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Steady flow and heat transfer analysis of Phan-Thein-Tanner fluid in double-layer optical fiber coating analysis with Slip Conditions

机译:稳流并与滑动状态双层光纤涂层分析流体藩 - 登-唐纳的传热分析

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Modern optical fibers require double-layer coating on the glass fiber to provide protection from signal attenuation and mechanical damage. The most important plastic resins used in wires and optical fibers are plastic polyvinyl chloride (PVC) and low-high density polyethylene (LDPE/HDPE), nylon and Polysulfone. In this paper, double-layer optical fiber coating is performed using melt polymer satisfying PTT fluid model in a pressure type die using wet-on-wet coating process. The assumption of fully developed flow of Phan-Thien-Tanner (PTT) fluid model, two-layer liquid flows of an immiscible fluid is modeled in an annular die, where the fiber is dragged at a higher speed. The equations characterizing the flow and heat transfer phenomena are solved exactly and the effects of emerging parameters (Deborah and slip parameters, characteristic velocity, radii ratio and Brinkman numbers on the axial velocity, flow rate, thickness of coated fiber optics, and temperature distribution) are reported in graphs. It is shown that an increase in the non-Newtonian parameters increase the velocity in the absence or presence of slip parameters which coincides with related work. The comparison is done with experimental work by taking λ?→?0 (non-Newtonian parameter).
机译:现代光纤在玻璃纤维上需要双层涂层,以提供信号衰减和机械损坏的保护。在线和光纤中使用的最重要的塑料树脂是塑料聚氯乙烯(PVC)和低密度聚乙烯(LDPE / HDPE),尼龙和聚砜。本文使用湿湿式涂布方法,使用满足压力型模具的熔融聚合物进行双层光纤涂层。假设Phan-Thien-Tanner(PTT)流体模型的完全发育流动,不混溶的流体的双层液体流动在环形模具中建模,其中纤维以更高的速度拖动。表征流动和传热现象的等式恰好以及新出现的参数(Deborah和Slip参数,特征速度,半径比和Brinkman编号对轴向速度,流速,涂层光纤厚度和温度分布的影响)在图表中报告。结果表明,非牛顿参数的增加增加了在不存在或存在的滑移参数中增加的速度,这与相关工作一致。通过采用λ→0(非牛顿参数)来使用实验工作进行比较。

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