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Tailor made OSB for special application
Authors:Costel Barbuta  Alain Cloutier  Pierre Blanchet  Vikram Yadama  Eini Lowell
Affiliation:1. Sciences du bois et de la for??t, Universit?? Laval, Qu??bec, Qc, Canada
2. Value-added Wood Products, FPInnovations, Qu??bec, Qc, Canada
3. Wood Materials and Engineering Laboratory, Washington State University, Pullman, WA, USA
4. USDA Forest Service, Pacific Northwest Research Station, Portland, OR, USA
Abstract:The purpose of this study was to develop speciality oriented strand board (OSB) with high stiffness for use in products such as engineered wood flooring (EWF). Three-layer oriented strand boards were manufactured from two feedstocks of strands: a mixture of 90% aspen (Populus tremuloides) and 10% of paper birch (Betula papyrifera), and 100% of small diameter ponderosa pine logs (Pinus ponderosa). The OSB panels were manufactured under a factorial design of three resin contents, two density profiles, and three weight ratios for the face and core layers. Tests to determine density, bending modulus of elasticity (MOE), internal bond (IB) and thickness swelling (TS) were performed according to ASTM standard D 1037-06a. The results showed that the higher values of bending MOE for panels made from aspen/birch mixture and ponderosa pine, 8190 and 9050?MPa, respectively, were obtained for the same combination of factors. Such high bending MOE values are very close to Baltic birch (Betula pendula) plywood, a product known for its high stiffness. The effect of resin content on IB is more pronounced for panels made from ponderosa pine than panels made from the aspen/birch mixture. Thickness swelling of panels made from ponderosa pine strands is higher than thickness swelling of panels made from a mixture of aspen and birch strands. The results indicate the potential to tailor an OSB for a specific application such as EWF.
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