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Erschienen in: Wood Science and Technology 1/2024

22.11.2023 | Original

Effects of thermal modification on the flexure properties, fracture energy, and hardness of western hemlock

verfasst von: T. Nakagawa, E. Poulin, T. Rueppel, Z. Chen, J. Swinea, M. O’Brien, G. Houser, G. Wood, M. Weinheimer, P. Bahmani, P. Stynoski, M. Salviato

Erschienen in: Wood Science and Technology | Ausgabe 1/2024

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Abstract

This study investigates the effect of thermal modification on the flexural properties, transverse fracture energy, and hardness of western hemlock, a material which is finding increasing applications in construction. Flexure tests on specimens featuring longitudinal and transverse grains showed that thermal modification at 167 °C leads to less statistical variability compared to unmodified samples. Additionally, thermal modification leads to a decrease in the transverse flexural strength. On the other hand, the fracture and Janka hardness tests revealed a more pronounced brittleness of the thermally modified samples. In fact, the total mode I fracture energy of modified single-edge notch bending samples was about 47% lower for radial–longitudinal systems and 60% lower for tangential–longitudinal systems. Similarly, the average Janka hardness in the tangential and transverse planes was 8.5% and 9.4% lower in the modified specimens, respectively. The results presented in this work show that thermal modification can have a significant effect on the fracturing behavior of western hemlock and its energy dissipation capabilities. For design, this must be taken into serious consideration as these properties significantly influence the damage tolerance of this wood in the presence of stress concentrations such as those induced in bolted joints and cut outs. Fracture energy and hardness are also strongly correlated to ballistic performance.

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Literatur
Zurück zum Zitat ASTM D143 (2022) standard test methods for small clear specimens of timber ASTM D143 (2022) standard test methods for small clear specimens of timber
Zurück zum Zitat Bazant Z, Le J-L, Salviato M (2021) Quasibrittle fracture mechanics and size effect: a first course. Oxford University Press, OxfordCrossRef Bazant Z, Le J-L, Salviato M (2021) Quasibrittle fracture mechanics and size effect: a first course. Oxford University Press, OxfordCrossRef
Zurück zum Zitat Boonstra MJ, Van Ackerb J, Tjeerdsmac BF (2007) Strength properties of thermally modified softwoods and its relation to polymeric structural wood constituents. Ann for Sci 64:679–690CrossRef Boonstra MJ, Van Ackerb J, Tjeerdsmac BF (2007) Strength properties of thermally modified softwoods and its relation to polymeric structural wood constituents. Ann for Sci 64:679–690CrossRef
Zurück zum Zitat Bourgois J, Guyonnet R (1988) Characterization and analysis of torrefied wood. Wood Sci Technol 22:143–155CrossRef Bourgois J, Guyonnet R (1988) Characterization and analysis of torrefied wood. Wood Sci Technol 22:143–155CrossRef
Zurück zum Zitat Cedolin L, Bažant Z (1991) Stability of structures. Dover Publications, New York Cedolin L, Bažant Z (1991) Stability of structures. Dover Publications, New York
Zurück zum Zitat Fang Z, Bo Li Yu, Liu JZ, Li G, Hou G, Zhou J, Qiu X (2020) Critical role of degree of polymerization of cellulose in super-strong nanocellulose films. Matter 2(4):1000–1014CrossRef Fang Z, Bo Li Yu, Liu JZ, Li G, Hou G, Zhou J, Qiu X (2020) Critical role of degree of polymerization of cellulose in super-strong nanocellulose films. Matter 2(4):1000–1014CrossRef
Zurück zum Zitat Fridley KJ (2002) Wood and wood-based materials: Current status and future of a structural material. J Mater Civ Eng 14:91–96CrossRef Fridley KJ (2002) Wood and wood-based materials: Current status and future of a structural material. J Mater Civ Eng 14:91–96CrossRef
Zurück zum Zitat Govorčin S, Sinković T, Hrčka R (2009) Some physical and mechanical properties of recent and heat treated Ash-Fraxinus excelsior. Šumarski List 133:2009 Govorčin S, Sinković T, Hrčka R (2009) Some physical and mechanical properties of recent and heat treated Ash-Fraxinus excelsior. Šumarski List 133:2009
Zurück zum Zitat Hakkou M, Pétrissans M, Gérardin P, Zoulalian A (2006) Investigations of the reasons for fungal durability of heat-treated beech wood. Polym Degrad Stab 91(2):393–397CrossRef Hakkou M, Pétrissans M, Gérardin P, Zoulalian A (2006) Investigations of the reasons for fungal durability of heat-treated beech wood. Polym Degrad Stab 91(2):393–397CrossRef
Zurück zum Zitat Hill C, Altgen M, Rautkari L (2021) Thermal modification of wood—a review: chemical changes and hygroscopicity. J Mater Sci 56:6581–6614ADSCrossRef Hill C, Altgen M, Rautkari L (2021) Thermal modification of wood—a review: chemical changes and hygroscopicity. J Mater Sci 56:6581–6614ADSCrossRef
Zurück zum Zitat Hillis WE (1984) High temperature and chemical effects on wood stability Part 1. General considerations. Wood Sci Technol 18:281–293CrossRef Hillis WE (1984) High temperature and chemical effects on wood stability Part 1. General considerations. Wood Sci Technol 18:281–293CrossRef
Zurück zum Zitat Hou YuanZhen, Guan Q-F, Xia J, Ling Z-C, He ZeZhou, Han Z-M, Yang H-B et al (2020) Strengthening and toughening hierarchical. ACS Nano 15(1):1310–1320CrossRefPubMed Hou YuanZhen, Guan Q-F, Xia J, Ling Z-C, He ZeZhou, Han Z-M, Yang H-B et al (2020) Strengthening and toughening hierarchical. ACS Nano 15(1):1310–1320CrossRefPubMed
Zurück zum Zitat Ko S, Davey J, Douglass S, Yang J, Tuttle M, Salviato M (2019a) Effect of the thickness on the fracturing behavior of discontinuous fiber composite structures. Compos A Appl Sci Manuf 125:105520CrossRef Ko S, Davey J, Douglass S, Yang J, Tuttle M, Salviato M (2019a) Effect of the thickness on the fracturing behavior of discontinuous fiber composite structures. Compos A Appl Sci Manuf 125:105520CrossRef
Zurück zum Zitat Ko S, Yang J, Tuttle M, Salviato M (2019b) Effect of the platelet size on the fracturing behavior and size effect of discontinuous fiber composite structures. Compos Struct 227:111245CrossRef Ko S, Yang J, Tuttle M, Salviato M (2019b) Effect of the platelet size on the fracturing behavior and size effect of discontinuous fiber composite structures. Compos Struct 227:111245CrossRef
Zurück zum Zitat Kubojima Y, Okano T, Ohta M (2000) Bending strength and toughness of heat treated wood. J Wood Sci 46:8–15CrossRef Kubojima Y, Okano T, Ohta M (2000) Bending strength and toughness of heat treated wood. J Wood Sci 46:8–15CrossRef
Zurück zum Zitat Kumagai Y, Onodera S, Salviato M, Tomonaga O (2020) Multiscale analysis and experimental validation of crack initiation in quasi-isotropic laminates. Int J Solids Struct 193:172–191CrossRef Kumagai Y, Onodera S, Salviato M, Tomonaga O (2020) Multiscale analysis and experimental validation of crack initiation in quasi-isotropic laminates. Int J Solids Struct 193:172–191CrossRef
Zurück zum Zitat Langum C, Yadama V, Lowell E (2009) Physical and mechanical properties of young-growth Douglas-fir and western hemlock form western Washington. For Prod J 59:37–47 Langum C, Yadama V, Lowell E (2009) Physical and mechanical properties of young-growth Douglas-fir and western hemlock form western Washington. For Prod J 59:37–47
Zurück zum Zitat Lekounougou S, Kocaefe D, Oumarou N, Kocaefe Y, Poncsak S (2011) Effect of thermal modification on mechanical properties of Canadian white birch (Betula papyrifera). Int Wood Prod J 2:101–107CrossRef Lekounougou S, Kocaefe D, Oumarou N, Kocaefe Y, Poncsak S (2011) Effect of thermal modification on mechanical properties of Canadian white birch (Betula papyrifera). Int Wood Prod J 2:101–107CrossRef
Zurück zum Zitat LeVan SL, Ross RJ, Winandy JE (1990) Effects of fire retardant chemicals on the bending properties of wood at elevated temperatures. US Department of Agriculture Forest Service, Forest Products Laboratory, p 498 LeVan SL, Ross RJ, Winandy JE (1990) Effects of fire retardant chemicals on the bending properties of wood at elevated temperatures. US Department of Agriculture Forest Service, Forest Products Laboratory, p 498
Zurück zum Zitat Li W, Qiao Y, Fenner J, Warren K, Salviato M, Bazant Z, Cusatis G (2021) Elastic and fracture behavior of three-dimensional ply-to-ply angle interlock woven composites: through-thickness, size effect, and multiaxial tests. Compos Part c: Open Access 4:1000098 Li W, Qiao Y, Fenner J, Warren K, Salviato M, Bazant Z, Cusatis G (2021) Elastic and fracture behavior of three-dimensional ply-to-ply angle interlock woven composites: through-thickness, size effect, and multiaxial tests. Compos Part c: Open Access 4:1000098
Zurück zum Zitat Majano-Majano A, Hughes M, Fernandez-Cabo JL (2010) The fracture toughness and properties of thermally modified beech and ash at different moisture contents. Wood Sci Technol 46:5–21CrossRef Majano-Majano A, Hughes M, Fernandez-Cabo JL (2010) The fracture toughness and properties of thermally modified beech and ash at different moisture contents. Wood Sci Technol 46:5–21CrossRef
Zurück zum Zitat Militz H, Altgen M (2014) Processes and properties of thermally modified wood manufactured in Europe in deterioration and protection of sustainable biomaterials. J Am Chem Soc 16:269–285 Militz H, Altgen M (2014) Processes and properties of thermally modified wood manufactured in Europe in deterioration and protection of sustainable biomaterials. J Am Chem Soc 16:269–285
Zurück zum Zitat Nakagawa T, Ko S, Slaughter C, Abdullah T, Houser G, Salviato M (2022) Effects of aging on the mechanical and fracture properties of chopped fiber. Sustain Mater Technol 33:e00470 Nakagawa T, Ko S, Slaughter C, Abdullah T, Houser G, Salviato M (2022) Effects of aging on the mechanical and fracture properties of chopped fiber. Sustain Mater Technol 33:e00470
Zurück zum Zitat Nhacila F, Sitoe E, Uetimane E, Manhica A, Egas A, Möttönen V (2020) Effects of thermal modification on physical and mechanical properties of Mozambican Brachystegia spiciformis and Julbernardia globiflora wood. Eur J Wood Prod 78:871–878CrossRef Nhacila F, Sitoe E, Uetimane E, Manhica A, Egas A, Möttönen V (2020) Effects of thermal modification on physical and mechanical properties of Mozambican Brachystegia spiciformis and Julbernardia globiflora wood. Eur J Wood Prod 78:871–878CrossRef
Zurück zum Zitat Nourian S. (2018) Thermal modification of western hemlock (Tsuga heterophylla). The University of British Coulumbia Nourian S. (2018) Thermal modification of western hemlock (Tsuga heterophylla). The University of British Coulumbia
Zurück zum Zitat Nourian S, Avramidis S (2021) Exploratory thermal modification of western hemlock. Wood Mater Sci Eng 16:221–228CrossRef Nourian S, Avramidis S (2021) Exploratory thermal modification of western hemlock. Wood Mater Sci Eng 16:221–228CrossRef
Zurück zum Zitat Pleschberger H, Teischinger A, Müller U, Hansmann C (2014) Change in fracturing and colouring of solid spruce and ash wood after thermal modification. Wood Mat Sci Eng 9:92–101CrossRef Pleschberger H, Teischinger A, Müller U, Hansmann C (2014) Change in fracturing and colouring of solid spruce and ash wood after thermal modification. Wood Mat Sci Eng 9:92–101CrossRef
Zurück zum Zitat Qiao Y, Salviato M (2019) Strength and cohesive behavior of thermoset polymers at the microscale: a size-effect study. Eng Fract Mech 213:100–117CrossRef Qiao Y, Salviato M (2019) Strength and cohesive behavior of thermoset polymers at the microscale: a size-effect study. Eng Fract Mech 213:100–117CrossRef
Zurück zum Zitat Reinprecht L (2016) Wood deterioration, protection and maintenance. John Wiley & SonsCrossRef Reinprecht L (2016) Wood deterioration, protection and maintenance. John Wiley & SonsCrossRef
Zurück zum Zitat RILEM (1985) Determination of the fracture energy of mortar and concrete by means of three-point bend tests on notched beams. Mater Struct 18:285–290 RILEM (1985) Determination of the fracture energy of mortar and concrete by means of three-point bend tests on notched beams. Mater Struct 18:285–290
Zurück zum Zitat Roszyk E, Stachowska E, Majka J, Mania P, Broda M (2020) Moisture-dependent strength properties of thermally-modified Fraxinus excelsior wood in compression. Materials 13:1647ADSCrossRefPubMedPubMedCentral Roszyk E, Stachowska E, Majka J, Mania P, Broda M (2020) Moisture-dependent strength properties of thermally-modified Fraxinus excelsior wood in compression. Materials 13:1647ADSCrossRefPubMedPubMedCentral
Zurück zum Zitat Salviato M, Kirane K, Ashari S, Bazant Z, Cusatis G (2016) Experimental and numerical investigation of intra-laminar energy dissipation and size effect in two-dimensional textile composites. Compos Sci Technol 135:67–75CrossRef Salviato M, Kirane K, Ashari S, Bazant Z, Cusatis G (2016) Experimental and numerical investigation of intra-laminar energy dissipation and size effect in two-dimensional textile composites. Compos Sci Technol 135:67–75CrossRef
Zurück zum Zitat Sandberg D, Kutnar A (2016) Thermally modified timber: recent developments in Europe and North America. Wood Fiber Sci 48:28–39 Sandberg D, Kutnar A (2016) Thermally modified timber: recent developments in Europe and North America. Wood Fiber Sci 48:28–39
Zurück zum Zitat Sikora A, Kačík F, Gaff M, Vondrová V, Bubeníková T, Kubovský I (2018) Impact of thermal modification on color and chemical changes of spruce and oak wood. J Wood Sci 64(4):406–416CrossRef Sikora A, Kačík F, Gaff M, Vondrová V, Bubeníková T, Kubovský I (2018) Impact of thermal modification on color and chemical changes of spruce and oak wood. J Wood Sci 64(4):406–416CrossRef
Zurück zum Zitat Song K, Ganguly I, Eastin I et al (2019) Structure–property relationships of hydrothermally treated western hemlock. SN Appl Sci 1:11CrossRef Song K, Ganguly I, Eastin I et al (2019) Structure–property relationships of hydrothermally treated western hemlock. SN Appl Sci 1:11CrossRef
Zurück zum Zitat Standfest G, and Zimmer B (2008) The surface hardness of thermally treated woods. In: proceedings of the international convention of the forest products society. St. Louis Standfest G, and Zimmer B (2008) The surface hardness of thermally treated woods. In: proceedings of the international convention of the forest products society. St. Louis
Zurück zum Zitat US Dept. of Agriculture. (2010) Products agriculture united states department of service forest laboratory forest, wood handbook: wood as an engineering material. US Dept. of Agriculture, Forest Service, Forest Products Laboratory, Madison, WI US Dept. of Agriculture. (2010) Products agriculture united states department of service forest laboratory forest, wood handbook: wood as an engineering material. US Dept. of Agriculture, Forest Service, Forest Products Laboratory, Madison, WI
Zurück zum Zitat Wang S-Y, Wang H-L (1999) Effects of moisture content and specific gravity on static bending properties. J Wood Sci 45:127–133CrossRef Wang S-Y, Wang H-L (1999) Effects of moisture content and specific gravity on static bending properties. J Wood Sci 45:127–133CrossRef
Zurück zum Zitat Yildiz S, Gezer ED, Yildiz UC (2006) Mechanical and chemical behavior of spruce wood modified by heat. Build Environ 41(12):1762–1766CrossRef Yildiz S, Gezer ED, Yildiz UC (2006) Mechanical and chemical behavior of spruce wood modified by heat. Build Environ 41(12):1762–1766CrossRef
Metadaten
Titel
Effects of thermal modification on the flexure properties, fracture energy, and hardness of western hemlock
verfasst von
T. Nakagawa
E. Poulin
T. Rueppel
Z. Chen
J. Swinea
M. O’Brien
G. Houser
G. Wood
M. Weinheimer
P. Bahmani
P. Stynoski
M. Salviato
Publikationsdatum
22.11.2023
Verlag
Springer Berlin Heidelberg
Erschienen in
Wood Science and Technology / Ausgabe 1/2024
Print ISSN: 0043-7719
Elektronische ISSN: 1432-5225
DOI
https://doi.org/10.1007/s00226-023-01511-4

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