...
首页> 外文期刊>Bulletin of the Polish Academy of Sciences. Technical Sciences >Capillary optical fiber - design, fabrication, characterization and application
【24h】

Capillary optical fiber - design, fabrication, characterization and application

机译:毛细管光纤-设计,制造,表征和应用

获取原文
获取原文并翻译 | 示例

摘要

The paper presents a modification of capillary optical fibers fabrication method from an assembled glass preform. A change of dimensional proportions in the capillary optical fiber drawn from a single preform is allowed on-line via the control of overpressure and thermal conditions in the outflow meniscus which essentially lowers the manufacturing costs. These conditions are among the solutions (velocity fields) of the Navier-Stokes equations adapted to the capillary optical fiber pulling geometry and temperature distribution in the oven. The velocity fields give solutions to other quantities of interest such as flow rate, pulling force and fiber geometry. The calculation and experimental results for capillary optical fibers were shown in the following dimensional range: internal diameters 2-200 μm, external diameters 30-350 μm, within the assumed dimensional stability (including ellipticity) better than 1%. The parameters of fabricated capillary optical fibers of high-quality low-loss optical multicomponent glasses were: losses; 100 dB/km, mechanical strength above 1GPa with Weibull coefficient in the range 3-7, internal numerical aperture 0.1-0.3, external numerical aperture 0.1-0.3, core index 1.5-1.8, transparency 0.4-2 μm, thermally and/or chemically conditioned internal surface, double polyimide protection layer, soft or hard jacketed, connectorized. The capillary optical fibers were applied in our own and several external laboratories in spectroscopy, refractometry, micro-fluidics and functional microoptic components. The paper summarizes a design, technological and application work on capillary optical fibers performed during a recent national research program devoted to optoelectronic components and modules.
机译:该论文提出了一种由组装的玻璃预制棒制造毛细管光纤的方法的改进。通过控制流出弯月面中的超压和热条件,可以在线控制从单个预成型坯拉出的毛细管光纤中尺寸比例的变化,从而大大降低了制造成本。这些条件属于Navier-Stokes方程的解(速度场),该方程适合于毛细管光纤的几何形状和烤箱中的温度分布。速度场提供了对其他感兴趣的量(例如流速,拉力和纤维几何形状)的解决方案。毛细光纤的计算和实验结果显示在以下尺寸范围内:内径2-200μm,外径30-350μm,在假定的尺寸稳定性(包括椭圆度)内优于1%。高质量,低损耗的光学多组分玻璃制成的毛细管光纤的参数为:损耗; 100 dB / km,高于1GPa的机械强度,威布尔系数在3-7范围内,内部数值孔径0.1-0.3,外部数值孔径0.1-0.3,纤芯折射率1.5-1.8,透明度0.4-2μm,热和/或化学方法调节过的内表面,双层聚酰亚胺保护层,软或硬护套,已连接。毛细管光纤已在我们自己的实验室和数个外部实验室中应用于光谱学,折射仪,微流体学和功能性微光学组件。本文总结了在最近的一项致力于光电组件和模块的国家研究计划期间对毛细管光纤进行的设计,技术和应用工作。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号