PSI - Issue 37
Almudena Majano-Majano et al. / Procedia Structural Integrity 37 (2022) 492–499 Almudena Majano-Majano et al. / Structural Integrity Procedia 00 (2019) 000 – 000
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Crespo, J., Aira, J.R., Vázquez, C., Guaita, M., 2017. Comparative analysis of the elastic constants measured via conventional, ultrasound, and 3 D Digital Image Correlation methods in Eucalyptus globulus. Bioresources 12(2), 3728-3743. de Moura, M.F.S.F., Morais, J.J.L., Dourado, N., 2008a. A new data reduction scheme for mode I wood fracture characterization using the double cantilever beam test. Engineering Fracture Mechanics 75(13), 3852-3865. Derikvand, M., Jiao, H., Kotlarewski, N., Lee, M., Chan, A., Nolan, G., 2019. Bending performance of nail-laminated timber constructed of fast grown plantation eucalypt, European Journal of Wood and Wood Products 77, 421 – 437. Ehrhart, T., Fink, G., Steiger, R., Frangi, A., 2016. Strength grading of European beech lamellas for the production of GLT & CLT, Proceedings of International Network on Timber Engineering Research, Graz, Austria. EN 15425:2017, One component polyurethane (PUR) for load-bearing timber structures - Classification and performance requirements. Franke, S., Marto J., 2014. Investigation of Eucalyptus globulus wood for the use as an engineered material. Proceedings of the World Conference on Timber Engineering, Quebec, Canada. Gagliano, J.M., Frazier, C.E., 2001. Improvements in the fracture cleavage testing of adhesively-bonded wood. Wood and Fiber Science 33(3), 377 – 385. Harm, M., 2006. Vergleich dreier Verfahren zur Bestimmung der Verklebefestigkeit von Vollholz. Diplomarbeit, Universität für Bodenkultur Wien, Austria. Irwin, G.R., Kies, J.A., 1954. Critical energy rate analysis of fracture strength. Welding Journal, Research Supplement 33, 193-198. Lara-Bocanegra, A.J., Majano-Majano, A., Crespo, J., Guaita, M., 2017. Finger-jointed Eucalyptus globulus with 1C-PUR adhesive for high performance engineered laminated products. Construction and Building Materials 135, 529-537. Lara-Bocanegra, A.J., Majano-Majano. A., Arriaga, F., Guaita, M., 2020. Eucalyptus globulus finger jointed solid timber and glued laminated timber with superior mechanical properties: Characterization and application in strained gridshells. Construction and Building Materials 265:120355. Lavisci, P., Pizzo, B., Gagliano, J.M., Triboulot, P., De Ciechi, M., 2003. Fracture energy of thick joints with structural wood adhesives. Holz als Roh- und Werkstoff 61, 355-357. Luedtke, J., Amen, C., van Ofen, A., Lehringer, C., 2015. 1C-PUR-bonded hardwoods for engineered wood products: influence of selected processing parameters. European Journal of Wood and Wood Products 73, 167-178. López-Suevos, F., Richter, K., 2009. Hydroxymethylated Resorcinol (HMR) and Novolak-Based HMR (n-HMR) Primers to Enhance Bond Durability of Eucalyptus globulus Glulams. Journal of Adhesion Science and Technology 23, 1925 – 1937. Majano-Majano, A., Lara-Bocanegra, A.J., Xavier, J., Morais, J., 2019. Measuring the cohesive law in mode I loading of Eucalyptus globulus. Materials 12, 23. Majano-Majano, A., Lara-Bocanegra, A.J., Xavier, J., Morais, J., 2020. Experimental Evaluation of Mode II fracture Properties of Eucalyptus globulus L. Materials 13(3), 745. Silva, F.G.A., Xavier, J., Pereira, F.A.M., Morais, J.J.L., Dourado, N., Moura, M.F.S.F., 2013. Determination of cohesive laws in wood bonded joints under mode I loading using the DCB test. Holzforschung 67(8), 913-922. UNE-EN 408:2011, Estructuras de madera. Madera aserrada y madera laminada encolada para uso estructural. Determinación de algunas propiedades físicas y mecánicas. Van Acker, J., 2021. Opportunities and challenges for hardwood based engineered wood products. In: 9 th Hardwood Proceedings PT. II., Sopron, Hungary. Veigel, S., Follrich, J., Gindl-Altmutter, W., Müller, U., 2012. Comparison of fracture energy testing by means of double cantilever beam-(DCB)- specimens and lap joint testing method for the characterization of adhesively bonded wood. European Journal of Wood and Wood Products 70, 3-10. Williams, J., 1989. The fracture mechanics of delamination tests. The Journal of Strain Analysis for Engineering Design 24(4), 207-214. Xavier, J., Morais, J., Dourado, N., de Moura, M.F.S.F., 2011. Measurement of mode I and mode II fracture properties of wood-bonded joints. Journal of Adhesion Science and Technology 25, 2881-2895. Xavier, J., Oliveira, M., Monteiro, P., Morais, J.J.L., de Moura, M.F.S.F., 2014. Direct evaluation of cohesive law in mode I of Pinus pinaster by digital image correlation. Experimental Mechanics 54, 829-840. EN 1912:2012, Structural Timber – Strength Classes – Assignment of Visual Grades and Species. EN 14080:2013, Timber structures - Glued laminated timber and glued solid timber – Requirements.
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