• DocumentCode
    1509547
  • Title

    Studies on the strength of optical fiber fabricated by a hybridized process

  • Author

    Yoshida, Kazuaki ; Satoh, Tsuguo ; Enomoto, Noritsugu ; Yagi, Takesihi ; Hihara, Hiroshi ; Oku, Masato

  • Author_Institution
    R&D Lab., Furukawa Electr. Co. Ltd., Yokohama, Japan
  • Volume
    14
  • Issue
    11
  • fYear
    1996
  • fDate
    11/1/1996 12:00:00 AM
  • Firstpage
    2513
  • Lastpage
    2518
  • Abstract
    Strength of single-mode optical fibers that were produced by a hybridized process consisting of overcladding a VAD-derived core rod with silica glass made from commercial silica powder was studied. There were such defects as a Zr-containing inclusion (Zr-inclusion), a bubble and two kinds of Cr-containing inclusions (Cr-inclusions) found in the fiber. These defects caused failure of the fiber at a proof test. In order to make a strong fiber, removal of the defects were studied and the following results were obtained as follows. 1) The Zr-inclusion could be removed by decanting an aqueous suspension of silica powder having an average diameter of 10 μm (Silica A). 2) The bubble could be removed by using the decanted Silica A only or by purifying at 1000°C. 3). The Cr-inclusions could be removed by purifying at 1000°C in helium gas containing more than 30 vol.% chlorine. The strongest fiber fabricated had a break probability as low as 0.01/km in a proof test of 0.7% elongation for 1 s
  • Keywords
    bubbles; heat treatment; impurities; inclusions; mechanical strength; noncrystalline defects; optical fibre fabrication; optical fibres; 10 micron; 1000 C; Cl2; Cl2 gas; Cr; Cr inclusions; He gas; He2; He2-Cl2; VAD-derived core rod; Zr; Zr inclusions; aqueous suspension; break probability; bubble; commercial silica powder; defects removal; fibre failure; hybridized process; optical fiber fabrication; optical fiber strength; overcladding; silica glass; single-mode fibers; Glass; Helium; Optical device fabrication; Optical fiber testing; Optical fibers; Powders; Preforms; Research and development; Silicon compounds; Yagi-Uda antennas;
  • fLanguage
    English
  • Journal_Title
    Lightwave Technology, Journal of
  • Publisher
    ieee
  • ISSN
    0733-8724
  • Type

    jour

  • DOI
    10.1109/50.548149
  • Filename
    548149