Skip to main content
Top
Published in: Wood Science and Technology 5/2012

01-09-2012 | Original

Influence of temperature and steam environment on set recovery of compressive deformation of wood

Authors: Andreja Kutnar, Frederick A. Kamke

Published in: Wood Science and Technology | Issue 5/2012

Log in

Activate our intelligent search to find suitable subject content or patents.

search-config
loading …

Abstract

Low-density hybrid poplar wood (Populus deltoides × Populus trichocarpa) was densified by mechanical compression under saturated steam, superheated steam, and transient conditions at temperature levels of 150, 160, and 170°C. Furthermore, compression of wood under saturated steam conditions at 170°C, followed by post-heat-treatment at 200°C for 1, 2, and 3 min, was performed. To determine the influence of compression treatment on the set recovery, specimens were subjected to five cycles of water soaking and drying. Modulus of rupture (MOR) and modulus of elasticity (MOE) of specimens compressed under saturated steam conditions at 170°C and post-heat-treated at 200°C were determined in the dry condition and after five soak/dry cycles. Higher temperature of the compression treatment resulted in lower equilibrium moisture content, while the steam conditions during the treatment and the post-heat-treatment did not have significant effect. Furthermore, the highest degree of densification was obtained in specimens compressed under saturated steam conditions at 170°C and post-heat-treated at 200°C. The steam condition and temperature influenced the set recovery of compressive deformation. Reduced hygroscopicity does not necessarily imply reduced set recovery. The results established that considerable fixation of compressive deformation can be obtained by compressing the wood in a saturated steam environment and by post-heat-treatment at 200°C. The short heat-treatment had no influence on MOR or MOE, but soaking/drying treatments caused a decrease in the MOR and MOE.

Dont have a licence yet? Then find out more about our products and how to get one now:

Springer Professional "Technik"

Online-Abonnement

Mit Springer Professional "Technik" erhalten Sie Zugriff auf:

  • über 67.000 Bücher
  • über 390 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Maschinenbau + Werkstoffe




 

Jetzt Wissensvorsprung sichern!

Springer Professional "Wirtschaft+Technik"

Online-Abonnement

Mit Springer Professional "Wirtschaft+Technik" erhalten Sie Zugriff auf:

  • über 102.000 Bücher
  • über 537 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Finance + Banking
  • Management + Führung
  • Marketing + Vertrieb
  • Maschinenbau + Werkstoffe
  • Versicherung + Risiko

Jetzt Wissensvorsprung sichern!

Literature
go back to reference Blomberg J, Persson B, Blomberg A (2005) Effects of semi-isostatic densification of wood on the variation in strength properties with density. Wood Sci Technol 39:339–350CrossRef Blomberg J, Persson B, Blomberg A (2005) Effects of semi-isostatic densification of wood on the variation in strength properties with density. Wood Sci Technol 39:339–350CrossRef
go back to reference Blomberg J, Persson B, Bexell U (2006) Effects of semi-isostatic densification on anatomy and cellshape recovery on soaking. Holzforschung 60:322–331CrossRef Blomberg J, Persson B, Bexell U (2006) Effects of semi-isostatic densification on anatomy and cellshape recovery on soaking. Holzforschung 60:322–331CrossRef
go back to reference Dwianto W, Morooka T, Norimoto M, Kitajima T (1999) Stress relaxation of Sugi (C. japonica D. Don) wood in radial compression under high temperature steam. Holzforschung 53(5):541–546CrossRef Dwianto W, Morooka T, Norimoto M, Kitajima T (1999) Stress relaxation of Sugi (C. japonica D. Don) wood in radial compression under high temperature steam. Holzforschung 53(5):541–546CrossRef
go back to reference Esteves B, Marques AV, Domingos I, Pereira H (2007) Influence of steam heating on the properties of pine (Pinus pinaster) and eucalypt (Eucalyptus globules) wood. J Wood Sci Technol 41:193–207CrossRef Esteves B, Marques AV, Domingos I, Pereira H (2007) Influence of steam heating on the properties of pine (Pinus pinaster) and eucalypt (Eucalyptus globules) wood. J Wood Sci Technol 41:193–207CrossRef
go back to reference 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
go back to reference Hsu WE, Schwald W, Schwald J, Shields JA (1988) Chemical and physical changes required for producing dimensionally stable wood-based composites. Wood Sci Technol 22:281–289CrossRef Hsu WE, Schwald W, Schwald J, Shields JA (1988) Chemical and physical changes required for producing dimensionally stable wood-based composites. Wood Sci Technol 22:281–289CrossRef
go back to reference Inoue M, Norimoto M, Tanahashi M, Rowell MR (1993) Steam or heat fixation of compressed wood. Wood Fiber Sci 25(3):224–235 Inoue M, Norimoto M, Tanahashi M, Rowell MR (1993) Steam or heat fixation of compressed wood. Wood Fiber Sci 25(3):224–235
go back to reference Inoue M, Sekino N, Morooka T, Norimoto M (1996) Dimensional stabilization of wood composites by steaming I. Fixation of compressed wood by pre-steaming. In: Proceedings of third pacific rim bio-based composites symposium, Kyoto, pp 240–248 Inoue M, Sekino N, Morooka T, Norimoto M (1996) Dimensional stabilization of wood composites by steaming I. Fixation of compressed wood by pre-steaming. In: Proceedings of third pacific rim bio-based composites symposium, Kyoto, pp 240–248
go back to reference Inoue M, Sekino N, Morooka T, Rowell RM, Norimoto M (2008) Fixation of compressive deformation in wood by pre-steaming. J Trop For Sci 20(4):273–281 Inoue M, Sekino N, Morooka T, Rowell RM, Norimoto M (2008) Fixation of compressive deformation in wood by pre-steaming. J Trop For Sci 20(4):273–281
go back to reference Kollmann FP, Cote WA (1968) Principles of wood science and technology I. solid wood. Springer, HeidelbergCrossRef Kollmann FP, Cote WA (1968) Principles of wood science and technology I. solid wood. Springer, HeidelbergCrossRef
go back to reference Kollmann FP, Kuenzi EW, Stamm AJ (1975) Principles of Wood Science and Technology. Vol II: Wood based materials. Springer, HeidelbergCrossRef Kollmann FP, Kuenzi EW, Stamm AJ (1975) Principles of Wood Science and Technology. Vol II: Wood based materials. Springer, HeidelbergCrossRef
go back to reference Kutnar A, Kamke FA (2010) Compression of wood under saturated steam, superheated steam, and transient conditions at 150°C, 160°C and 170°C. Wood Sci Technol, published online Oct. 8, 2010; doi:10.1007/s00226-010-0380-0 Kutnar A, Kamke FA (2010) Compression of wood under saturated steam, superheated steam, and transient conditions at 150°C, 160°C and 170°C. Wood Sci Technol, published online Oct. 8, 2010; doi:10.​1007/​s00226-010-0380-0
go back to reference Kutnar A, Kamke FA, Sernek M (2009) Density profile and morphology of viscoelastic thermal compressed wood. Wood Sci Technol 43(1):57–68CrossRef Kutnar A, Kamke FA, Sernek M (2009) Density profile and morphology of viscoelastic thermal compressed wood. Wood Sci Technol 43(1):57–68CrossRef
go back to reference Lenth CA, Kamke FA (2001a) Moisture dependent softening behavior of wood. Wood Fiber Sci 33(3):492–507 Lenth CA, Kamke FA (2001a) Moisture dependent softening behavior of wood. Wood Fiber Sci 33(3):492–507
go back to reference Lenth CA, Kamke FA (2001b) Equilibrium moisture content of wood in high-temperature pressurized environments. Wood Fiber Sci 33(1):104–118 Lenth CA, Kamke FA (2001b) Equilibrium moisture content of wood in high-temperature pressurized environments. Wood Fiber Sci 33(1):104–118
go back to reference Metsä-Kortelainen S, Antikainen T, Viitaniemi P (2006) The water absorption of sapwood and heartwood of Scots pine and Norway spruce heat-treated at 170°C, 190°C, 210°C and 230°C. Holz Roh- Werkst 64(3):192–197CrossRef Metsä-Kortelainen S, Antikainen T, Viitaniemi P (2006) The water absorption of sapwood and heartwood of Scots pine and Norway spruce heat-treated at 170°C, 190°C, 210°C and 230°C. Holz Roh- Werkst 64(3):192–197CrossRef
go back to reference Morsing N (2000) Densification of wood—the influence of hygrothermal treatment on compression of beech perpendicular to the grain. Department of structural engineering and materials technical university of Denmark, Series R, 79, p 138 Morsing N (2000) Densification of wood—the influence of hygrothermal treatment on compression of beech perpendicular to the grain. Department of structural engineering and materials technical university of Denmark, Series R, 79, p 138
go back to reference Navi P, Heger F (2004) Combined densification and thermo-hydro- mechanical processing of wood. Materials Research Society, Bulletin, pp 332–336 Navi P, Heger F (2004) Combined densification and thermo-hydro- mechanical processing of wood. Materials Research Society, Bulletin, pp 332–336
go back to reference Reynolds MS (2004) Hydro-thermal stabilization of wood-based materials. Master Thesis. Virginia Tech, Blacksburg, Virginia, p 155 Reynolds MS (2004) Hydro-thermal stabilization of wood-based materials. Master Thesis. Virginia Tech, Blacksburg, Virginia, p 155
go back to reference Santos JA (2000) Mechanical behavior of Eucalyptus wood modified by heat. Wood Sci Technol 34:39–43CrossRef Santos JA (2000) Mechanical behavior of Eucalyptus wood modified by heat. Wood Sci Technol 34:39–43CrossRef
go back to reference Statgraphics Plus version 5.0 (2000) Manugistics, Inc., Rockville, MD Statgraphics Plus version 5.0 (2000) Manugistics, Inc., Rockville, MD
go back to reference Wolcott MP, Shutler EL (2003) Temperature and moisture influence on compression—recovery behavior of wood. Wood Fiber Sci 35(4):540–551 Wolcott MP, Shutler EL (2003) Temperature and moisture influence on compression—recovery behavior of wood. Wood Fiber Sci 35(4):540–551
Metadata
Title
Influence of temperature and steam environment on set recovery of compressive deformation of wood
Authors
Andreja Kutnar
Frederick A. Kamke
Publication date
01-09-2012
Publisher
Springer-Verlag
Published in
Wood Science and Technology / Issue 5/2012
Print ISSN: 0043-7719
Electronic ISSN: 1432-5225
DOI
https://doi.org/10.1007/s00226-011-0456-5

Other articles of this Issue 5/2012

Wood Science and Technology 5/2012 Go to the issue