[1]王宏付,张海棠,柯 莹.智能防寒服装研究进展[J].服装学报,2021,6(01):29-35.
 WANG Hongfu,ZHANG Haitang,KE Ying.Research Progress on Intelligent Cold Protective Clothing[J].Journal of Clothing Research,2021,6(01):29-35.
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智能防寒服装研究进展()
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《服装学报》[ISSN:2096-1928/CN:32-1864/TS]

卷:
第6卷
期数:
2021年01期
页码:
29-35
栏目:
服装信息与工程
出版日期:
2021-02-28

文章信息/Info

Title:
Research Progress on Intelligent Cold Protective Clothing
作者:
王宏付;  张海棠;  柯 莹
江南大学 设计学院,江苏 无锡 214122
Author(s):
WANG Hongfu;  ZHANG Haitang;  KE Ying
School of Design, Jiangnan University, Wuxi 214122, China
分类号:
TS 941.71
文献标志码:
A
摘要:
为探究智能防寒服装在开发过程中的关键问题,从电加热防寒服、流体加热防寒服、化学加热防寒服、相变材料加热防寒服、太阳能防寒服5种类型,介绍智能防寒服的加热原理、研究现状及各自优缺点。归纳总结智能防寒服装在织物层面和服装层面的评价方法,包括电热性能测试、暖体假人实验和人体穿着实验; 预测了智能防寒服装在个性化需求、电子元件与服装一体化集成、安全舒适性3个方面的发展趋势。
Abstract:
In order to explore the key issues in the development of intelligent cold protective clothing, this paper introduced the heating principle, research status, advantages and disadvantages of intelligent cold protective clothing from five types: electric heating cold protective clothing, fluid heating cold protective clothing, chemical heating cold protective clothing, phase change material heating cold protective clothing, and solar cold protective clothing. The evaluation methods of intelligent cold protective clothing at fabric level and clothing level were summarized, including electric heating performance test, warm dummy experiment and human wearing experiment. The development trends of intelligent cold protective clothing in three aspects of personalized demand, integration of electronic components and clothing, safety and comfort were forecasted.

参考文献/References:

[1] 赖丹丹,宋文芳,王发明.冷环境下化学加热和电加热服装舒适性能评价[J].中国个体防护装备,2016(2):40- 45.
LAI Dandan,SONG Wenfang,WANG Faming.Comfort performance evaluation of the chemically and electrically heated clothing in a cold environment[J].China Personal Protective Equipment,2016(2):40- 45.(in Chinese)
[2] 胡春华.基于人体需求的相变纺织品的研究[D].石家庄:河北科技大学,2009.
[3] KASTURIYA N,SUBBULAKSHMI M S,GUPTA S C,et al.System design of cold weather protective clothing[J].Defense Science Journal,1999,49(5):457- 464.
[4] MORRISSEY M P,ROSSI R M.Clothing systems for outdoor activities[J].Textile Progress,2013,45(2):145-181.
[5] WILLIAMS J T.Textiles for cold weather apparel[M].Cambridge:Woodhead Publishing Limited,2009:329-341.
[6] 李萍,蒋晓文.智能电加热服的研究进展[J].棉纺织技术,2019,47(9):79-84.
LI Ping,JIANG Xiaowen.Research progress of intelligent electric heating clothing[J].Cotton Textile Technology,2019,47(9):79-84.(in Chinese)
[7] 柯莹,张向辉.电加热服结构及其性能评价方法[J].纺织导报,2016(11):122-123.
KE Ying,ZHANG Xianghui.Methods for evaluating the structure and properties of electrically-heated garment[J].China Textile Leader,2016(11):122-123.(in Chinese)
[8] 任萍,刘静.可加热服装技术的研究进展[J].纺织科学研究,2008(3):12-18.
REN Ping,LIU Jing.Research progress of heating clothing technology[J].Textile Science Research,2008(3):12-18.(in Chinese)
[9] 闫俣西.一种电加热护腰:108308752A[P].2018-07-24.
[10] KUKKONEN K,VUORELA T,RANTANEN J,et al.The design and implementation of electrically heated clothing[C]//Fifth International Symposium on Wearable Computers.Zurich:IEEE,2001:180-181.
[11] 钟林新,张美云,刘正伟.碳纤维特性及其在功能纸中的应用[J].中国造纸,2007,26(11):50-53.
ZHONG Linxin,ZHANG Meiyun,LIU Zhengwei.The properties of carbon fiber and its application in specialty paper[J].China Pulp and Paper,2007,26(11):50-53.(in Chinese)
[12] MONDAL S.Phase change materials for smart textiles—an overview[J].Applied Thermal Engineering,2008(28):1536-1550.
[13] 崔志英,杨诗慧,张妍,等.石墨烯电加热服装的服用性能研究[J].毛纺科技,2018,46(8):1-5.
CUI Zhiying,YANG Shihui,ZHANG Yan,et al.Evaluation on performance of electrically heated graphene garment[J].Wool Textile Journal,2018,46(8):1-5.(in Chinese)
[14] 智裳科技.AI clothing[EB/OL].[2020-01-07].http://www.ai-clothing.com/jiejuefangan/zhinenghengwen.
[15] 王家欣.一种利用导电布料制成导电电极的智能服装:201720686086.7[P].2018-01-23.
[16] 顾伟,侯成义,张青红,等.智能服装的现状及其发展趋势[J].东华大学学报(自然科学版),2019,45(6):837-843.
GU Wei,HOU Chengyi,ZHANG Qinghong,et al.Present situation and development trend of intelligent garment[J].Journal of Donghua University(Natural Science),2019,45(6):837-843.(in Chinese)
[17] 张雪青,余弘,张岳兰,等.电加热服装的研究进展[J].纺织检测与标准,2019(1):1- 4.
ZHANG Xueqing,YU Hong,ZHANG Yuelan,et al.Research on the development of electrically-heated garment[J].Textile Testing and Standard,2019(1):1- 4.(in Chinese)
[18] 方纾,刘皓,刘莉.柔性电加热元件与智能加热服装服饰研究进展[J].北京服装学院学报(自然科学版),2019,39(2): 83-94.
FANG Shu,LIU Hao,LIU Li.Research progress of flexible electric heating element and smart heating garments[J].Journal of Beijing Institute of Clothing Technology(Natural Science Edition),2019,39(2):83-94.(in Chinese)
[19] 骆雯,王博文,赵诗雯,等.新型节能环保空调服:207707341U[P].2018-08-10.
[20] 刘洪涛,张文瑶,罗国发,等.空调服:208160075U[P].2018-11-30.
[21] SKUBE M E,ACTON R D,KOSCHEYEV V S,et al.Intraoperative temperature regulation in children using a liquid-warming garment[J].Pediatric Surgery International,2017,33(2):145-148.
[22] 张妍.电加热服装的服用性能研究[D].上海:东华大学,2017:2-3.
[23] CHAN C Y L,BURTON D R.Local heating source for shallow water divers[J].Journal of Power Sources,1981,6(3):291-304.
[24] SONG W,WANG F,ZHANG C,et al.On the improvement of thermal comfort of university students by using electrically and chemically heated clothing in a cold classroom environment[J].Building and Environment,2015(12):704-713.
[25] 范一强,贺建芸,刘士成,等.制冷与制热空调服的研究进展[J].纺织学报,2018,39(7):174-180.
FAN Yiqiang,HE Jianyun,LIU Shicheng,et al.Review of cooling and heating garments[J].Journal of Textile Research,2018,39(7):174-180.(in Chinese)
[26] HUNTER I,HOPKINS J T,CASA D J.Warming up with an ice vest:core body temperature before and after cross-country racing [J].Journal of Athletic Training,2006,41(4):371-374.
[27] 王喜娜.简述发热保暖纤维的发热机理及开发应用[J].山东纺织科技,2012,53(5):38- 40.
WANG Xina.Elementary introduction on heat mechanism and development application of exothermic warmth retention fiber[J].Shandong Textile Science and Technology,2012,53(5):38- 40.(in Chinese)
[28] LIU W,LI F,LIU W.Numerical analysis on thermal function of clothing with PCM microcapsules[J].Transactions of Nanjing University of Aeronautics and Astronautics,2019,36(2):320-329.
[29] CHOI K,CHUNG H,LEE B,et al.Clothing temperature changes of phase change material-treated warm-up in cold and warm environments[J].Fibers and Polymers,2005(6):343-347.
[30] 张小雪.基于太阳能利用的发热服装研究[J].国际纺织导报,2014,42(3):55- 60.
ZHANG Xiaoxue.Research of fever garment based on solar energy[J].Melliand China,2014,42(3):55- 60.(in Chinese)
[31] 王向钦,靳向煜.蓄热调温纤维及其在非织造材料中的应用[J].非织造布,2006,14(4):33-35.
WANG Xiangqin,JIN Xiangyu.Thermal storage conditio-ning fiber and its application in nonwovens materials[J].Nonwovens, 2006,14(4):33-35.(in Chinese)
[32] 赵欲晓,李娅莉,史丽敏.柔性薄膜太阳能可调温发热服的电热系统设计[J].北京服装学院学报(自然科学版),2017,37(4):48-53.
ZHAO Yuxiao,LI Yali,SHI Limin.Design of flexible thin-film solar heating clothes with switchable output power[J].Journal of Beijing Institute of Clothing Technology(Natural Science Edition),2017,37(4):48-53.(in Chinese)
[33] KREBS F C,NIELSEM T D,FYENBO J,et al.Manufacture,integration and demonstration of polymer solar cells in a lamp for the "lighting Africa" initiative[J].Energy and Environmental Science,2010,3(5):512-525.
[34] 陈莉,刘皓.可加热纬编针织物的电热性能[J].纺织学报,2015,36(4):50-54.
CHEN Li,LIU Hao.Electric heating performance of heatable weft knitted fabric[J].Journal of Textile Research,2015,36(4):50-54.(in Chinese)
[35] 张猛,富秀荣.碳纤维发热织物的电热性能研究[J].合成纤维,2015,44(11):25-27.
ZHANG Meng,FU Xiurong.Study on electrothermal performance of carbon fiber heating fabric[J].Synthetic Fiber in China,2015,44(11): 25-27.(in Chinese)
[36] 魏冰艳.智能调温面料的开发及性能研究[D].西安:西安工程大学,2015:57-72.
[37] PARK H,HWANG S,LEE J Y,et al.Impact of electrical heating on effective thermal insulation of a multi-layered winter clothing system for opt imal heating efficiency[J].International Journal of Clothing Science and Technology,2016(28):1-18.
[38] UDAYRAJ,LI Z,KE Y,et al.A study of thermal comfort enhancement using three energy-efficient personalized heating strategies at two low indoor temperatures[J].Building and Environment,2018(6):1-14.
[39] SHIN S,CHOI H H,KIM Y B,et al.Evaluation of body heating protocols with graphene heated clothing in a cold environment[J].International Journal of Clothing Science and Technology,2017,29(6):830-844.
[40] 李佳怡,卢业虎,叶鑫,等.智能发热户外防寒服装研制与性能评价[J].东华大学学报(自然科学版),2018,44(1):80-86.
LI Jiayi,LU Yehu,YE Xin,et al.Performance evaluation of outdoor cold protective clothing with smart heating function[J]. Journal of Donghua University(Natural Science Edition),2018,44(1):80-86.(in Chinese)
[41] 翟军辉,薛天宇.基于可穿戴计算技术的保暖服监控系统设计[J].微型机与应用,2015,34(4):26-28.
ZHAI Junhui,XUE Tianyu.Warm clothing design of monitoring system based on wearable computing technology[J].Microcomputer and Its Applications,2015,34(4):26-28.(in Chinese)
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更新日期/Last Update: 2020-02-28