详细信息
文献类型:期刊文献
中文题名:阳离子水性聚氨酯的相反转与性能
英文题名:Phase inversion and properties of cationic water-borne polyurethane
作者:孙新波[1];王得宁[1];袁荞龙[1]
机构:[1]华东理工大学材料科学与工程学院,上海200237
年份:2006
卷号:57
期号:2
起止页码:453
中文期刊名:化工学报
外文期刊名:CIESC Journal
收录:CSTPCD;;EI(收录号:2006199868234);Scopus;北大核心:【北大核心2004】;CSCD:【CSCD2011_2012】;
基金:上海市高等学校科学技术发展基金(03JG05042);国家自然科学基金项目(50073005).~~
语种:中文
中文关键词:水性阳离子聚氨酯;亲水扩链剂;分散温度;相反转
外文关键词:water-borne cationic polyurethane; hydrophilic chain-extender; dispersion temperature; phase inversion
摘要:A series of cationic water-borne polyurethane(CWPU) was synthesized from isophorone diisocyanate (IPDI), polyneopentanediol adipate (P756) and hydrophilic N-methyl dihydroxyethyl amine (N-MDEA) by using the one-step process. Phase inversion of the cationic water-borne polyurethane was established by tracing the change of conductivity and speed of stirrer during the dispersion process.The conductivity of CWPU increased to a maximum, and then decreased to a stabe value.This result showed that the enrichment of partial anion and the gemination of ion occurred successively during the process of phase inversion.Conductivity kept stable after the Stern layer of the CWPU colloid particles were formed. The effects of dispersion temperature and the amount of N-MDEA on the particle size of CWPU were discussed. The particle size and polydispersity of CWPU were decreased with higher dispersion temperature and increasing amount of hydrophilic chain-extender. There existed optimal dispersion temperature and amount of chain-extender of the cationic polyurethane during the dispersion process. The DSC and DMA data of the cast film of CWPU showed that water could enter the partially disrupted ordered structure of the CWPU hard segment when phase inversion occurred at an appropriate temperature, and the stable, smaller particle size and polydisperse of the CWPU could be obtained.
A series of cationic water-borne polyurethane (CWPU) was synthesized from isophorone diisocyanate (IPDI), polyneopentanediol adipate (P756) and hydrophilic N-methyl dihydroxyethyl amine (N-MDEA) by using the one-step process. Phase inversion of the cationic water borne polyurethane was established by tracing the change of conductivity and speed of stirrer during the dispersion process. The conductivity of CWPU increased to a maximum, and then decreased to a stabe value. This result showed that the enrichment of partial anion and the gemination of ion occurred successively during the process of phase inversion. Conductivity kept stable after the Stern layer of the CWPU colloid particles were formed. The effects of dispersion temperature and the amount of N-MDEA on the particle size of CWPU were discussed. The particle size and polydispersity of CWPU were decreased with higher dispersion temperature and increasing amount of hydrophilic chain-extender. There existed optimal dispersion temperature and amount of chain-extender of the cationic polyurethane during the dispersion process. The DSC and DMA data of the cast film of CWPU showed that water could enter the partially disrupted ordered structure of the CWPU hard segment when phase inversion occurred at an appropriate temperature, and the stable, smaller particle size and polydisperse of the CWPU could be obtained.
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