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Original Articles

Dynamic mechanical loss properties of wood

Pages 619-625 | Received 04 Mar 1980, Accepted 28 Jul 1980, Published online: 04 Oct 2006

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Zahra Naghizadeh Mahani & Mehdi Tajvidi. (2017) Viscoelastic mapping of spruce-polyurethane bond line area using AM-FM atomic force microscopy. International Journal of Adhesion and Adhesives 79, pages 59-66.
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Mikko Havimo. (2009) A literature-based study on the loss tangent of wood in connection with mechanical pulping. Wood Science and Technology 43:7-8, pages 627-642.
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Anke Schirp & Michael P. Wolcott. (2006) Fungal degradation of wood‐plastic composites and evaluation using dynamic mechanical analysis. Journal of Applied Polymer Science 99:6, pages 3138-3146.
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J. Bouajila, A. Limare, C. Joly & P. Dole. (2005) Lignin plasticization to improve binderless fiberboard mechanical properties. Polymer Engineering & Science 45:6, pages 809-816.
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C. Birkinshaw, C.J. McCarthy, N. Regan, M.D.C. Hale, D. Cahill & M. McCourt. (1999) The Thermomechanical Behaviour of Wood Subject to Fungal Decay. Holzforschung 53:5, pages 459-464.
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C. Birkinshaw, M. Buggy & A. Carew. (1989) Thermo-mechanical behaviour of wood and wood products. Journal of Materials Science 24:1, pages 359-362.
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C. Birkinshaw, M. Buggy & G. G. Henn. (1986) Dynamic mechanical analysis of wood. Journal of Materials Science Letters 5:9, pages 898-900.
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W. M. Balaba & R. V. Subramanian. (2004) The kinetics of the in situ polymerization of glycidyl methacrylate in wood using dynamic mechanical measurements. Polymer Engineering & Science 26:8, pages 576-582.
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C. A. Wert, Manford Weller & Dan Caulfield. (1984) Dynamic loss properties of wood. Journal of Applied Physics 56:9, pages 2453-2458.
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Lennart Salmén. (1984) Viscoelastic properties ofin situ lignin under water-saturated conditions. Journal of Materials Science 19:9, pages 3090-3096.
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