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  5. Technical properties of beech wood from aged coppices in central Italy

Technical properties of beech wood from aged coppices in central Italy

Author(s)
Lo Monaco, Angela  
Calienno, Luca
Pelosi, Claudia  
Balletti, Federica
Agresti, Giorgia
more
Date Issued
2015
Type
article
Volume
8
Start Page
82
End Page
88
DOI
10.3832/ifor1136-007
Journal
IFOREST  
Abstract
The aim of this study was to assess the features of timber from aged coppices in transition to high forests to provide a basis for their more efficient utilization. In the last decades, the abandonment of agricultural activities in mountain areas and the introduction of a territorial protection policy have led to a less intensive use of forests and the suspension of cuttings, which has resulted in the conversion of coppices into transitional high forests, now at the stage of thinning. In such condition, high-quality timber is difficult to obtain and wood supply is highly variable and hardly processable during manufacture. Two aged coppices of beech were selected in central Italy (Terminillo mountain, Rieti) and their wood specimens analyzed for several physical and mechanical characteristics: dry (719-688 kg m-3) and basic density (585-560 kg m-3); radial (7.06-7.17%), tangential (12.43-11.72%), and volumetric shrinkage (19.05- 18.51%); axial compression strength (54.7-54.4 Mpa); static bending strength (100.9-108.4 MPa); and Brinell hardness (29.8-27.7 N mm-2). A colorimetric analysis was also carried out on wood specimens after aging treatments (light exposure up to 504 hours) using the CIELAB system. A set of equations was derived in order to predict the wood color characteristics as a function of the exposure time, and vice versa to assess the exposure time needed to obtain the desired color coordinates. Our results highlight that beech wood from aged coppices in central Italy has interesting qualitative features, suggesting a more profitable use of their wood than firewood
Subjects

Brinell hardness

Central Italy

Coppice in transition...

Density

Fagus sylvatica L

Mechanical properties...

Shrinkage

Wood colour

Handle
http://hdl.handle.net/2067/48289
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Project(s)
Materials science

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