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首页> 外文期刊>Results in Physics >Double-layer optical fiber coating analysis in MHD flow of an elastico-viscous fluid using wet-on-wet coating process
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Double-layer optical fiber coating analysis in MHD flow of an elastico-viscous fluid using wet-on-wet coating process

机译:使用湿对湿涂覆工艺对弹性流体的MHD流动进行双层光纤涂覆分析

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摘要

Modern optical fibers require a double-layer coating on the glass fiber in order 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 and high density polyethylene (LDPE/HDPE), nylon and Polysulfone. One of the most important things which affect the final product after processing is the design of the coating die. In the present study, double-layer optical fiber coating is performed using melt polymer satisfying Oldroyd 8-constant fluid model in a pressure type die with the effect of magneto-hydrodynamic (MHD). Wet-on-wet coating process is applied for double-layer optical fiber coating. The coating process in the coating die is modeled as a simple two-layer Couette flow of two immiscible fluids in an annulus with an assigned pressure gradient. Based on the assumptions of fully developed laminar and MHD flow, the Oldroyd 8-constant model of non-Newtonian fluid of two immiscible resin layers is modeled. The governing nonlinear equations are solved analytically by the new technique of Optimal Homotopy Asymptotic Method (OHAM). The convergence of the series solution is established. The results are also verified by the Adomian Decomposition Method (ADM). The effect of important parameters such as magnetic parameter M i , the dilatant constant α , the Pseodoplastic constant β , the radii ratio δ , the pressure gradient Ω , the speed of fiber optics V , and the viscosity ratio κ on the velocity profiles, thickness of coated fiber optics, volume flow rate, and shear stress on the fiber optics are investigated. At the end the result of the present work is also compared with the experimental results already available in the literature by taking non-Newtonian parameters tends to zero.
机译:现代光纤需要在玻璃纤维上涂一层双层涂层,以提供保护,防止信号衰减和机械损坏。用于电线和光纤的最重要的塑料树脂是塑料聚氯乙烯(PVC)和低密度和高密度聚乙烯(LDPE / HDPE),尼龙和聚砜。影响加工后最终产品的最重要的事情之一就是涂层模具的设计。在本研究中,在具有磁流体动力学(MHD)的作用下,在压力型模具中使用满足Oldroyd 8常数流体模型的熔融聚合物进行双层光纤涂覆。湿对湿涂层工艺用于双层光纤涂层。涂层模具中的涂层过程被建模为两种不混溶流体在具有指定压力梯度的环空中的简单两层库埃特流。基于充分发展的层流和MHD流动的假设,对两个不混溶树脂层的非牛顿流体的Oldroyd 8常数模型进行了建模。用最优同伦渐近法(OHAM)的新技术解析控制非线性方程组。建立了级数解的收敛性。结果也通过Adomian分解法(ADM)进行了验证。诸如磁参数M i,膨胀常数α,拟塑性常数β,半径比δ,压力梯度Ω,光纤速度V和粘度比κ等重要参数对速度分布,厚度的影响研究了涂层光纤的特性,体积流量和光纤上的剪切应力。最后,通过采用非牛顿参数趋于零,将本研究的结果与文献中已有的实验结果进行了比较。

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