This paper deals with the development of a novel veneer-reinforced timber product for load-bearing applications – veneer-reinforced timber. For this composite timber product, veneers are inserted vertically into a glulam
cross-section to act as reinforcement for shear and tensile stresses perpendicular to the grain. By arranging the veneer layers between the glulam components at angles of 0° and 90°, the highly anisotropic strength and stiffness properties of glulam are homogenized. By means of numerical simulations and experimental investigations, the load-bearing behavior and the efficiency of veneer-reinforced timber are investigated.
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This paper deals with the development of a novel veneer-reinforced timber product for load-bearing applications – veneer-reinforced timber. For this composite timber product, veneers are inserted vertically into a glulam
cross-section to act as reinforcement for shear and tensile stresses perpendicular to the grain. By arranging the veneer layers between the glulam components at angles of 0° and 90°, the highly anisotropic strength and stiffness properties of glulam are homogenized. By means o...
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