Startseite Three-dimensional modeling of the structure formation and consolidation of wood composites
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Three-dimensional modeling of the structure formation and consolidation of wood composites

  • François Drolet und Chunping Dai
Veröffentlicht/Copyright: 9. Juli 2010
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Holzforschung
Aus der Zeitschrift Band 64 Heft 5

Abstract

A new three-dimensional (3D) computer simulation model is proposed to study structure development in wood composites, particularly strand or short fiber wood composites. The model takes into account the stochastic positioning and orientation of the strands within the mat. It also predicts the response of individual strands within the structure to the compressive and shear forces produced during mat consolidation. The model provides a complete description of mat structure in three dimensions, including spatial distribution of porosity, inter-strand contact, and density. Predictions for porosity obtained with the 3D model compare very well with those from an earlier two-dimensional analytical model. Mat structure is dictated by mat density in a two-step process: rapid removal of macrovoids before the mat density reaches the original wood density and asymptotic elimination of microvoids at higher mat densification. Other factors of importance include original wood density and strand dimensions, particularly strand thickness and width. Although known for its influence on mechanical properties, strand orientation seems to have little effect on mat porosity and strand contact.


Corresponding author. FPInnovations – Forintek Division, 2665 East Mall, Vancouver, BC, V6T 1W5, Canada Phone: +1-604-222-5736

Received: 2009-9-30
Accepted: 2010-4-9
Published Online: 2010-07-09
Published Online: 2010-07-09
Published in Print: 2010-08-01

©2010 by Walter de Gruyter Berlin New York

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  9. Surface properties of eucalyptus pulp fibres as reinforcement of cement-based composites
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  11. Moisture induced stresses perpendicular to the grain in glulam: Review and evaluation of the relative importance of models and parameters
  12. Three-dimensional modeling of the structure formation and consolidation of wood composites
  13. Observation of cell shapes in wood cross-sections during water adsorption by confocal laser-scanning microscopy (CLSM)
  14. A single cell model for pretreatment of wood by microwave explosion
  15. Pore space analysis of beech wood: The vessel network
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  17. Copper monoethanolamine adsorption in wood and its relation with cation exchange capacity (CEC)
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  21. Meetings
  22. Meetings
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