[1]
WANG Yao-wu, YANG Jian-zhong, TIAN Xiu-feng. Test Analysis of Moisture-heat Transmission Performance of Coolmax Fabric[J]. Cotton Textile Technology, 2004, 32(3): 26-28.
Google Scholar
[2]
FU Ju-fen, HOU Ya-yun. Study on the Heat-moisture Property of Original Bamboo Fabric[J]. SILK, 2005, (12): 51-53.
Google Scholar
[3]
YU Wei-dong, CHU Cai-yuan. Textile Physics[M. Shanghai: Donghua University Press, 2001.
Google Scholar
[4]
HE Fang, ZHOU Jing-yi. Research of wet comfort plain fabric[J]. Journal of Tianjin Polytechnic University, 2011, 30(1): 32-35.
Google Scholar
[5]
JIANG Li-yun, WU Wei-min, SUN Qing. A comfortable performance test and analysis of soybean elastic fabric[J]. Shanghai Textile Science & Technology, 2006, 34(12): 62-63.
Google Scholar
[6]
HU Xin-yi, HAN Guang-ting, FENG Xun-wei. Research on Thermal & Wet Comfort of Soybean-protein Fibred Fabrics[J]. Journal of Donghua University, Natural Science, 2004, 30(1): 123-128.
Google Scholar
[7]
MA Shun-bin, WU Pei-yun. Identification and performance analysis of bamboo pulp fiber and viscose fiber[J]. Wool Textile Journal, 2010, 38(1): 42-46.
Google Scholar
[8]
ZHAO Shu-jing. Textile Material Experiment Tutorial[M]. Beijing: China Textile&Apparel Press, 1991: 396-417.
Google Scholar
[9]
WANG Li-bing, HU Xin-yi, QI Su-zhen. Application of gray clustering analysis in performance multiple evaluation of textile materials[J]. Journal of Tianjin Polytechnic University, 2006, 25(3): 23-26.
Google Scholar
[10]
WANG Xue-qian, WANG Zhi, XIE WEI-yuan, et al. Application of grey clustering analysis of wet comfort of knitted fabric [J]. Journal of Textile Research, 1991, 12(2): 60-62, 79.
Google Scholar
[11]
WEI An-fang, XU De-sheng, WANG Xue-qian, et al. Application of grey clustering analysis of wet comfort of Coolmax fabric[J]. Textile Science Research, 2008, (2): 40-54.
Google Scholar