Wood Structure and Properties

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Presentation transcript:

Wood Structure and Properties Hardwood Softwood

Functions of wood Outer bark Sapwood Heartwood Cambium Inner bark

Levels of scale in wood structure Molecular Ultrastructural Microscopic Macroscopic

Biodegradability Conditions necessary for fungal decay of wood. Oxygen Water Temperature range Nutrition source

Fungal hyphae

Oxygen Water Temperature range Nutrition source Fence post (preservative treated wood) Fence panel (Western red cedar) Oxygen Water Temperature range Nutrition source

Variability in wood products Solid wood frequency strength

Variability in wood products mean lower 5th percentile Solid wood ÷ safety factors frequency allowable design stress strength

Variability in wood products mean mean lower 5th percentile ÷ safety factors Solid wood lower 5th percentile Wood composite frequency ÷ safety factors strength allowable design stress allowable design stress

Specific strength / Specific stiffness

Specific strength / Specific stiffness

Workability

Workability

Aesthetics / Psychological appeal

Bouyancy Cell wall 1500 kg/m3 Air 0 kg/m3 Water 1000 kg/m3

Density of wood species (g/cm3) 1.3 1.2 1.1 1.0 0.9 0.8 0.7 0.6 0.5 0.4 0.3 0.2 0.1 0.0 Density of wood species (g/cm3) Lignumvitae Rosewood Padauk Hickory Oak Teak Maple Walnut Cherry Basswood Cottonwood Balsa Southern yellow pine Douglas-fir Hemlock Lodgepole pine Spruce Western red cedar Softwoods Hardwoods Domestic species Exotic species

Increasing moisture content Increasing density

Anisotropy (St. Regis Paper Co.) (Indospectrum.com) (Côté)

Anisotropy Parallel to grain Perpendicular to grain

Anisotropy – perpendicular to grain Radial Tangential

Anisotropy – varies by property Longitudinal Relative strengths Longitudinal 5.0 Tangential 1.1 Radial 1.0 Radial Tangential Relative permeability Longitudinal 100 Tangential 1 Radial 1

Hygroscopicity Hydrogen Bond  H  O  H H   O H Water 

Hygroscopicity Hydrogen Bond  H Wood O   H  O H 

Water in cell wall O H O H

Water in wood Free water Bound water Cell wall Cell lumen Oven dry > Fibre saturation point 0% m.c. 0 – 30% m.c. > 30% m.c.

Water removal from wood “Green” Fibre Saturation Point Oven-Dry

Effect of moisture content on wood properties Fibre Saturation Point

Warping Wood can become bent or twisted out of shape as it dries below fibre saturation point. Natural shrinkage in combination with other factors such as anisotropy, spiral grain, and differential longitudinal shrinkage.

Combustibility

Sawmill residues Sawdust Chips Hog fuel

Wood pellets

Comparative Environmental Impact Assessment Life Cycle Analysis Canadian Wood Council

Comparative Environmental Impact Assessment Canadian Wood Council