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ELECTRON BEAM CURING OF ELASTOMERS

机译:弹性体的电子束固化

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Modification of thermoplastic and rubbery materials by electron beam (EB) radiation is a potential method for development of new polymers and composites. Irradiation of polymeric materials results in grafting and subsequently formation of a three dimensional network through the union of generated macro radicals. In the Green drive, i.e. to make the world pollution free, this technology takes an important position. Curing of a number of both non-polar and polar elastomers using an electron beam was carried out in our laboratory. The effects of irradiation dose in presence and absence of radiation sensitizer on the crosslinking and structure of ethylene propylene rubber, ethylene octene copolymer, nitrile, acrylic and fluorocarbon rubbers were investigated. An analysis of crosslink to scission ratio on the basis of Charlesby-Pinner Equation was done. Mechanical and dynamic mechanical properties showed that these improved with radiation dose and sensitizer level up to certain values, beyond which the properties deteriorated due to chain scission reactions. The properties of the vulcanizates were correlated with the structure. EB cured samples were compared with the samples having conventional crosslinks. Some applications of the electron beam curing are highlighted.
机译:通过电子束(EB)辐射改性热塑性和橡胶状材料是开发新型聚合物和复合材料的潜在方法。聚合材料的辐照导致接枝并随后通过生成的大自由基的结合形成三维网络。在绿色环保运动中,即使世界无污染,这项技术占据重要地位。在我们的实验室中使用电子束固化了许多非极性和极性弹性体。研究了存在和不存在辐射敏化剂时的辐射剂量对乙丙橡胶,乙烯辛烯共聚物,丁腈,丙烯酸和碳氟橡胶的交联和结构的影响。在Charlesby-Pinner方程的基础上分析了交联与断裂的比率。机械和动态机械性能表明,随着辐射剂量和敏化剂含量提高到一定值,这些性能得到改善,超过此值,由于断链反应而使性能下降。硫化胶的性质与结构相关。将EB固化的样品与具有常规交联的样品进行比较。着重介绍了电子束固化的一些应用。

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