Improved characterization of changes in fibre cross section during sheet forming and drying using optical fibre analyzer data and a serial sectioning technique

Warren Batchelor, Johannes Kritzinger, Wolfgang Bauer, Timo Kuntzsch, Gert Meinl

Research output: Chapter in Book/Report/Conference proceedingConference contributionResearchpeer-review

Original languageGerman
Title of host publicationProgress in Paper Physics Seminar Proceedings 2010
Publisher.
Publication statusAccepted/In press - 2010
EventProgress in Paper Physics Seminar - Montreal, Canada
Duration: 7 Jun 201010 Jun 2010

Conference

ConferenceProgress in Paper Physics Seminar
CountryCanada
CityMontreal
Period7/06/1010/06/10

Treatment code (Nähere Zuordnung)

  • Basic - Fundamental (Grundlagenforschung)

Cite this

Batchelor, W., Kritzinger, J., Bauer, W., Kuntzsch, T., & Meinl, G. (Accepted/In press). Improved characterization of changes in fibre cross section during sheet forming and drying using optical fibre analyzer data and a serial sectioning technique. In Progress in Paper Physics Seminar Proceedings 2010 ..

Improved characterization of changes in fibre cross section during sheet forming and drying using optical fibre analyzer data and a serial sectioning technique. / Batchelor, Warren; Kritzinger, Johannes; Bauer, Wolfgang; Kuntzsch, Timo; Meinl, Gert.

Progress in Paper Physics Seminar Proceedings 2010. ., 2010.

Research output: Chapter in Book/Report/Conference proceedingConference contributionResearchpeer-review

Batchelor, W, Kritzinger, J, Bauer, W, Kuntzsch, T & Meinl, G 2010, Improved characterization of changes in fibre cross section during sheet forming and drying using optical fibre analyzer data and a serial sectioning technique. in Progress in Paper Physics Seminar Proceedings 2010. ., Progress in Paper Physics Seminar, Montreal, Canada, 7/06/10.
Batchelor, Warren ; Kritzinger, Johannes ; Bauer, Wolfgang ; Kuntzsch, Timo ; Meinl, Gert. / Improved characterization of changes in fibre cross section during sheet forming and drying using optical fibre analyzer data and a serial sectioning technique. Progress in Paper Physics Seminar Proceedings 2010. ., 2010.
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