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Method for substitute modulus determination of furniture frame construction joints
Author(s) -
H. Özgür Imirzi,
Jerzy Smardzewski,
Nihat Döngel
Publication year - 2015
Publication title -
turkish journal of agriculture and forestry
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.624
H-Index - 43
eISSN - 1303-6173
pISSN - 1300-011X
DOI - 10.3906/tar-1406-92
Subject(s) - dowel , mortise and tenon , fagus orientalis , stiffness , materials science , composite material , young's modulus , beech , elastic modulus , specific modulus , structural engineering , engineering , botany , biology
The goal of the performed experiments was to determine the strength, stiffness, and modulus of the elasticity of dowel, mortise and loose-tenon, and mortise and tenon L-type furniture joints under diagonal tension and compression loads. The specimens were constructed from Turkish beech (Fagus orientalis L.), white oak (Quercus alba), and white walnut (Juglans cinerea L.) and were assembled with a water-resistant PVAC adhesive. According to the obtained results, the highest stiffness/strength values were estimated in mortise and tenon joints constructed of white oak, whereas dowel joints constructed from Turkish beech showed the lowest stiffness/strength and deformability. The elasticity modulus of the experimental joints expressed their stiffness better than the stiffness coefficient. The accuracy of the developed elasticity modulus model of the examined joints was verified positively both by experimental studies and numerical calculations.

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