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Influence of wood anatomy on fiber orientation measurement obtained by laser scanning on five European species

Article dans une revue avec comité de lecture
Auteur
BESSEAU, Benoît
ccCOLLET, Robert
127742 Laboratoire Bourguignon des Matériaux et Procédés [LABOMAP]
ccPOT, Guillaume
ccVIGUIER, Joffrey

URI
http://hdl.handle.net/10985/19461
DOI
10.1186/s10086-020-01922-y
Date
2020
Journal
Journal of Wood Science

Résumé

Abstract In order to obtain high production rates of sawn timber, the sawmilling industry can use laser scanning, allowing knot detection and machine strength grading. In particular, laser scanners measure grain angle using the so-called tracheid effect on wood surface where an elliptic scattering of the laser light can be observed. This paper aims to describe the light scattering obtained by a laser beam projection on wood surface and to assess the accuracy of such fiber orientation measurement on five European species. Firstly, fiber orientation measurement error was assessed by rotating samples. Secondly, the description of the scattering effect was done considering ellipse axis ratios and areas. This was studied according to several parameters such as wood surface machining, moisture content, and orthotropic planes of symmetry. Fiber orientation measurement was successfully performed on all the tested species. The measurement error was below 1.6°, except for oak longitudinal–radial (LR) plane showing an error up to 3.1°. For most of the species, the error was higher in LR plane because of the influence of medullary rays. Despite the observation of major variabilities in laser light scattering, it was possible to measure the grain angles with a good accuracy for all investigated species.

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LABOMAP_JWS_2020_Besseau.pdf
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Documents liés

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  • Assessment of the error of fiber orientation measurement obtained by laser scanning on several European hardwood and softwood species 
    Communication avec acte
    BESSEAU, Benoît; ccCOLLET, Robert; ccPOT, Guillaume; ccVIGUIER, Joffrey (CompWood 2019 Conference, 2019)
    Scanner measurements allow knot detection and machine strength grading on sawn timber. In particular, laser scanners measure fiber orientation by means of the so-called tracheid effect explained by the fact that the wood ...
  • Measurement of fiber orientation by laser light scattering on dry and rough sawn green hardwoods 
    Communication avec acte
    BESSEAU, Benoît; ccCOLLET, Robert; ccPOT, Guillaume; ccVIGUIER, Joffrey (2019)
    Scanner measurements allow knot detection and machine strength grading on sawn timber, which answers the construction and sawmilling industry needs at high production rates. In particular, laser scanners measure fiber ...
  • Transformation et Classement éco-Efficients des Qualités Secondaires de chêne pour leur valorisation en bois d’œuvre 
    Rapport de recherche
    ccPOT, Guillaume; ccVIGUIER, Joffrey; ccSOH MBOU, DELIN JOREL; BESSEAU, Benoît; CHASTAGNIER, Thibault; LANVIN, Jean-Denis; REULING, Didier (2024-11)
    Une grande quantité de chêne est actuellement considérée de faible qualité, ces bois étant souvent utilisés pour des applications à faible valeur ajoutée comme le bois de chauffage. Le projet TreCEffiQuaS cherche à offrir ...
  • Oak timber cross-cutting based on fiber orientation scanning and mechanical modelling to ensure finger-joints strength 
    Communication avec acte
    SOH MBOU, Delin Jorel; ccBESSEAU, Benoit; POT, Guillaume; VIGUIER, Joffrey; MARCON, Bertrand; ccMILHE, Louis; REULING, Didier (University of Sopron Press, 2024-05-30)
    The mechanical properties of wood depend on its characteristics at different scales, in particular its knots and the orientation of its fibers. As wood is a highly anisotropic material, its strength and elastic properties ...
  • Modélisation des déformations au séchage d’avivés de chêne à partir de la mesure de l’orientation des fibres 
    Communication avec acte
    BESSEAU, Benoît; ccCOLLET, Robert; ccPOT, Guillaume; GIRARDON, Stéphane (HAL, 2020-11-18)
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