Simulation of transverse wood compression using a large-deformation, hyperelastic–plastic material model

Author:

Aimene Yamina E.,Nairn John A.

Publisher

Springer Science and Business Media LLC

Subject

Industrial and Manufacturing Engineering,Plant Science,General Materials Science,Forestry

Reference39 articles.

1. Astley RJ, Stol KA, Harrington JJ (1998) Modeling the elastic properties of softwood—part II: the cellular microstructure. Holz Roh Werkst 56:43–50

2. Bardenhagen SG, Kober EM (2004) The generalized interpolation material point method. Comput Model Eng Sci 5(6):477–495

3. Bardenhagen SG, Guilkey JE, Roessig KM, Brackbill JU, Witzel WM, Foster JC (2001) An improved contact algorithm for the material point method and application to stress propagation in granular materials. Comput Model Eng Sci 2:509–522

4. Bodig J (1963) The peculiarity of compression of conifers in radial direction. For Prod J 13(10):438

5. Bodig J (1965) The effect of anatomy on the initial stress–strain relationship in transverse compression. For Prod J 15:197–202

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