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Optical coherence tomography based particle image velocimetry (OCT-PIV) of polymer flows

  • Andreas Buchsbaum
  • , Marc Egger
  • , Ivana Burzic
  • , Thomas Koepplmayr
  • , Michael Aigner
  • , Jürgen Miethlinger
  • , Michael Leitner

Research output: Contribution to journalArticlepeer-review

Abstract

The measurement of spatially resolved velocity distributions is crucial for modelling flow and for understanding properties of materials produced in extrusion processes. Traditional methods for flow visualization such as particle image velocimetry(PIV)rely on optically transparent media and cannot be applied to turbid polymer melts.Here we present optical coherence tomography as an imaging technique for PIV data processing that allows for measuring a sequence of time resolved images even in turbid media. Time-resolved OCT images of a glass-fibre polymer compound were acquired during an extrusion process in a slit die. The images are post-processed by ensemble cross-correlation to calculate spatially resolved velocity vector fields. The results compared well with velocity data obtainedby Doppler-OCT. Overall, this new technique(OCT-PIV)represents an important extension of PIV to turbid materials by the use of OCT.
Original languageEnglish
Pages (from-to)40-48
Number of pages9
JournalOptics and Lasers in Engineering
Volume69
DOIs
Publication statusPublished - Jun 2015

Fields of science

  • 202024 Laser technology
  • 205 Materials Engineering
  • 205011 Polymer engineering
  • 205012 Polymer processing
  • 103021 Optics
  • 104019 Polymer sciences

JKU Focus areas

  • Nano-, Bio- and Polymer-Systems: From Structure to Function
  • Engineering and Natural Sciences (in general)

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