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研究生导师 关晓宇



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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)

22022.7-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)

92016.10-2020.3 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)

102016.10-2017.3 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)

112020.4-2021.3 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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