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Relationships between refractive index change and light scattering during photopolymerization of acrylic composite formulations

机译:丙烯酸复合配方光聚合过程中折射率变化与光散射的关系

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摘要

Light scattering by filler particles is the main cause of the decrease in light intensity inside a photocurable composite material. This scattering phenomenon depends on the matrix and filler refractive index gap. This work aims to elaborate a non scattering photocured composite by minimizing this gap. Relationships between refractive index and conversion of unloaded acrylic formulations were first studied by real time infrared spectroscopy and refractometry. Refractive index of the final polymer was especially related to its monomers composition. These results allowed matching the matrix and silica refractive indexes, i.e., determining the suitable composite formulation which led to a non scattering material. (C) 2016 Elsevier Ltd. All rights reserved.
机译:填充颗粒的光散射是光固化复合材料内部光强度降低的主要原因。 该散射现象取决于基质和填充折射率间隙。 这项工作旨在通过最小化这种间隙来详细说明非散射的光电化复合材料。 首先通过实时红外光谱和折射测定,首先研究折射率与卸载丙烯酸配方转化的关系。 最终聚合物的折射率与其单体组合物特别有关。 这些结果允许与基质和二氧化硅折射率相匹配,即确定LED散射材料的合适复合配方。 (c)2016 Elsevier Ltd.保留所有权利。

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