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Erschienen in: European Journal of Wood and Wood Products 1/2024

01.11.2023 | Original Article

Comparative investigation on viscoelastic and mechanosorptive creep behavior of two tropical hardwoods and one temperate softwood

verfasst von: Martian Asseko Ella, Giacomo Goli, Claude Feldman Pambou Nziengui, Joseph Gril, Eric Fournely, Rostand Moutou Pitti

Erschienen in: European Journal of Wood and Wood Products | Ausgabe 1/2024

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Abstract

Two series of 3-point bending tests under constant mechanical load and temperature of 20 °C have been performed on two tropical hardwoods, Aucoumea klaineana Pierre (Okoume) and Pterocarpus soyauxii Taub (Padauk), and one temperate softwood, Abies alba (Silver fir). A first series of 14-day tests was performed at 10% stress level and 65% relative humidity (RH), with moderate step variations at 45 and 75% RH. A second series of 5-day tests was performed at 35% stress level and 75% RH with a stronger step variation at 45% RH. Deflection and transverse expansion were measured using linear variable displacement transducers. The results show that the first variation of RH always increases the deflection and that subsequent changes decrease (humidification) or increase (drying) it. It was also observed that Padauk has a higher viscoelastic response and a lower mechanosorptive response than Silver fir and Okoume. As an indication of interaction between viscoelastic and mechanosorptive behaviour, in 14-day test the latter influenced the former, with small increments of relative compliance at each cycle. The analysis of the mechanosorptive trajectories suggested the existence of a creep limit and confirmed that of pseudo-creep/recovery.

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Literatur
Zurück zum Zitat Armstrong LD, Kingston RST (1960) Effect of moisture changes on creep in wood. Nature 185(4716):862–863CrossRef Armstrong LD, Kingston RST (1960) Effect of moisture changes on creep in wood. Nature 185(4716):862–863CrossRef
Zurück zum Zitat Brancheriau L, Paradis S (2007) Bing 9-Beam Identification by Non-destructive Grading. CIRAD, Montpellier Brancheriau L, Paradis S (2007) Bing 9-Beam Identification by Non-destructive Grading. CIRAD, Montpellier
Zurück zum Zitat Cerre JC, Gérard J, Guibal D, Paradis S. Tropical timber atlas: technological characteristics and uses. Quae. Editions Quae, 2017; 2017–1000. Cerre JC, Gérard J, Guibal D, Paradis S. Tropical timber atlas: technological characteristics and uses. Quae. Editions Quae, 2017; 2017–1000.
Zurück zum Zitat Gril J. A model of the hygro-rheological behaviour of wood based on its microstructure. PhD Thesis, University Paris 6. In French. 1988. Gril J. A model of the hygro-rheological behaviour of wood based on its microstructure. PhD Thesis, University Paris 6. In French. 1988.
Zurück zum Zitat Grossman PUA, Kingston RST (1954) Creep and stress relaxation in wood during bending. Aust J Appl Sci 5(4):403–417 Grossman PUA, Kingston RST (1954) Creep and stress relaxation in wood during bending. Aust J Appl Sci 5(4):403–417
Zurück zum Zitat Hamdi SE, Pitti RM, Gril J. Moisture driven damage growth in wood material: 3D image analysis for viscoelastic numerical model validation, WCTE 2018 - World Conference on Timber Engineering. 2018. Hamdi SE, Pitti RM, Gril J. Moisture driven damage growth in wood material: 3D image analysis for viscoelastic numerical model validation, WCTE 2018 - World Conference on Timber Engineering. 2018.
Zurück zum Zitat Hou J, Jiang Y, Yin Y, Zhang W, Chen H, Yu Y, Jiang Z (2021) Experimental study and comparative numerical modeling of creep behavior of white oak wood with various distributions of earlywood vessel belt. J Wood Sci 67:1–13CrossRef Hou J, Jiang Y, Yin Y, Zhang W, Chen H, Yu Y, Jiang Z (2021) Experimental study and comparative numerical modeling of creep behavior of white oak wood with various distributions of earlywood vessel belt. J Wood Sci 67:1–13CrossRef
Zurück zum Zitat Hoyle R, Itani R, Eckard J (1986) Creep of Douglas fir beams due to cyclic humidity fluctuations. Wood Fiber Sci 18(3):468–477 Hoyle R, Itani R, Eckard J (1986) Creep of Douglas fir beams due to cyclic humidity fluctuations. Wood Fiber Sci 18(3):468–477
Zurück zum Zitat Hunt DG. Present knowledge of mechano-sorptive creep of wood. RILEM Report, p. 73–97; 1994. Hunt DG. Present knowledge of mechano-sorptive creep of wood. RILEM Report, p. 73–97; 1994.
Zurück zum Zitat Navi P, Heger F. Thermo-hydro-mechanical behaviour of wood: technical and structural applications. First edition, Presses Polytechniques et Universitaires Romandes, Lausanne, CH, p. 119–120. In french. 2005. Navi P, Heger F. Thermo-hydro-mechanical behaviour of wood: technical and structural applications. First edition, Presses Polytechniques et Universitaires Romandes, Lausanne, CH, p. 119–120. In french. 2005.
Zurück zum Zitat Nguyen SL, Saifouni O, Destrebecq JF. Incremental Formulation for Coupled Viscoelasticity and Hydrolock Effect in Softwood. In: Ralph C, Silberstein M, Thakre P, Singh R (eds). Mechanics of Composite and Multi-functional Materials, Conference Proceedings of the Society for Experimental Mechanics Series. Springer: Cham; 2016. Nguyen SL, Saifouni O, Destrebecq JF. Incremental Formulation for Coupled Viscoelasticity and Hydrolock Effect in Softwood. In: Ralph C, Silberstein M, Thakre P, Singh R (eds). Mechanics of Composite and Multi-functional Materials, Conference Proceedings of the Society for Experimental Mechanics Series. Springer: Cham; 2016.
Zurück zum Zitat O’Ceallaigh C, Sikora K, McPolin D, Harte AM (2020) Modelling the hygro-mechanical creep behaviour of FRP reinforced timber elements. Constr Build Mater 259:119899CrossRef O’Ceallaigh C, Sikora K, McPolin D, Harte AM (2020) Modelling the hygro-mechanical creep behaviour of FRP reinforced timber elements. Constr Build Mater 259:119899CrossRef
Zurück zum Zitat Pittet V. Experimental study of mechanosorptive couplings in wood subjected to controlled hygrometric variations under long-term loading. PhD thesis, Ecole Polytechnique de Lausanne, Switzerland. 1996. (In French) Pittet V. Experimental study of mechanosorptive couplings in wood subjected to controlled hygrometric variations under long-term loading. PhD thesis, Ecole Polytechnique de Lausanne, Switzerland. 1996. (In French)
Zurück zum Zitat Placet V. Design and operation of an innovative experimental device for the characterization of the viscoelastic behaviour and thermal degradation of wood under severe conditions. To cite this version : HAL Id : tel-00116612 PhD thesis , University Henri Poincaré - Nancy I. In French; 2006. Placet V. Design and operation of an innovative experimental device for the characterization of the viscoelastic behaviour and thermal degradation of wood under severe conditions. To cite this version : HAL Id : tel-00116612 PhD thesis , University Henri Poincaré - Nancy I. In French; 2006.
Zurück zum Zitat Ratanawilai T, Srivabut C (2022) Physico-mechanical properties and long-term creep behavior of wood-plastic composites for construction materials: effect of water immersion times. Case Stud Constr Mater 16:e00791 Ratanawilai T, Srivabut C (2022) Physico-mechanical properties and long-term creep behavior of wood-plastic composites for construction materials: effect of water immersion times. Case Stud Constr Mater 16:e00791
Metadaten
Titel
Comparative investigation on viscoelastic and mechanosorptive creep behavior of two tropical hardwoods and one temperate softwood
verfasst von
Martian Asseko Ella
Giacomo Goli
Claude Feldman Pambou Nziengui
Joseph Gril
Eric Fournely
Rostand Moutou Pitti
Publikationsdatum
01.11.2023
Verlag
Springer Berlin Heidelberg
Erschienen in
European Journal of Wood and Wood Products / Ausgabe 1/2024
Print ISSN: 0018-3768
Elektronische ISSN: 1436-736X
DOI
https://doi.org/10.1007/s00107-023-02002-w

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