[1]熊晶晶,傅佳佳,王文聪,等.织物吸湿快干性能测试方法研究进展[J].服装学报,2020,5(04):283-289.
 XIONG Jingjing,FU Jiajia,WANG Wencong,et al.Research Progress on Testing Methods of Moisture Absorption and Quick-Drying Properties of Fabrics[J].Journal of Clothing Research,2020,5(04):283-289.
点击复制

织物吸湿快干性能测试方法研究进展()
分享到:

《服装学报》[ISSN:2096-1928/CN:32-1864/TS]

卷:
第5卷
期数:
2020年04期
页码:
283-289
栏目:
服装材料科学
出版日期:
2020-08-31

文章信息/Info

Title:
Research Progress on Testing Methods of Moisture Absorption and Quick-Drying Properties of Fabrics
作者:
熊晶晶;  傅佳佳;  王文聪;  王鸿博*
江南大学 纺织科学与工程学院,江苏 无锡 214122
Author(s):
XIONG Jingjing;  FU Jiajia;  WANG Wencong;  WANG Hongbo*
College of Textile Science and Engineering,Jiangnan University,Wuxi 214122,China
分类号:
TS 107
文献标志码:
A
摘要:
探讨织物湿传递特性,阐述织物吸湿快干相关性能测试的常用方法和参照标准,分析各种测试方法的优势和不足,为吸湿快干类纺织品的生产和性能检测提供参考。重点介绍国内外研究者提出的几种新型测试方法,以求进一步提高织物吸湿、导湿和快干性能测试结果的准确性,提升测试方法的全自动化、智能化程度。
Abstract:
In this paper, the moisture transfer properties of fabrics were discussed, and several main methods and reference standards about the testing methods of moisture absorption and quick-drying properties of fabrics were stated. The advantages and disadvantages of different testing methods were analyzed to provide certain reference for the production and test of moisture absorption and quick-drying textiles. Several new test methods proposed by domestic and foreign researchers were introduced,in order to further improve the accuracy of the test results of moisture absorption, moisture conduction and quick-drying properties, improve the automatic and intelligent degree of the test method.

参考文献/References:

[1] 马磊.吸湿排汗纺织产品开发现状与发展趋势[J].纺织导报, 2017(9): 22-24.
MA Lei. Status and development of moisture absorbent and quick-drying textiles[J]. China Textile Leader, 2017(9): 22-24.(in Chinese)
[2] 刘旖娜,朱雯喆,吴浩,等.吸湿速干产品质量现状分析[J].纺织导报,2017(9):28-30,32.
LIU Yina, ZHU Wenzhe, WU Hao, et al. An analysis on the quality status of moisture absorbent and quick-drying garment[J]. China Textile Leader,2017(9):28-30,32.(in Chinese)
[3] 李金秀,周佩蓉,金敏.吸湿速干纺织品的测试评价[J].印染, 2011(15):36- 40.
LI Jinxiu, ZHOU Peirong, JIN Min. Testing and evaluation of absorption and quick-drying textiles[J]. Printing and Dyeing, 2011(15):36- 40.(in Chinese)
[4] 王涛,吴浩宁.浅谈服装热湿舒适性及评价方法[J].中国纤检, 2015(10): 74-76.
WANG Tao, WU Haoning. Introduction to the thermal and humid comfort and evaluation method[J]. China Fiber Inspection, 2015(10): 74-76.(in Chinese)
[5] 张天祥,章辉,韩玉茹.纺织品吸湿速干功能测试方法的探讨[J]. 纺织标准与质量,2018(5):7-12.
ZHANG Tianxiang, ZHANG Hui, HAN Yuru. Discussion on test methods of moisture absorbent and quick-drying property of textiles [J]. Textile Standards and Quality,2018(5):7-12.(in Chinese)
[6] 王小兰.吸湿速干测试标准怎么用,起草专家这样说[J].中国纤检, 2018(1):96-98.
WANG Xiaolan. How to use the test standards of absorption and quick-drying, and the draft expert said like this[J]. China Fiber Inspection,2018(1):96-98.(in Chinese)
[7] 中国国家标准化管理委员会. 纺织品织物透湿性试验方法第1部分:吸湿法:GB/T 12704.1—2009[S].北京:中国标准出版社,2009:3.
[8] 中国国家标准化管理委员会. 纺织品织物透湿性试验方法第2部分:蒸发法:GB/T 12704.2—2009[S].北京:中国标准出版社,2009:3.
[9] Testing methods for water vapor permeability of textiles: JIS L 1099—2012[S/OL]. [2019-04-21]. https://max.book118.com/ html/2019 /0714/ 7020101002002041.shtm.
[10] Water vapour permeable apparel fabrics:BS 7209—1990[S/OL]. [2019-04-21]. http://www.biaozhuns.com/archives/ 20150926/ show-133073-80-1.html.
[11] 中国国家标准化管理委员会. 纺织品吸湿速干性的评定第1部分:单项组合试验法:GB/T 21655.1—2008[S]. 北京:中国标准出版社,2008:4.
[12] Vertical wicking of textiles: AATCC TM 197—2013[S/0L]. [2019-04-25].http://freestd.us.ap1700.com/soft4/4127935.htm.
[13] Test methods for water absorbency of textiles: JIS L 1907— 2010[S/OL]. [2019-04-26].https://max.book118.com/ html/2011/0218/71706.shtm.
[14] PARADA M, DEROME D, ROSSI R M, et al. A review on advanced imaging technologies for the quantification of wicking in textiles[J].Textile Research Journal,2017,87(1):110-132.
[15] Absorbency of textiles:AATCC TM 79—2014[S/OL].[2019-05-01].http://www.doc88.com/p-1015092023048. html.
[16] Horizontal wicking of textiles: AATCC TM 198—2013[S/OL]. [2019-05-01].http://www.doc88.com/p-797918 0332598.html.
[17] Method for resistance of fabrics to water absorption(static immersion test): BS 3449—1990[S/OL]. [2019-05-02].http://www.doc88. com/p-3897471855745.html.
[18] 张婧炜,王新厚,陆肖莉,等. 异形截面纤维织物吸湿速干性能的测评[J].上海纺织科技,2011,39(9):56-57.
ZHANG Jingwei, WANG Xinhou, LU Xiaoli, et al. Evaluation of absorption and quick-dry performance of fabric made of shaped fibers[J]. Shanghai Textile Science and Technology,2011,39(9):56-57.(in Chinese)
[19] Liquid moisture management properties of textile fabrics: AATCC TM 195—2012[S/OL]. [2019-05-04].http://www. doc88.com/p-3833891812585.html.
[20] Testing methods for woven and knitted fabrics: JIS L 1096— 2010 [S/OL]. [2019-05-04].http://www.doc88.com/p-9186471644947.html.
[21] Drying time of textiles: moisture analyzer methods: AATCC TM 199—2012[S/OL]. [2019-05-06]. http://www.doc88.com/p-1458981036677.html.
[22] 蒋红,石雪.几种纺织品吸湿速干性能测试方法的比较分析[J]. 中国纤检, 2017(3): 107-110.
JIANG Hong, SHI Xue. A comparative analysis of testing methods for several textile hygroscopic and quick-drying performance[J]. China Fiber Inspection, 2017(3): 107-110.(in Chinese)
[23] Drying rate of fabrics: heated plate method: AATCC 201— 2013(R2014)[S/OL]. [2019-05-08].http://zbgb5.com/122/ Standard Detail 4159648.htm.
[24] HU J Y, LI Y, YEUNGK W, et al. Moisture management tester: a method to characterize fabric liquid moisture management properties[J]. Textile Research Journal, 2005, 75(1):57-62.
[25] 张才前,姚菊明.织物导湿排汗性能自动测试方法[J].纺织学报,2018,39(1):45-50.
ZHANG Caiqian, YAO Juming. Automatic moisture transmission and perspiration test method of fabrics[J]. Journal of Textile Research,2018,39(1):45-50.(in Chinese)
[26] LEE J H, KIM S H, LEE K J, et al. Determining the absorption properties of split-type microfiber fabrics by measuring the change in color depth[J]. Textile Research Journal,2004,74(3): 271-278.
[27] WEDER M, BRUHWILER P A, LAIB A. X-ray tomography measurements of the moisture distribution in multilayered clothing systems[J]. Textile Research Journal,2006,76(1):18-26.
[28] BIRRFELDER P, DORRESTIJN M, ROTH C, et al. Effect of fiber count and knit structure on intra- and inter-yarn transport of liquid water[J].Textile Research Journal,2013,83(14): 1477-1488.
[29] KEISER C, WYSS P,ROSSI R M. Analysis of steam forma-tion and migration in firefighters’ protective clothing using X-ray radiography[J].International Journal of Occupational Safety and Ergonomics,2010,16(2): 217-229.
[30] HASSAN M M, LEIGHS S J. Quick dry ability of various quick drying polyester and wool fabrics assessed by a novel method[J]. Drying Technology, 2017,35(5): 585-592.
[31] RAJA D, RAMAKRISHNAN G, BABU V R, et al. Compa-rison of different methods to measure the transverse wicking behavior of fabrics[J]. Journal of Industrial Textiles,2014,43(3):366-382.
[32] 姜晓云,周小红,翁鸣,等.基于垂直芯吸法的织物导湿性能图像处理修正[J].纺织学报,2010,31(6):58-61.
JIANG Xiaoyun, ZHOU Xiaohong, WENG ming, et al.Image-processing amendment of fabric moisture transfer property based on vertical wicking measurement[J].Journal of Textile Research,2010,31(6):58-61.(in Chinese)
[33] 詹永娟,谢维斌,姜晓云,等.织物液态水传递性能的自动检测技术及应用[J]. 浙江理工大学学报(自然科学版), 2013,30(1): 6-11.
ZHAN Yongjuan, XIE Weibin, JIANG Xiaoyun, et al. Technology and application of the automatic detection in testing liquid transport properties of textiles[J]. Journal of Zhejiang Sci-Tech University(Natural Sciences Edition),2013,30(1): 6-11.(in Chinese)
[34] 赵兵,王芳芳,陈文艳.基于图像处理的井下作业防护织物导湿性能研究[J].产业用纺织品,2016,34(11):36- 40.
ZHAO Bing, WANG Fangfang, CHEN Wenyan. Study on moisture transfer performance of underground protective fabric based on image processing technique[J]. Technical Textiles,2016,34(11): 36- 40.(in Chinese)
[35] NIEDERMANN R, ROSSI R M. Objective and subjective evaluation of the human thermal sensation of wet fabrics[J]. Textile Research Journal, 2012,82(4):374-384.
[36] DERLER S, RAO A, BALLISTRERI P, et al. Medical textiles with low friction for decubitus prevention[J]. Tribology International, 2012,46(1): 208-214.
[37] DEMA M, TURNER C, SARI-SARRAF H, et al. Machine vision system for characterizing horizontal wicking and drying using an infrared camera[J]. IEEE Transactions on Industrial Informatics, 2016,12(2):493-502.
(责任编辑:沈天琦)

更新日期/Last Update: 2020-08-30