摘要
为探究间位芳纶纤维悬浮液的絮凝特性,本研究从流变学角度出发,分别研究了单一间位芳纶短切纤维和间位芳纶沉析纤维悬浮液及两者共混悬浮液的絮凝浓度、剪切屈服应力和压缩屈服应力,同时通过湿法成形工艺探索间位芳纶纤维悬浮液的屈服流变特性与成纸匀度间的构效关系。结果表明,不同纤维配比间位芳纶纤维悬浮液的凝结点在0.37~0.68 g/L之间,悬浮液的压缩屈服应力和剪切屈服应力与纤维浓度间分别呈线性和指数函数关系;除100%短切纤维悬浮液外,在同一浓度下,间位芳纶纤维悬浮液的压缩屈服应力和剪切屈服应力均随着沉析纤维比例的增大而减小;间位芳纶纤维悬浮液Froude数随着浓度的增大而减小,对特定配比的间位芳纶纤维悬浮液,间位芳纶纸的匀度指数随着悬浮液Froude数的增大而增大。
To investigate the flocculation mechanism of meta-aramid fiber suspensions,the critical flocculation concentration,shear and compressive yield stress of the single suspensions of meta-aramid staple fibers and fibrids as well as their mixed suspensionwere examined,and relations between the formation index of the resultant paper and rheological properties could be found based on the rheological theory.The results showed that the flocculation concentration ranged from 0.37 to 0.68 g/L,and the compressive yield stress and shear yield stress of the suspension were depend on the mass concentration complying with a linear and a power-law relationship,respectively.In addition,both the compressive yield stress and the shear yield stress decreased as the proportion of fibrid increased at a certain concentration,with the exception of 100%staple fiber suspensions.Moreover,as the concentration increased,the Froude number decreasd accordingly,and the formation index of aramid paper with a specific staple fiber to fibrid ratio increased with increasing Froude number.
作者
王珮瑶
张美云
沙九龙
宋顺喜
甄晓丽
WANG Peiyao;ZHANG Meiyun;SHA Jiulong;SONG Shunxi;ZHEN Xiaoli(College of Bioresources Chemical and Materials Engineering,China National Light Industry Key Lab of Paper Based Functional Materials,National Demonstration Center for Experimental Light Chemistry Engineering Education,Shaanxi University of Science&Technology,Xi’an,Shaanxi Province,710021;Guangxi Key Lab of Clean Pulp&Papermaking and Pollution Control,College of Light Industry and Food Engineering,Guangxi University,Nanning,Guangxi Zhuang Autonomous Region,530004)
出处
《中国造纸》
CAS
北大核心
2020年第1期33-38,共6页
China Pulp & Paper
基金
国家重点研发计划(2017YFB0308300)。
关键词
间位芳纶
压缩屈服应力
剪切屈服应力
成纸匀度
meta-aramid fiber
compressive yield stress
shear yield stress
sheet formation