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Longitudinal and transverse low frequency viscoelastic characterization of wood pulp fibers at different relative humidity

  • Caterina Czibula
  • , Tristan Seidlhofer
  • , Christian Ganser
  • , Ulrich Hirn
  • , Christian Teichert
  • National Institutes of Natural Sciences - Exploratory Research Center on Life and Living Systems
  • CD-Labor für Faserquellung und deren Effekt auf die Papiereigenschaften
  • Technische Universität Graz

Publikation: Beitrag in FachzeitschriftArtikelForschungBegutachtung

1 Zitat (Scopus)

Abstract

The viscoelastic behavior of wood pulp fibers plays a fundamental role in the performance of paper and paper products. Wood pulp fibers are hierarchical composites consisting of different cell wall layers and have anisotropic properties. Since accessing the individual fibers is challenging, no measurement technique has been able to characterize the viscoelastic properties in both – the longitudinal and transverse – fiber direction yet. Here, an atomic force microscopy (AFM)-based method is applied to investigate the viscoelastic properties of wood pulp fibers at varying relative humidity (RH) in both fiber directions. Experimental creep tests have been performed to investigate the material's low frequency regime response. A spring-dashpot model has been applied to characterize the viscoelastic behavior. The results indicate surprisingly small differences of the properties between the fiber directions. Transferring the results into a spectral representation explains an opposing trend of the viscosity that is connected to the long-term behavior.
OriginalspracheEnglisch
Aufsatznummer101094
Seitenumfang9
FachzeitschriftMaterialia
Jahrgang16.2021
AusgabenummerMay
DOIs
PublikationsstatusElektronische Veröffentlichung vor Drucklegung. - 16 Apr. 2021

Bibliographische Notiz

Funding Information:
The financial support by the Austrian Federal Ministry for Digital and Economic Affairs and the National Foundation for Research Technology and Development is gratefully acknowledged. We also thank our industrial partners Mondi Group, Canon Production Printing, Kelheim Fibres GmbH, SIG Combibloc Group AG for fruitful discussions and their financial support. Special thanks to Angela Wolfbauer of the Institute of Bioproducts and Paper Technology, Graz University of Technology for sample preparation.

Funding Information:
The financial support by the Austrian Federal Ministry for Digital and Economic Affairs and the National Foundation for Research Technology and Development is gratefully acknowledged. We also thank our industrial partners Mondi Group, Canon Production Printing, Kelheim Fibres GmbH, SIG Combibloc Group AG for fruitful discussions and their financial support. Special thanks to Angela Wolfbauer of the Institute of Bioproducts and Paper Technology, Graz University of Technology for sample preparation.

Publisher Copyright:
© 2021

Schlagwörter

  • characterization of wood pulp fibers

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