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Modified Powder-in-Tube Technique Based on the Consolidation Processing of Powder Materials for Fabricating Specialty Optical Fibers

机译:基于粉末材料固结处理的改进的管内粉末制造专用光纤的技术

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摘要

The objective of this paper is to demonstrate the interest of a consolidation process associated with the powder-in-tube technique in order to fabricate a long length of specialty optical fibers. This so-called Modified Powder-in-Tube (MPIT) process is very flexible and paves the way to multimaterial optical fiber fabrications with different core and cladding glassy materials. Another feature of this technique lies in the sintering of the preform under reducing or oxidizing atmosphere. The fabrication of such optical fibers implies different constraints that we have to deal with, namely chemical species diffusion or mechanical stress due to the mismatches between thermal expansion coefficients and working temperatures of the fiber materials. This paper focuses on preliminary results obtained with a lanthano-aluminosilicate glass used as the core material for the fabrication of all-glass fibers or specialty Photonic Crystal Fibers (PCFs). To complete the panel of original microstructures now available by the MPIT technique, we also present several optical fibers in which metallic particles or microwires are included into a silica-based matrix.
机译:本文的目的是证明与粉管技术相关的固结工艺的兴趣,以便制造较长长度的特种光纤。这种所谓的改进的管内粉末(MPIT)工艺非常灵活,为使用不同纤芯和包层玻璃材料的多材料光纤制造铺平了道路。该技术的另一个特征在于在还原或氧化气氛下对预成型件进行烧结。由于光纤材料的热膨胀系数和工作温度之间的不匹配,这种光纤的制造意味着我们必须处理的不同限制,即化学物质扩散或机械应力。本文重点关注使用镧系铝硅酸盐玻璃作为制造全玻璃纤维或特种光子晶体光纤(PCF)的芯材的初步结果。为了完成现在可以通过MPIT技术获得的原始微结构的面板,我们还介绍了几根光纤,其中金属颗粒或微丝被包含在基于二氧化硅的基质中。

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