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Mechanical Characterization of UV Photopolymerized PMMA with Different Photo-Initiator Concentration

机译:不同光引发剂浓度的UV光聚合PMMA的机械表征

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Polymethyl methacrylate (PMMA) is one among few known photo-polymeric resin useful in lithography for fabricating structures having better mechanical properties to meet the requirement in electronics and biomedical applications. This study explores the effect of Photo Initiator (PI) concentration and also curing time on strength and hardness of Polymethyl methacrylate (PMMA) obtained by UV photopolymerization of Methyl methacrylate (MMA) monomer. The UV LED light source operating at the wavelength of 364 nm is used with Benzoin Ethyl Ether (BEE) as photo initiator. The curing of PMMA resin is supported with peltier cooling device placed at the bottom of the UV light source. The characterisation study of UV photo cured PMMA is analysed through nano indenter (Agilent Technologies-G200). The current work investigates the influence of PI concentration and curing time in achieving maximum mechanical properties for UV photopolymerized PMMA.
机译:聚甲基丙烯酸甲酯(PMMA)是众所周知的光聚合物树脂中,用于制造具有更好机械性能的结构,以满足电子产品和生物医学应用的要求。 该研究探讨了通过UV光聚合的甲基丙烯酸甲酯(MMA)单体的UV光聚合而对光引发剂(PI)浓度和固化时间的影响。 在364nm的波长下操作的UV LED光源与苯并素乙醚(BEE)一起使用作为光引发剂。 PMMA树脂的固化被置于UV光源底部的珀耳帖冷却装置。 通过纳米压头(Agilent Technologies-G200)分析UV照片固化PMMA的表征研究。 目前的工作研究了PI浓度和固化时间在实现UV光聚合PMMA的最大机械性能方面的影响。

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