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Drying Technology
An International Journal
Volume 28, 2010 - Issue 6
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Original Articles

Influence of Frequency on Wood Viscoelasticity under Two Types of Heating Conditions

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Pages 823-829 | Published online: 27 May 2010

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Read on this site (4)

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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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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Liping Cai & LuizC. Oliveira. (2011) Evaluating the Use of Humidification Systems During Heat Treatment of MPB Lumber. Drying Technology 29:7, pages 729-734.
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Articles from other publishers (14)

Liangliang Zhang, Meihong Liu, Yanxu Liu, Jiapeng Wang, Yafang Lei, Zhangjing Chen & Li Yan. (2023) Evaluation of the colour parameters on hygroscopicity and dimensional stability of thermally modified Populus tomentosa Carr.. Industrial Crops and Products 205, pages 117506.
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Xianju Wang, Dengyun Tu, Chuanfu Chen, Qiaofang Zhou, Huixian Huang, Zehao Zheng & Zhipeng Zhu. (2021) A thermal modification technique combining bulk densification and heat treatment for poplar wood with low moisture content. Construction and Building Materials 291, pages 123395.
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Tianyi Zhan, Jiali Jiang, Jianxiong Lu, Yaoli Zhang & Jianmin Chang. (2019) Temperature-humidity-time equivalence and relaxation in dynamic viscoelastic response of Chinese fir wood. Construction and Building Materials 227, pages 116637.
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Tianyi Zhan, Jiali Jiang, Jianxiong Lu, Yaoli Zhang & Jianmin Chang. (2019) Frequency-dependent viscoelastic properties of Chinese fir ( Cunninghamia lanceolata ) under hygrothermal conditions. Part 2: moisture desorption . Holzforschung 73:8, pages 737-746.
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Tianyi Zhan, Jiali Jiang, Jianxiong Lu, Yaoli Zhang & Jianmin Chang. (2019) Frequency-dependent viscoelastic properties of Chinese fir ( Cunninghamia lanceolata ) under hygrothermal conditions. Part 1: moisture adsorption . Holzforschung 73:8, pages 727-736.
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Anxin Li, Jiali Jiang & Jianxiong Lu. (2019) Differences in the viscoelastic properties between earlywood and latewood in the growth rings of Chinese fir as analyzed by dynamic mechanical analysis (DMA) in the temperature range between −120°C and 120°C. Holzforschung 73:3, pages 241-250.
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Tianyi Zhan, Jiali Jiang, Jianxiong Lu, Yaoli Zhang & Jianmin Chang. (2018) Influence of hygrothermal condition on dynamic viscoelasticity of Chinese fir ( Cunninghamia lanceolata ). Part 2: moisture desorption . Holzforschung 72:7, pages 579-588.
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Benedetto Pizzo, Elisa Pecoraro & Simona Lazzeri. (2018) Dynamic mechanical analysis (DMA) of waterlogged archaeological wood at room temperature. Holzforschung 72:5, pages 421-431.
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Li Yan & Zhangjing Chen. (2017) Dynamic viscoelastic properties of heat-treated glycerol-impregnated poplar wood. European Journal of Wood and Wood Products 76:2, pages 611-616.
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Tianyi Zhan, Jianxiong Lu, Jiali Jiang, Hui Peng, Anxin Li & Jianmin Chang. (2016) Viscoelastic Properties of the Chinese Fir (Cunninghamia lanceolata) during Moisture Sorption Processes Determined by Harmonic Tests. Materials 9:12, pages 1020.
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Tianyi Zhan, Jiali Jiang, Hui Peng & Jianxiong Lu. (2016) Dynamic viscoelastic properties of Chinese fir ( Cunninghamia lanceolata ) during moisture desorption processes . Holzforschung 70:6, pages 547-555.
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Tianyi Zhan, Jiali Jiang, Hui Peng & Jianxiong Lu. (2016) Evidence of mechano-sorptive effect during moisture adsorption process under hygrothermal conditions: Characterized by static and dynamic loadings. Thermochimica Acta 633, pages 91-97.
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Meisam K. Habibi, Lik-ho Tam, Denvid Lau & Yang Lu. (2016) Viscoelastic damping behavior of structural bamboo material and its microstructural origins. Mechanics of Materials 97, pages 184-198.
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Tianyi Zhan, Jiali Jiang, Jianxiong Lu & Hui Peng. (2015) Dynamic viscoelastic properties of Chinese fir under cyclical relative humidity variation. Journal of Wood Science 61:5, pages 465-473.
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