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Commercial scale fabrication method for fabricating a gradient refractive-index rod: overcoming volume shrinkage and chemical restrictions

机译:用于制造梯度折射率棒的商业规模制造方法:克服体积收缩和化学限制

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摘要

We report a fabrication method for a gradient refractive-index polymeric object from a binary comonomer system, regardless of the monomers' reactivity ratio and the molar volume criteria of gradient refractive-index development. To fabricate a large gradient refractive-index rod consisting of a methyl methacrylate and 2,2,3,3-tetrafluoropropyl methacrylate comonomer pair that has not been used for fabrication of a copolymer gradient refractive-index rod by previous conventional methods because of chemical restrictions in molar volume and reactivity ratio difference, we use the so-called successive UV polymerization in a controlled radial volume in conjunction with an automatic refill reactor. Simultaneously and automatically, the volume shrinkage problem, an inevitable shortcoming for the fabrication of a large polymeric object in a commercial production scale, is overcome and exploited. The theoretical features of the refractive-index profile generation of this method are also compared with those of conventional methods for which the chemical restrictions of monomers are crucial for the shape of a refractive-index profile.
机译:我们报告了一种从二元共聚单体体系制备梯度折射率聚合物的方法,无论单体的反应率和梯度折射率发展的摩尔体积标准如何。制备由甲基丙烯酸甲酯和2,2,3,3-四氟丙基甲基丙烯酸共聚单体对组成的大梯度折射率棒,由于化学限制,该方法尚未用于以前的常规方法来制造共聚物梯度折射率棒在摩尔体积和反应性比差方面,我们将所谓的连续UV聚合与可控制的径向体积结合使用,自动装填反应器。同时并自动地克服并利用了体积收缩问题,这是在工业生产规模下制造大型聚合物物体所不可避免的缺点。还将该方法产生的折射率分布的理论特征与常规方法的理论特征进行了比较,在常规方法中,单体的化学限制对于折射率分布的形状至关重要。

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