Simulation Study of Deposition Parameters for Elliptical-Shaped Preforms by VAD for Polarization-Maintaining Fibers

E. Fujiwara, E. Ono, C. Suzuki
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引用次数: 1

Abstract

A novel fabrication method of elliptical-shaped preforms for polarization-maintaining fibers, developed using the VAD technology and based on the variation of the perform rotation velocity from zero to a maximum velocity in repeated cycles of 180°, allows modifying and controlling the preform geometry by choosing the process parameters, such as the maximum rotation velocity and the delay time on zero velocity positions. The effect of each process variable was studied through a mathematical modeling and simulation of the methodology, comprising a simplified model of the soot deposition process. Results demonstrated that preforms with high elllipticity can be obtained by increasing the delay time or decreasing the maximum rotation velocity. It was also observed that the effect of the delay time is more noticeable on the preform geometry than the contribution of maximum velocity. These facts were confirmed when compared to real deposition results, using a VAD chamber with gases fluxes set to 2.33×10-6 m3/s (SiCl4) and 0.8×10-6 m3/s (GeCl4), and setting the burner-target angle to a high deposition rate condition. It is expected that the improvement of the mathematical model can be very useful in order to determine the process conditions necessary to achieve any desired preform geometry, even before the deposition stage.
保偏光纤椭圆预制件VAD沉积参数模拟研究
利用VAD技术开发了一种新型的用于保偏光纤的椭圆预制件的制造方法,该方法基于在180°的重复循环中从零到最大速度的变化,允许通过选择工艺参数来修改和控制预制件的几何形状,例如最大旋转速度和零速度位置的延迟时间。通过对该方法的数学建模和仿真,研究了各过程变量的影响,并建立了烟尘沉积过程的简化模型。结果表明,增大延迟时间或减小最大旋转速度均可获得高椭圆性的预制体。我们还观察到,延迟时间对预制体几何形状的影响比最大速度的贡献更明显。在VAD燃烧室中,将气体通量设置为2.33×10-6 m3/s (SiCl4)和0.8×10-6 m3/s (GeCl4),并将燃烧器靶角设置为高沉积速率条件,与实际沉积结果进行了比较,证实了这些事实。预计数学模型的改进可以非常有用,以便确定必要的工艺条件,以达到任何期望的预制体几何形状,甚至在沉积阶段之前。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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