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配合胶乳和硫化胶乳胶膜干燥历程及交联密度比较研究
引用本文:杨磊,陈静,钟杰平,欧春艳,钟海涛.配合胶乳和硫化胶乳胶膜干燥历程及交联密度比较研究[J].广东化工,2009,36(10):2-4.
作者姓名:杨磊  陈静  钟杰平  欧春艳  钟海涛
作者单位:1. 广东海洋大学,理学院,广东,湛江,524088
2. 湛江师范学院,化学科学与技术学院,广东,湛江,524048
基金项目:广东省科技计划资助项目 
摘    要:采用热风干燥方法进行配合胶乳和硫化胶乳胶膜的干燥实验,研究了两种天然胶乳胶膜的千燥动力学过程及干燥过程与橡胶分子链交联密度的关系。结果表明,配合胶乳膜干燥的活化能Ea1=314kJ·mol^-1,硫化天然胶膜的干燥活化能Ea2=63.6kJ·mol^-1,配合胶乳膜较硫化胶乳膜易于干燥;在相同条件下,配合胶乳膜的交联密度始终低于硫化胶巍膜。配合胶乳膜和硫化胶乳膜的干燥过程与硫化过程并不同步,过度的加热干燥会导致交联密度的降低。

关 键 词:天然胶乳  胶膜  干燥  交联密度

The Comparison Study of Drying Kinetics and Cross-linking Desity of Formulated and Prevulcanized Natural Latex Films during Drying
Yang Lei,Chen Jing,Zhong Jieping,Ou Chunyan,Zhong Haitao.The Comparison Study of Drying Kinetics and Cross-linking Desity of Formulated and Prevulcanized Natural Latex Films during Drying[J].Guangdong Chemical Industry,2009,36(10):2-4.
Authors:Yang Lei  Chen Jing  Zhong Jieping  Ou Chunyan  Zhong Haitao
Affiliation:Yang Lei1,Chen Jing2,Zhong Jieping1,Ou Chunyan1,Zhong Haitao1(1.College of Science,Guangdong Ocean University,Zhanjiang 524088,2.Chemistry Science and Technology School,Zhanjiang Normal University,Zhanjiang 524048,China)
Abstract:In order to investigate the differences of drying kinetics and the relationship between drying process and cross-linking density of formulated natural latex film and prevulcanized natural latex film during drying, mass loss and swelling methods were used in the experiments. The results showed that the drying activation energy of formulated natural latex film and prevulcanized natural latex film were 31.4 kJ·mol^-1, and 63.6 kJ·mol^-1, respectively, that was, formulated natural latex film was more easily to be dried than prevulcanized natural latex film. In the same drying conditions, the cross-link density of formulated natural latex film was lower than that of prevulcanized natural latex film. No matter formulated natural latex film or prevulcanized natural latex film; the drying process and vulcanization process were not synchronous. Excess drying may caused the reduction of the cross-link density.
Keywords:natural rubberlatex  film  drying  cross-link density  
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