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Design and Synthesis of Free-Radical/Cationic Photosensitive Resin Applied for 3D Printer with Liquid Crystal Display (LCD) Irradiation

机译:应用于液晶显示器(LCD)3D打印机的自由基/阳离子光敏树脂的设计与合成

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摘要

In this work, aiming at a UV-curing 3D printing process with liquid crystal display (LCD) irradiation, a novel free-radical/cationic hybrid photosensitive resin was designed and prepared. After testing, the results showed that the acrylate monomers could be polymerized through a free-radical mechanism, while the epoxides were polymerized by a cationic curing mechanism. During the process of UV-curing, the acrylate and epoxide polymers were crosslinked and further locked together by non-covalent bonds. Therefore, an interpenetrating polymer network (IPN) structure could be formed through light-curing 3D-printing processes. Fourier transform infrared spectroscopy (FT-IR) revealed that the 3,4-epoxy cyclohexyl methyl-3,4-epoxy cyclohexyl formate and acrylic resin were both successfully involved in the UV-curing process. Furthermore, in order to make the 3D-printed objects cured completely, post-processing was of great importance. The results from the systematic study of the dynamic mechanical properties of the printed objects showed that the heating treatment process after UV irradiation was very necessary and favorable for the complete cationic polymerization of UV-6110 induced by Irgacure 261. The optimum heating treatment conditions were achieved at a temperature of 70 °C for 3 h.
机译:在这项工作中,针对液晶显示(LCD)辐射的UV固化3D打印工艺,设计并制备了一种新型的自由基/阳离子杂化光敏树脂。经过测试,结果表明丙烯酸酯单体可以通过自由基机理进行聚合,而环氧化物可以通过阳离子固化机理进行聚合。在紫外线固化过程中,丙烯酸酯和环氧化物聚合物发生交联,并通过非共价键进一步锁定在一起。因此,可以通过光固化3D打印工艺形成互穿聚合物网络(IPN)结构。傅里叶变换红外光谱(FT-IR)显示3,4-环氧环己基甲基-3,4-环氧环己基甲酸甲酯和丙烯酸树脂均成功地参与了UV固化过程。此外,为了使3D打印对象完全固化,后处理非常重要。对印刷对象的动态力学性能进行系统研究的结果表明,UV辐照后的热处理工艺对于Irgacure 261诱导的UV-6110的完全阳离子聚合非常必要,并达到了最佳的热处理条件。在70°C的温度下放置3小时。

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