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Feasibility of High Speed Furnace Drawing of Optical Fibers

机译:光纤高速炉拉丝的可行性

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摘要

The domain of operating conditions, in which the optical fiber-drawing process is successful, is an important consideration. Such a domain is mainly determined by the stresses acting on the fiber and by the stability of the process. This paper considers an electrical resistance furnace for fiber drawing and examines conditions for process feasibility. In actual practice, it is known that only certain ranges of furnace temperature and draw speed lead to successful fiber drawing. The results obtained here show that the length of the heated zone and the furnace temperature distribution are other important parameters that can be varied to obtain a feasible process. Physical behavior close to the boundary of the feasible domain is also studied. It is found that the iterative scheme for neck-down profile determination diverges rapidly when the draw temperature is lower than that at the acceptable domain boundary due to the lack of material flow. However, the divergence rate becomes much smaller as the temperature is brought close to the domain boundary. Additional information on the profile determination as one approaches the acceptable region is obtained. It is found that it is computationally expensive and time-consuming to locate the exact boundary of the feasible drawing domain. From the results obtained, along with practical considerations of material rupture, defect concentration, and flow instability, an optimum design of a fiber-drawing system can be obtained for the best fiber quality.
机译:重要的考虑因素是在其中成功拉制光纤的操作条件范围。这样的区域主要由作用在纤维上的应力和过程的稳定性决定。本文考虑了用于纤维拉伸的电阻炉,并检查了工艺可行性的条件。在实际实践中,已知只有炉温和拉伸速度的特定范围才能成功进行纤维拉伸。此处获得的结果表明,加热区的长度和炉温分布是其他重要参数,可以更改这些参数以获得可行的过程。还研究了接近可行域边界的物理行为。发现当拉伸温度低于可接受的区域边界时,由于缺乏材料流动,用于颈缩轮廓确定的迭代方案迅速不同。但是,随着温度接近畴边界,发散率变得小得多。获得关于轮廓确定的附加信息,因为其接近可接受区域。已经发现,定位可行绘图域的确切边界在计算上是昂贵且费时的。从获得的结果以及对材料破裂,缺陷集中和流动不稳定性的实际考虑,可以获得最佳纤维质量的拉丝系统的最佳设计。

著录项

  • 来源
    《Journal of Heat Transfer》 |2004年第5期|p.852-857|共6页
  • 作者

    Xu Cheng; Yogesh Jaluria;

  • 作者单位

    Department of Mechanical and Aerospace Engineering Rutgers, The State University of New Jersey, Piscataway, NJ 08854;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 热力工程、热机;
  • 关键词

  • 入库时间 2022-08-18 00:28:07

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