Home Physical Sciences A numerical study of the transverse modulus of wood as a function of grain orientation and properties
Article
Licensed
Unlicensed Requires Authentication

A numerical study of the transverse modulus of wood as a function of grain orientation and properties

  • John A. Nairn
Published/Copyright: June 12, 2007
Holzforschung
From the journal Volume 61 Issue 4

Abstract

Finite element analysis was used to study the effective transverse modulus of solid wood for all possible end-grain patterns. The calculations accounted for cylindrical anisotropy of wood within rectangular specimens and explicitly modeled wood as a composite of earlywood and latewood. The effective modulus was significantly reduced by growth ring curvature or off-axis loading, The large changes were attributed to the low transverse shear modulus of wood. The explicit, or heterogeneous, model was compared to prior numerical methods that homogenized properties in the transverse plane. The two models gave similar effective modulus results, but a heterogeneous model was required to capture details in modulus calculations or to realistically model stress concentrations. Various numerical methods for modeling transverse stresses in wood are discussed.


Corresponding author. Wood Science & Engineering, Oregon State University, 119 Richardson Hall, Corvallis, OR 97331, USA Phone: +1-541-7374265, Fax: +1-541-7373385,

Received: 2007-1-18
Accepted: 2007-4-13
Published Online: 2007-06-12
Published in Print: 2007-6-1

©2007 by Walter de Gruyter Berlin New York

Articles in the same Issue

  1. Meetings
  2. Micromechanical modeling of solid-type and plate-type deformation patterns within softwood materials. A review and an improved approach
  3. Failure mechanisms in wood-based materials: A review of discrete, continuum, and hybrid finite-element representations
  4. Morphological lattice models for the simulation of softwood failure and fracture
  5. Experimental and numerical investigation of wood fracture mechanisms at different humidity levels
  6. Material point method simulations of transverse fracture in wood with realistic morphologies
  7. Simulation of cracks in wood using a coupled material model for interface elements
  8. Preliminary tests to evaluate the mechanical properties of young trees with small diameter
  9. Characterization and strength modeling of parallel-strand lumber
  10. Dynamic behaviour of cork and cork-filled aluminium tubes: Numerical simulation and innovative applications
  11. A numerical study of the transverse modulus of wood as a function of grain orientation and properties
  12. Effects of ring characteristics on the compressive strength and dynamic modulus of elasticity of seven softwood species
  13. Experimental device for the accurate determination of wood-water relations on micro-samples
  14. Evaluating the suitability of hybrid poplar clones for the manufacture of oriented strand boards
  15. Finely milled kenaf core as a natural plywood binder
  16. Alkaline peroxide treatment of ECF bleached softwood kraft pulps. Part 1. Characterizing the effect of alkaline peroxide treatment on carboxyl groups of fibers
  17. Alkaline peroxide treatment of ECF bleached softwood kraft pulps: Part 2. Effect of increased fiber charge on refining, wet-end application, and hornification
  18. Molar mass determination of lignins by size-exclusion chromatography: towards standardisation of the method
Downloaded on 31.12.2025 from https://www.degruyterbrill.com/document/doi/10.1515/HF.2007.079/pdf
Scroll to top button