under axial impact   compression. Composites Communications, 2023, 40: 101650. (SCI二区)

[2]   Qian Jiang, Heng Chen, Ling, Zhiyan Zhong, Xianyan Wu*, et al. Experimental and Finite Element Simulation of   Torsional Performance of Skin-core Carbon Fiber-reinforced Composite Rod [J].   Applied Composite Materials, 2023: 10090-9.

[3]   Tao Liu, Jingjing Dong, Xianyan Wu*,   et al. Predictions of Bending Modal Properties of the 3D Braided Composites   with the Homogeneous Theoretical Model. Fibers and Polymers, 2022,   23(13):3516-3525.

[4]   Qian Jiang, Ye Qiao, Azim Uddin, Xianyan   Wu*, et al. Influence of impact on electromagnetic response of   three-dimensional angle-interlock metacomposites. Composites Communications,   2022, 30: 101076. (SCI二区)

[5]   Tao Liu, Xianyan Wu*, Wei Fan , et   al. Investigations of defect effect on dynamic compressive failure of 3D   circular braided composite tubes with numerical simulation method.   Thin-Walled Structures, 2021, 160:107381.SCI二区)

[6]   Shengkai Liu, Xianyan Wu*, Siqi   Liu*, et al. Effect of thermo-oxidative ageing on the thermomechanical   responses of 3D braided carbon fiber/ epoxy composites during high-speed   impact [J]. The Journal of the Textile Institute, 2022, 113(12): 2575-2584.

[5]   Sheng Xie , Guojun Jiang , Xianyan Wu*   , et al. Air Recirculation and Its Effect on Microfiber Spinning in Blunt-Die   Melt Blowing. Fibers and Polymers, 2021, 22(3):1-8.

[6]   Jiang Q, Zhang Q, Xianyan Wu*, et   al. Exploring the Interfacial Phase and pi-pi Stacking in Aligned Carbon   Nanotube/Polyimide. Nanomaterials, 2020, 10(6),1158.SCI二区)

[7]   Liwei Wu, Feng Zhao, Junbao Xie, Xianyan   Wu*, et al. The Deformation Behaviors and Mechanism of Weft Knitted Fabric   based on Micro-scale Virtual Fiber Model. International Journal of Mechanical   Sciences, 2020, 187(19):105929. SCI二区)

[8]   Tao Liu, Wei Fan, Xianyan Wu*,   Comparisons of influence of random defects on the impact compressive behavior   of three different textile structural composites. Materials & Design,   2019, 181:108073-108073. SCI二区)

[9]   Zhongxiang Pan, Xianyan Wu*, Liwei   Wu. Temperature rise caused by adiabatic shear failure in 3D braided   composite tube subjected to axial impact compression. Journal of Composite   Materials, 2019, 54(10):1305-1326.

[10]   Yiwei Ouyang, Xianyan Wu*. A   review on the mechanical properties of textile structural composite T-beams.   Textile Research Journal, 2019, 90(5-6): 710-727.

[11]   武鲜艳, 申屠宝卿, 马倩, . 球形弹体冲击下三维正交机织物结构破坏机制有限元分析,   纺织学报,   2020, 41(8):32-38. (EI,一级期刊)

[12]   Xianyan Wu, Zhang Q, Gu BH, Sun BZ*. Influence of temperature and   strain rate on thelongitudinal compressive crashworthiness of 3-D braided   composite tubes and finite element analysis. International Journal of Damage   Mechanics, 2017,   26(7): 1003-1027.

[13]   Xianyan Wu, Zhang Q, Wei Zhang, Gu BH, Sun BZ, Baozhong Sun.   Axial compressive deformation and damage of four-step 3-D circular braided   composite tubes under various strain rates. Journal of the Textile Institute,   2016, 107(12): 1584-1600.

[14]   Xianyan Wu, Gu BH, Sun BZ*. Comparisons of axial compression   behaviors between four-directional and five-directional braided composite   tubes under high strain rate loading. Journal of Composite Materials, 2016,   50(28):   3905-3924.

专利成果

(按授权时间倒序排列,备注是否转让)

(1) 徐峰,武鲜艳,周志刚,顾越,粱仕坤, 一种抗菌芳香毛绒面料及其制备方法和应用,发明专利:CN114045683B 授权日期:2023.6.27

(2) 徐峰,武鲜艳,凌国恒,朱佳峰,许俊杰,一种抗菌芳香滚刷及其制备方法和应用,发明专利:CN202111356011.X 授权日期:   2022.10.14

(3) 张彩丹,武鲜艳,俞巧珍,一种具有多孔表面结构的复合纳米纤维及其制备方法, 发明专利:CN201910207256.2 授权日期:2019.3.19

近年来在研/结项项目(负责人)


1. 三维编织复合材料圆管高低温冲击热力耦合损伤多尺度分析

51805210,国家自然科学青年基金项目,结项)

2.三维五向混杂编织复合材料圆管低速冲击损伤细观结构分析

(中国博士后科学基金项目,在研)

3.三维编织复合材料开发与冲击压缩力学行为研究

2019AD32005,嘉兴市科技市科技计划项目,结项)

4.三维五向碳/芳纶混杂编织复合材料薄壁管耐低速冲击关键技术研究(2022AY10022,嘉兴市科技计划项目,在研)



社会兼职

中国纺织工程学会会员,担任Textile Research   of Journal, Journal of Industrial Textiles, Fibers and PolymersSCI期刊审稿人。