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Theoretical analysis on a multilayer coextrusion process for preparing gradient-index polymer optical fibers

机译:梯度共混聚合物光纤多层共挤工艺的理论分析

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A theoretical analysis was conducted on a multilayer internal diffusion and surface evaporation (IDSE) coextrusion process for preparing gradient-index (GI) polymer optical fibers (POFs). The predicted refractive index distribution (RID) was in good agreement with the experimental data reported in the literature. The effects of the essential parameters, including the mass transfer coefficient of monomer across solid-gas interface, k, the diffusivities of monomers, and the radius ratio of each layer on RID were investigated. We show that if k is either very small or very large, then RID deviates significantly from a parabolic curve. The effect of the diffusivity of BzMA monomer on RID is more significant than that of MMA monomer. The results of numerical simulation reveal that both the radius ratio and the composition of each layer have significant effect on RID, and the greater the number of layers, the closer the RID is to a parabolic curve.
机译:对多层内部扩散和表面蒸发(IDSE)共挤出工艺进行了理论分析,以制备梯度指数(GI)聚合物光纤(POF)。预测的折射率分布(RID)与文献中报道的实验数据非常吻合。研究了基本参数的影响,包括单体在固-气界面上的传质系数,k,单体的扩散率以及RID上每一层的半径比。我们表明,如果k很小或很大,则RID明显偏离抛物线。 BzMA单体的扩散性对RID的影响比MMA单体的影响更大。数值模拟结果表明,半径比和每一层的组成都对RID有显着影响,并且层数越多,RID越接近抛物线。

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