[1] |
亢旭阳, 韩延阳, 尚亚国. 尼龙产业发展趋势研究[J]. 化学工程与装备, 2011(6):154-156.
|
|
KANG Xuyang, HAN Yanyang, SHANG Yaguo. Study on the development trend of nylon industry[J]. Chemical Engineering & Equipment, 2011(6):154-156.
|
[2] |
吴滚滚, 冯美平. 废聚酰胺纤维回收利用的研究进展[J]. 合成纤维工业, 2014, 37(2):51-55.
|
|
WU Gungun, FENG Meiping. Research progress in recycling and utilizing polyamide fiber waste[J]. China Synthetic Fiber Industry, 2014, 37(2):51-55.
|
[3] |
王忍, 杜文琴. 涂层织物生产方法与发展趋势[J]. 纺织导报, 2011(2):58,60-62.
|
|
WANG Ren, DU Wenqin,. Production method and development trend of coating fabric[J]. China Textile Leader, 2011(2):58,60-62.
|
[4] |
唐斌, 李小宁, 刘振东, 等. 尼龙6局部络合的研究[J]. 北京服装学院学报(自然科学版), 2008, 28(2):1-7.
|
|
TANG Bin, LI Xiaoning, LIU Zhendong, et al. Partial complex of nylon 6[J]. Journal of Beijing Institute of Fashion Technology(Natural Science Edition), 2008, 28(2):1-7.
|
[5] |
VASANTHAN N, KOTEK R, JUNG D W, et al. Lewis acid-base complexation of polyamide 66 to control hydrogen bonding, extensibility and crystallinity[J]. Polymer, 2004, 45(12):4077-4085.
DOI
URL
|
[6] |
MEGYES T, BÁLINT S, BAKÓ I, et al. Solvation of calcium ion in methanol: Comparison of diffraction studies and molecular dynamics simulation[J]. Chemical Physics, 2006, 327(2/3):415-426.
DOI
URL
|
[7] |
王农, 孟庆洛, 王兴权. 氯化钙在甲醇水溶液中的结晶[J]. 化学世界, 2014, 55(10):601-604,627.
|
|
WANG Nong, MENG Qingluo, WANG Xingquan. Crystallization of calcium chloride in methanol-aqueous solution[J]. Chemical World, 2014, 55(10):601-604,627.
|
[8] |
BUJNICKA K, HAWLICKA E. Solvation of Ca2+ in aqueous methanol: MD simulation studies[J]. Journal of Molecular Liquids, 2006, 125(2-3):151-157.
DOI
URL
|
[9] |
雷鹏飞, 黄亚伟, 袁森浩, 等. 油酸原位合成碳酸钙及其在聚酰胺湿法涂层中的应用[J]. 纺织学报, 2019, 40(5):70-77.
|
|
LEI Pengfei, HUANG Yawei, YUAN Senhao, et al. In-situ synjournal of calcium carbonate from oleic acid and application there of in wet coating of polyamide[J]. Journal of Textile Research, 2019, 40(5):70-77.
|
[10] |
叶思佳. 高岭土改性及其在聚酰胺湿法涂层中的应用研究[J]. 浙江理工大学学报, 2018, 18(15):16-22
|
|
YE Sijia. Study on modification of kaolin and its application in polyamide wet coating[J]. Zhejiang Sci-Tech University, 2018, 18(15):16-22
|
[11] |
李涛, 杜奕铃, 李红艳, 等. 无机填充剂对聚酰胺湿法涂层商标织物性能的影响[J]. 纺织学报, 2017, 38(3):114-121.
|
|
LI Tao, DU Yiling, LI Hongyan, et al. Influence of inorganic fillers on properties of polyamide wet-coating trademark fabrics[J]. Journal of Textile Research, 2017, 38(3):114-121.
|
[12] |
VASILJEVIĆ J, ČOLOVIĆ M, ČELAN KOROŠIN N, et al. Effect of different flame-retardant bridged dopo derivatives on properties of in situ produced fiber-forming polyamide 6[J]. Polymers, 2020, 12(3):657.
DOI
URL
|
[13] |
HUANG W J, YAN W, HE W T, et al. Synergistic flame-retardant effect of DOPO-based derivative and organo-montmorillonite on glass-fiber-reinforced polyamide 6 T[J]. Polymers for Advanced Technologies, 2020, 31(9):12-17
|
[14] |
LUO H Q, RAO W H, LIU Y L, et al. Novel multielement DOPO derivative toward low-flammability epoxy resin[J]. Journal of Applied Polymer Science, 2020, 137(46):7-9
|
[15] |
韩明轩, 许苗军, 李斌. 新型含磷阻燃剂DOPO-PPO的合成及其阻燃性能[J]. 合成化学, 2016, 24(2):98-101,106.
|
|
HAN Mingxuan, XU Miaojun, LI Bin. Synjournal and flame retardant properties of anovel phosphorous-containing flame retardant DOPO-PPO[J]. Chinese Journal of Synthetic Chemistry, 2016, 24(2):98-101,106.
|
[16] |
智海辉, 张龙, 郑今欢. 聚酰胺湿法涂层浆的制备机制及其成膜性能[J]. 纺织学报, 2015, 36(9):65-69.
|
|
ZHI Haihui, ZHANG Long, ZHENG Jinhuan. Preparation mechanism and membrane properties of polyamide wet coating[J]. Journal of Textile Research, 2015, 36(9):65-69.
|
[17] |
李涛. 商标织物PA6涂层膜结构与应用性能研究[D]. 杭州:浙江理工大学, 2017:19-26.
|
|
LI Tao. Study on Structure and Application Performance of PA6 Coating on Trademark Fabric[D]. Hangzhou: Zhejiang Sci-Tech University, 2017: 19-26.
|
[18] |
LIU Q, LIAO B, PANG H, et al. Preparation and characterization of a self-matting coating based on waterborne polyurethane-polyacrylate hybrid dispersions[J]. Progress in Organic Coatings, 2020, 143:105551.
DOI
URL
|
[19] |
ZHONG S, LI J, YI L, et al. Cross-linked waterborne alkyd hybrid resin coatings modified by fluorinated acrylate-siloxane with high waterproof and anticorrosive performance[J]. Polymers for Advanced Technologies, 2019, 30(2):292-303.
DOI
URL
|