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首页> 外文期刊>Journal of Applied Polymer Science >UV Curing of Surface Coating System Consisting of Cycloaliphatic Diepoxide-ENR-Glycidyl Methacrylate by Cationic Photoinitiators—Characterization of the Cured Film by FTIR Spectroscopy
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UV Curing of Surface Coating System Consisting of Cycloaliphatic Diepoxide-ENR-Glycidyl Methacrylate by Cationic Photoinitiators—Characterization of the Cured Film by FTIR Spectroscopy

机译:阳离子光引发剂对脂环族二环氧化物-ENR-甲基丙烯酸缩水甘油酯组成的表面涂料体系的紫外线固化-通过红外光谱表征固化膜

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摘要

This paper reports the results of spectroscopic investigations carried out on film cast from a system consisting of cycloaliphatic diepoxide, epoxidized natural rubber(ENR-50), and glycidyl methacrylate (GMA) and cured by the UV radiation. GMA acts as a reactive diluent for the ENR. Triphenyl sulphonium hexafluoro antimonate was used as the cationic photoinitiator. Results reported in a previous paper showed that ENR acts as a toughening agent. Optical microscopic studies were suggestive of the existence of two-phase morphology consisting of an elastomeric domain and the resin matrix domain. For effective toughening, it is essential that good adhesion exists between these two domains. It was of interest, therefore, to know whether favorable interactions occurred between the different components of the coating systems employed in our studies to promote effective adhesion between the elastomeric domain and the resin matrix. Systematic spectral studies were,therefore,conducted with a view to understanding how different components of the hybrid coating system interact. The results showed that the acrylic double bonds, as well as the epoxy groups of GMA, the isoprene double bonds and epoxy groups of ENR, and the epoxy groups of cycloaliphatic epoxide resin all participate in a scheme of photoinitiated polymerization and crosslinking reactions ultimately producing an interpenetrating polymer network, a result conducive to effective toughening of the epoxy resins,which are intrinsically brittle.
机译:本文报道了在由脂环族二环氧化物,环氧化天然橡胶(ENR-50)和甲基丙烯酸缩水甘油酯(GMA)组成并通过UV辐射固化的系统上流延的薄膜进行光谱研究的结果。 GMA用作ENR的反应性稀释剂。六氟锑酸三苯sulph用作阳离子光引发剂。先前论文报道的结果表明,ENR可以作为增韧剂。光学显微镜研究表明存在由弹性体区域和树脂基质区域组成的两相形态。为了有效地增韧,在这两个区域之间必须存在良好的粘合性。因此,有兴趣知道在我们的研究中使用的涂料体系的不同组分之间是否发生了有利的相互作用,以促进弹性体区域与树脂基体之间的有效粘合。因此,进行了系统的光谱研究,以了解混合涂层系统的不同组成部分如何相互作用。结果表明,丙烯酸双键,GMA的环氧基,ENR的异戊二烯双键和环氧基以及脂环族环氧树脂的环氧基均参与光引发的聚合和交联反应,最终产生了互穿聚合物网络,有助于有效地增韧固有脆性的环氧树脂。

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