• DocumentCode
    190027
  • Title

    Simple and adjustable fabrication process for graded-index polymer optical fibers with tailored properties for sensing

  • Author

    Bunge, Christian-Alexander ; Beckers, Markus ; Gries, Thomas

  • Author_Institution
    Hochschule fr Telekommunikation Leipzig (HfTL), Leipzig, Germany
  • fYear
    2014
  • fDate
    2-5 Nov. 2014
  • Firstpage
    1527
  • Lastpage
    1530
  • Abstract
    A simple and versatile fabrication process for graded-index polymer optical fibers (GI-POF) is presented that is continuous and allows for cheap sensor fibers with adjusted properties for particular sensor applications. The fabrication process is based on conventional melt-spinning with subsequent rapid cooling of the filament in order to introduce a temperature gradient within the fiber. This will result in a density and finally in a refractive-index profile. By adjusting the temperature of the water quench for cooling the refractive-index profile can be controlled in from almost step index to graded index. By a combination of process parameters like temperature, spinning speed and elongation the scattering can be influenced in order to obtain fibers for illumination or collecting light for irradiance sensors. Since the fabrication method is adjusted from textile manufacturing it can be included into textiles for wearable sensors or flexible sensing surfaces.
  • Keywords
    cooling; fibre optic sensors; gradient index optics; melt spinning; optical fibre fabrication; polymer fibres; refractive index; elongation; flexible sensing surfaces; graded-index polymer optical fibers; melt-spinning; rapid cooling; refractive-index profile; spinning speed; temperature gradient; textile optical fiber base manufacturing; wearable sensors; Attenuation; Cooling; Optical fiber sensors; Optical fibers; Polymers; Scattering; Spinning;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    SENSORS, 2014 IEEE
  • Conference_Location
    Valencia
  • Type

    conf

  • DOI
    10.1109/ICSENS.2014.6985306
  • Filename
    6985306