PSI - Issue 36
Petro Yasniy et al. / Procedia Structural Integrity 36 (2022) 211–216 Yasniy Petro et al. / Structural Integrity Procedia 00 (2021) 000 – 000
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ASTM D 143-14: 2014. Standart test methods for small clear samples of wood. Da Silva, A., Kyriakides, S., 2007. Compressive response and failure of balsa wood. International Journal of Solids and Structures 44 (25-26), 8685-8717. EN 380: 2008. Wood is constructional. General guidelines for static load test methods. Eurocode 5: 1995. Design of wood structures. Part 1.1. General rules and rules for buildings. Conrad, M.P., Smith, G.D., Ferrlund, G., 2003. Fracture of soil wood: A review of structure and properties at different length scales. Wood and Fiber Science 35(4), 570 – 584. Davids, W.G., Landis, E.N., Vasic, S., 2003. Lattice models for the prediction of load-induced failure and damage in wood. Wood Fiber Science 35(4), 120 – 135. Galicki, J., Czech, M., 2005. Tensile strength of softwood in LR orthotropy plane. Mechanics of Materials 37(6), 667 – 686. Gomon, S. S., Polishchuk, M., Homon, S., Gomon, P., Vereshko, O., Melnyk, Yu., Boyarska, I., 2020. Rigidness of combined reinforced glued wood beams. AD ALTA: Journal of Interdisciplinary Research 11(1), 131-133. Green, D.W., Kretschmann, D.E., 1992. Properties and grading of Southern Pine Woods. Forest Products Journal 47 (9), 78 – 85. Homon, S., Savchuck V., Melnyk, Y., Vereshko, O., 2020. Modern testing machines for investigation of wood and wood-based composite materials. Modern technologies and methods of calculations in. buildings 14, 73-80. Landis, E.N., Vasic, S., Davids, W.G., Parrod P., 2002. Coupled experiments and simulations of microstructural damage in wood. Experimental Mechanics 42, 389 – 394. Mackenzie-Helnwein, P., Eberhardsteiner, J., Mang, H., 2003. A multi-surface plasticity model for clear wood and its application to the finite element analysis of structural details. Computational Mechanics 31 (1-2), 204 – 218. Madsen, B., 1975. Duration of load test for wood in tension perpendicular to grain. Forest Products Journal 25(8), 48 – 54. Patton-Mallory, M., Cramer, S., 1987. Fracture mechanics: a tool for predicting wood component strength. Forest Products Journal 37 (7/8), 39 – 47. Pinchevska, O., Sedliačik, J., Zavorotnuk, O., Spirochkin, A., Hrabar, I., Oliynyk, R. , 2021. Durability of kitchen furniture made from medium density fibreboard (MDF). Acta Facultatis Xylologiae Zvolen 63(1), 119 − 130. Sinha, A., Nairn, J., Gupta, R., 2012. The effect of elevated temperature exposure on the fracture toughness of solid wood and structural wood composites. Wood Science and Technology 46(6), 1127-1149. Sobczak-Piastka, J., Gomon, S.S., Polishchuk, M., Homon, S., Gomon, P., Karavan, V., 2020. Deformability of glued laminated beams with combined reinforcement. Buildings 10(5), 92. Yasniy, P., Homon, S., 2021. Classical model of actual work solid wood for compression along fibers with short-term loading. Resource-saving materials, structures, buildings 39, 145 – 153. Zakic, B.D., 1974. Inelastic bending of wood beams. Journal of the Structural Division 99, 2079 – 2092. Zhou, A., Bian, Y., Shen, Y., Huang, D., Zhou, M., 2018. Inelastic bending performances of laminated bamboo beams: experimental investigation and analytical study. BioResources 13 (1) 131-146.
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