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Simulation of the flow in a coating applicator for optical fiber manufacture

机译:模拟光纤制造中的涂覆器中的流动

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摘要

A detailed numerical study is carried out on the flow field generated in an open-cup coating applicator during the coating process in the manufacture of optical fibers. This is a critical problem in the manufacture of optical fibers and poses several challenges to numerical modeling. A finite volume numerical model, using multiple domains to represent the fluid chamber and the die, is employed to obtain results on the flow. A coordinate transformation is used to model the complex geometry of the flow region. Fairly generic configurations are considered and a wide range of fiber drawing speeds, ranging up to 15 m/s, is investigated. Different boundary conditions, such as free and solid surface, at the entrance of the moving fiber are considered. Several coating materials are simulated, along with wide ranges of operating conditions and geometric designs. Though different temperatures are considered for the coating material, to obtain different fluid viscosities, the flow is considered to be isothermal. The focus is on the flow pattern and on the velocity fields in the fluid chamber and the die. Also, of interest are the resulting mass flow rate, which yields the final coating thickness, and the effects of the inlet conditions. The characteristics of the recirculating flow that arises in many cases are investigated in detail. The results are presented in terms of streamlines, velocity distributions and flow rates. The effects of geometry, coating material and die shape are investigated in detail. This is the first part of an on-going detailed study on the simulation of coating applicators for the manufacture of optical fibers in order to improve uniformity, consistency, and quality of the coating.
机译:详细的数值研究是在光纤制造过程中,在敞口式涂布机中在涂布过程中产生的流场进行的。这是光纤制造中的关键问题,并且对数值建模提出了若干挑战。使用有限域数值模型,使用多个域来表示流体腔和模具,以获取流动结果。坐标变换用于对流动区域的复杂几何形状进行建模。考虑了相当通用的配置,并研究了范围高达15 m / s的各种光纤拉制速度。考虑了移动光纤入口处的不同边界条件,例如自由表面和固体表面。模拟了几种涂层材料,以及各种工作条件和几何设计。尽管对于涂料考虑了不同的温度,但是为了获得不同的流体粘度,该流动被认为是等温的。重点是流体室和模具中的流型和速度场。同样,令人感兴趣的是所产生的质量流速,其产生最终的涂层厚度,以及入口条件的影响。详细研究了在许多情况下出现的循环流的特性。结果以流线,速度分布和流速表示。详细研究了几何形状,涂层材料和模具形状的影响。这是正在进行的详细研究的第一部分,该研究正在进行中,以模拟用于制造光纤的涂层施加器,以提高涂层的均匀性,一致性和质量。

著录项

  • 来源
    《Computational Mechanics 》 |2003年第5期| 428-436| 共9页
  • 作者

    K. Rattan; Y. Jaluria;

  • 作者单位

    Department of Mechanical and Aerospace Engineering Rutgers the State University of New Jersey;

    Department of Mechanical and Aerospace Engineering Rutgers the State University of New Jersey;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Coating; Optical fiber; Coating die;

    机译:涂层;光纤;涂层模具;

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