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1)  radiation curing
辐射固化
1.
The industrial structure and industrial value chain of radiation curing were introduced.
介绍辐射固化的产业基本结构和产业价值链。
2.
With a view to the advantages including high efficiency, energy saving, pollution free, and excellent physical properties, and the fast growing worldwide, of radiation curing technology as a kind of green technologies, the development of radiation curing technology in recent years was reviewed.
辐射固化技术以其高效、节能、无污染、物理性能优良等优点而被誉为绿色技术 ,近年来在世界上取得了高速发展。
3.
The classificafion and curing mechanism of radiation curing coatings are introduced.
介绍了辐射固化涂料的分类和固化机理,以及辐敏齐聚物的制备、分类、特性及其用途,综述了辐射固化技术和齐聚物的发展情况。
2)  radiation immobilization
辐射固定化
3)  γ-ray radiation curing
γ-射线辐射固化
1.
Multi-walled carbon nanotubes(MWNTs)-epoxy nanocomposites were prepared for the first time by γ-ray radiation curing.
通过γ-射线辐射固化制备了多壁碳纳米管-环氧树脂复合材料。
4)  radiation curing materials
辐射固化材料
1.
The status of applications and market of radiation curing materials in recent years has intruduced.
介绍了近年来辐射固化材料应用和市场现状。
5)  UV radiation curing
紫外光辐射固化
1.
The gel nanocomposite polymer electrolyte (NCPE) was prepared by UV radiation curing based on poly(ethylene glycol) diacrylate (PEGDA) monomer containing nanosize SiO_2 in the presence of liquid electrolyte.
以含有纳米SiO2 的聚乙二醇二丙烯酸酯(PEGDA)为单体, 加入液态电解质, 通过紫外光辐射固化制备了凝胶态纳米复合聚合物电解质(NCPE)。
2.
An inorganic-organic hybrid polymer electrolyte based on organically modified polysiloxane was prepared by UV radiation curing in the presence of liquid electrolyte.
以有机改性聚硅氧烷为单体加入液态电解质通过紫外光辐射固化制备了无机有机杂化聚合物电解质。
6)  UV-product
辐射固化产业
补充资料:辐射固化
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性质:以低能电子束(EB0.2~0.3MeV或紫外线(UV)为辐射源诱导特殊配制的100%反应性液体快速转变成固体的过程。它的优点是降低能耗、提高生产率、提高涂膜质量,而且由于不存在有机溶剂而减少了大气污染。辐射固化涂料体系的基本组成是端部带有不饱和基团的齐聚物、活性稀释剂、少量阻聚剂和一些助剂(如表面活性剂、消光剂、颜料等)。这些试剂在辐射作用下产生自由基(或离子),然后引发聚合、交联和接枝反应而使液体迅速固化成膜。UV固化与EB固化主要差异在于能源形式不同和产生自由基的来源不同。UV体系必须含光引发剂,而EB体系必须在氮气保护下完成固化。辐射固化技术以UV固化为主(90%以上),EB固化也在逐步发展。

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