Mechanical behaviour of wood compressed in radial direction: Part II. Influence of temperature and moisture content
Tài liệu tham khảo
Ando, 1999, Mechanism for deformation of wood as a honeycomb structure I: effect of anatomy on the initial deformation process during radial compression, J. Wood Sci., 45, 120, 10.1007/BF01192328
Bao, 2017, Effect of thermo-hydro-mechanical densification on microstructure and properties of poplar wood (Populus tomentosa), J. Wood Sci., 63, 591, 10.1007/s10086-017-1661-0
Bodig, 1963, The peculiarity of compression of conifers in radial direction, Forest Products J., 13, 438
Bodig, 1965, The effect of anatomy on the initial stress-strain relationship in transverse compression, For. Prod. J., 15, 197
Bodig, 1966, Stress-strain relationship for wood in transverse compression, J. Mater. Sci., 1, 645
Chu, 2019, Functionalized surface layer on poplar wood fabricated by fire retardant and thermal densification. Part 1: compression recovery and flammability, Forests, 10, 955, 10.3390/f10110955
Dai, 1993, Compression behavior of randomly formed wood flake mats, Wood Fiber Sci., 25, 349
Deben research, 2003. Deben UK Limited, Edmunds, Suffolk, U.K.
Easterling, 1982, On the mechanics of Balsa and other woods, Proc. R. Soc. Lond. A, 383, 31, 10.1098/rspa.1982.0118
Ellis, 2002, The behaviour of five wood species in compression, IAWA J, 23, 201, 10.1163/22941932-90000298
Gibson, 1988, 357
Gong, 2010, Interactive effect of surface densification and post-heat-treatment on aspen wood, J. Mater. Process. Technol., 210, 293, 10.1016/j.jmatprotec.2009.09.013
Gong, 2006, Maximum compression ratios of softwoods produced in Eastern Canada
Greenspan, 1977, Humidity fixed points of binary saturated aqueous solutions, J. Res. Natl. Bureau Stand. Sect. A, 81A, 89, 10.6028/jres.081A.011
Huang, 2020, Mechanical behaviour of wood compressed in radial direction. Part I. New method of determining the yield stress of wood on the stress-strain curve, J. Bioresour. Bioprod., 5, 186, 10.1016/j.jobab.2020.07.004
Iida, 1984, Hygrothermal recovery of compression set, Mokuzai Gakkaishi, 30, 354
Inoue, 1990, Surface compression of coniferous wood lumber I. A new technique to compress the surface layer, J. Jpn. Wood Res. Soc., 36, 969
Inoue, 2007, Steam or heat fixation of compressed wood, Wood Fiber Sci., 25, 224
Inoue, 1996, Dimensional stabilization of wood composites by steaming I. Fixation of compressed wood by pre-streaming, 240
Irvine, 1984, Glass transitions of lignin and hemicellulose and their measurement by differential thermal analysis, Tappi J., 67, 118
Kamke, 1988, Fundamentals of flakeboard manufacture: internal-mat conditions, For. Prod. J., 38, 38
Kawai, 1992, Production of compressed laminated veneer lumber by steam pressing, 121
Kelley, 1987, Relaxation behaviour of the amorphous components of wood, J. Mater. Sci., 22, 617, 10.1007/BF01160778
Kiaei, 2018, Influence of densification temperature on some physical and mechanical properties of Pterocarya fraxinifolia wood, Drvna Ind., 69, 283, 10.5552/drind.2018.1750
Kollmann, 1968
Kubovský, 2020, Structural changes of oak wood main components caused by thermal modification, Polymers, 12, 485, 10.3390/polym12020485
Lamason, 2007, Optimization of pressing parameters for mechanically surface-densified aspen, For. Prod. J., 57, 64
Lenth, 2001, Moisture dependent softening behavior of wood, Wood Fiber Sci., 33, 492
Mania, 2020, Hardness of densified wood in relation to changed chemical composition, Forests, 11, 506, 10.3390/f11050506
Norimoto, 1993, Large compressive deformation in wood, Mokuzai Gakkaishi, 39, 867
Panshin, 1980
Pelit, 2019, Influence of densification on mechanical properties of thermally pretreated spruce and poplar wood, BioResources, 14, 9739, 10.15376/biores.14.4.9739-9754
Skyba, 2009, Physical and mechanical properties of thermos-hygro-mechanically (THM)-densified wood, Wood Res., 54, 1
Sözbir, 2019, Influence of combined heat treatment and densification on mechanical properties of poplar wood, Maderas, Cienc. Tecnol., 21, 481
Tabarsa, 2000, Stress-strain response of wood under radial compression. Part I. Test method and influences of cellular properties, Wood Fiber Sci., 32, 144
Tabarsa, 2001, Characterizing microscopic behavior of wood under transverse compression. Part II. Effect of species and loading direction, Wood Fiber Sci., 33, 223
Wang, 2000, Fundamentals of vertical density profile formation in wood composites. Part II. Methodology of vertical density formation under dynamic conditions, Wood Fiber Sci/, 32, 220
Wolcott, 1989, Testing small wood specimens in transverse compression, Wood Fiber Sci., 21, 320
Wolcott, 1990, Fundamentals of flakeboard manufacture: viscoelastic behavior of the wood component, Wood Fiber Sci., 22, 345
Wolcott, 1994, Fundamentals aspects of wood deformation pertaining to manufacture of wood-based composites, Wood Fiber Sci., 26, 496
