
关晓宇 副教授
教育背景
学位 博士
学习经历
2016.10-2021.03 日本国立信州大学 生命机能纤维工学(博士)
2013.09-2016.04 天津工业大学 纺织工程(硕士)
2005.09-2009.06 天津工业大学 纺织工程(学士)
研究方向
1 智能纤维材料
2 智能复合材料
3 绿色可持续纤维材料
4 纤维基智能可穿戴纺织品
5 基于神经网络和感性工学在织物图案和服装设计领域的研究
招生专业 (方向):材料科学与工程,纺织工程,轻化工程,服装工程等工科方向
学术成果
科研项目 (主持科研项目)
1. 2023.6-至今 中国纺织工业联合会纺织之光基础研究项目:无源温致形变纤维及其在自调温面料上的应用(主持)
2.2022.7-至今 国家先进功能纤维创新中心:基于温致形变纤维智能调温面料关键技术研究(主持)
3. 2022.4-至今 中国纺织信息中心:未来可持续材料研究 (主持)
4. 2023.9-至今 应急管理部天津消防研究所:多尺度结构协同调控莫来石/碳纤维柔性可陶瓷化复合织物的抗烧灼机理研究(主持)
5. 2023.9-至今 中国纺织信息中心:醋酸纤维皂化鉴别关键技术研究(主持)
6. 2022.11-至今 国家重点研发计划 课题2:嵌入柔性传感系统兼具热防护与危化品阻隔的灭火防护服研发 (参与)
7. 2023.10-至今 上海舒画实业有限公司:醋酸纤维材料研究与应用(主持)
8. 2023.12-至今 际华三五零二职业装有限公司:集成式职业防护装备的设计(主持)
9.2016.10-2020.3 日本学术振兴会项目:防護服・PPEのための新規機能・構造材料の創製および現場活動に即した評価法の確立 (基金项目编号:KAKENHI 15H01789)(主要参与)
10.2016.10-2017.3 日本学术振兴会项目:Development of high performance EMI materials for specified eshielding frequency region (基金项目编号:KAKENHI 26420721)(主要参与)
11.2020.4-2021.3 日本学术振兴会项目:Collaborative Research of Personal Protective Clothing for Managing Human Risks in Extreme Environments (基金项目编号:KAKENHI 20H00288)(主要参与)
发表论文
[1] Guan X, Chen H, Xia H, et al. Flexible energy harvester based on aligned PZT/SMPU nanofibers and shape memory effect for curved sensors[J]. Composites Part B: Engineering, 2020, 197: 108169.
[2] Guan X, Dong Y, Xia H, et al. Mechanical and shape memory performance of shape memory polyurethane-based aligned nanofibers[J]. Polymer Testing, 2020, 91: 106778.
[3] Ni Q Q, Guan X, Zhu Y, et al. Nanofiber-based wearable energy harvesters in different body motions[J]. Composites Science and Technology, 2020, 200: 108478.
[4] Guan X, Chen H, Xia H, et al. Multifunctional composite nanofibers with shape memory and piezoelectric properties for energy harvesting[J]. Journal of Intelligent Material Systems and Structures, 2020, 31(7): 956-966.
[5] Guan X, Xia H, Ni Q-Q. Shape memory polyurethane-based electrospun yarns for thermo-responsive actuation[J]. Journal of Applied Polymer Science, 2021.
[6] Zhang H, Zhai Q, Guan X, et al. Tri‐Layered Bicomponent Microfilament Composite Fabric for Highly Efficient Cold Protection[J]. Small, 2023, 19(44): 2303820.
[7] Zheng G, Wang X, Zhang H, et al. Enhancing two-way shape memory behavior of polycaprolactone nanofibers through aligned crystallization optimization[J]. Textile Research Journal, 2023, 93(19-20): 4589-4599.
[8] Han Y, Lou C, Li A, et al. Advanced Piezoelectric Composite Fibers with Shape Memory Polyurethane for Energy-Harvesting Applications[J]. Fibers and Polymers, 2024, 25(2): 415-424.
[9] Guan X, Qian X, Yang Z. Comparison of several image analysis methods for fiber dispersion uniformity in water[J]. Journal of Dispersion Science and Technology, 2017, 38(1): 19-25.
[10] Shi Y, Chen H, Guan X*. High shape memory properties and high strength of shape memory polyurethane nanofiber-based yarn and coil[J]. Polymer Testing, 2021, 101: 107277.
[11] Shi Y, Guan X*, Qian X. Influence of quadrat characteristics on the evolution of the dispersion effect for fiber–water dispersions[J]. Textile Research Journal, 2021: 00405175211064248.
[12] Zheng G, Wang X, Zhang H, Guan X*. Alignment Optimization and Two-way Shape Memory Performance of Polycaprolactone Nanofibers [J]. Textile Research Journal, 2023.
[13] Zhang, H., Zhen, Q., Liu, Y., Wang, L., Guan X., & Zhang, Y. (2020). Binary structured polypropylene-/propylene-based elastomer fibrous membranes with enhanced flexibility. Journal of Industrial Textiles, 1528083720903041.
[14] Zhang H, Zhen Q, Guan X Y, et al. Fluffy Polypropylene–Polyethylene glycol fabrics with branched micro-and nanofibrous structures for rapid liquid transport[J]. Polymer Testing, 2020, 83: 106310.
[15] Zhang, H., Zhen, Q., Yan, Y., Guan X., Liu, R., & Liu, Y. (2020). Polypropylene/polyester composite micro/nano-fabrics with linear valley-like surface structure for high oil absorption. Materials Letters, 261, 127009.
[16] 关晓宇,钱晓明,杨棹航.合成纤维在水中的分散手段与表征方法[J].产业用纺织品,2015,33(08):35-40.
[17] 关晓宇,郭兴峰,肖惠.磁控溅射镀膜锦纶织物的耐磨性研究[J].天津工业大学学报,2010,29(05):49-51.
[18] 关晓宇.抗菌非织造布的研究进展[J].天津纺织科技,2009(02):27-30.
[19] 杨棹航,关晓宇,钱晓明.合成纤维的湿法非织造技术及其应用[J].纺织学报,2016,37(06):163-170.
[20] 杨棹航,钱晓明,关晓宇.消防服热湿传递现象对舒适性的影响[J].棉纺织技术,2015,43(12):5-8.
[21] 黄罗以,关晓宇,王越平.低碳纺织经济下印染行业的转型路径[J].印染,2023,49(01):79-83.
[22] 黄罗以,关晓宇,王越平.双碳背景下纺织印染技术的升级与发展路径[J].天津纺织科技,2023(02).
联系方式
20210008@bift.edu.cn
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