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Drying Technology
An International Journal
Volume 26, 2008 - Issue 9
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Original Articles

Wood Material Behavior During Drying: Moisture-Dependent Tensile Stiffness and Strength of Radiata Pine at 70–150°C

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Pages 1112-1117 | Published online: 11 Aug 2008

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (14)

Chang-Jin Lee & Seung-Won Oh. (2023) Effect of the drying condition on the strength properties of Japanese larch board after vacuum heat treatment. Drying Technology 41:14, pages 2349-2356.
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Rosie Sargent & C. A. Lenth. (2023) Strength and stiffness of radiata pine at elevated temperatures: a complete data set. Wood Material Science & Engineering 18:3, pages 986-994.
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Zhu Li, Jiali Jiang & Jianxiong Lyu. (2023) Temperature and time dependence of orthotropic viscoelastic properties of moist wood determined in tensile mode. Wood Material Science & Engineering 18:2, pages 656-662.
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Chang-Jin Lee, Jung-Woo Hwang & Seung-Won Oh. (2022) Effect of combined radio-frequency/vacuum-press drying on the strength properties of Japanese larch board. Drying Technology 40:14, pages 2849-2856.
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Zhu Li, Jiali Jiang & Jianxiong Lyu. (2020) The orthotropic viscoelastic properties of Chinese fir wood during the temperature ramping process. Drying Technology 38:11, pages 1411-1420.
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Yeonjung Han, Sang-Yun Yang, Jun-Ho Park, Yoon-Seong Chang, Chang-Deuk Eom & Hwanmyeong Yeo. (2017) Separation of drying strains and the calculation of drying stresses considering the viscoelasticity of red pine wood during drying. Drying Technology 35:15, pages 1858-1866.
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Tianyi Zhan, Jiali Jiang & Jianxiong Lu. (2015) The Viscoelastic Properties of Chinese Fir During Water-Loss Process Under Hydrothermal Conditions. Drying Technology 33:14, pages 1739-1745.
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Nadir Ayrilmis & Umit Buyuksari. (2011) Enhancement of Dimensional Stability of Biocomposites Containing Agricultural Waste by Heat-Treatment Method. Drying Technology 29:5, pages 591-598.
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Gokhan Gunduz, Deniz Aydemir & Suleyman Korkut. (2010) The Effect of Heat Treatment on Some Mechanical Properties and Color Changes of Uludag Fir Wood. Drying Technology 28:2, pages 249-255.
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Ciprian Lazarescu, Stavros Avramidis & Luiz Oliveira. (2010) Modeling Shrinkage Response to Tensile Stresses in Wood Drying II. Stress–Shrinkage Correlation in Restrained Specimens. Drying Technology 28:2, pages 186-192.
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Jiali Jiang, Jianxiong Lu, Rongfeng Huang & Xiaoling Li. (2009) Effects of Time and Temperature on the Viscoelastic Properties of Chinese Fir Wood. Drying Technology 27:11, pages 1229-1234.
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Jian-feng Zhan, Ji-you Gu & SheldonQ. Shi. (2009) Rheological Behavior of Larch Timber during Conventional Drying. Drying Technology 27:10, pages 1041-1050.
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G. Musielak, A. Tomkowiak & A. Kieca. (2009) Influence of Drying Conditions on Mechanical Strength of Material. Drying Technology 27:7-8, pages 888-893.
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Articles from other publishers (9)

Lívia Freire Baliza, Carlos Henrique da Silva, Evelize Aparecida Amaral, Fernanda Maria Guedes Ramalho, Paulo Fernando Trugilho, Honggang Sun & Paulo Ricardo Gherardi Hein. (2023) Evaluation of the spatial variation in moisture content inside wood pieces during drying by NIR spectroscopy. Holzforschung 77:2, pages 95-105.
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Oswaldo Erazo, Judith Vergara-Figueroa, Paulina Valenzuela & William Gacitúa. (2022) Effect of the Longitudinal Tensile Creep on the Stiffness of Radiata Pine (Pinus radiata D. Don). Materials 15:12, pages 4314.
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Aleksandra Konopka, Jacek Barański, Kazimierz A. Orłowski, Dariusz Mikielewicz & Ladislav Dzurenda. (2021) Mathematical model of the energy consumption calculation during the pine sawn wood (Pinus sylvestris L.) drying process. Wood Science and Technology 55:3, pages 741-755.
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Eduardo Schneid & Poliana Dias de Moraes. (2021) Modification factors of the embedding strength dependent on the temperature and load-to-grain angle for two wood species planted in Brazil. Construction and Building Materials 271, pages 121503.
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Marjan Sedighi Gilani, Erich Hugi, Stephan Carl, Pedro Palma & Peter Vontobel. (2014) Heat Induced Desorption of Moisture in Timber Joints with Fastener During Charring. Fire Technology 51:6, pages 1433-1445.
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Nadine Herold, Warren J. Grigsby, Robert A. Franich & Alexander Pfriem. (2015) Investigations of wood veneer during furfuryl alcohol modification using DMTA. European Journal of Wood and Wood Products 73:5, pages 693-695.
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Marjan Sedighi Gilani, Saeed Abbasion, Eberhard Lehmann, Jan Carmeliet & Dominique Derome. (2014) Neutron imaging of moisture displacement due to steep temperature gradients in hardwood. International Journal of Thermal Sciences 81, pages 1-12.
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Lukas Sobczak, Reinhold W. Lang, Martin Reif & Andreas Haider. (2013) Polypropylene‐based wood polymer composites—Effect of a maleated polypropylene coupling agent under dry and wet conditions. Journal of Applied Polymer Science 129:6, pages 3687-3695.
Crossref
Hai Qing & Leon MishnaevskyJr.Jr.. (2011) A 3D multilevel model of damage and strength of wood: Analysis of microstructural effects. Mechanics of Materials 43:9, pages 487-495.
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