Determination of the Modulus of Elasticity of Wooden Construction Elements Reinforced with Fiberglass Wire Mesh and Aluminum Wire Mesh
Laminated composite wooden construction elements were produced with 7 layers of Scots pine (Pinus sylvestris L.). Fiberglass wire mesh and aluminum wire mesh, which were used as reinforcement materials, were pressed with polyvinyl acetate (PVAc) and polyurethane-type adhesives between each Scots pin...
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North Carolina State University
2017-02-01
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doaj-b3ab93c46613437cbeed95096d8f34e22020-11-25T02:15:00ZengNorth Carolina State UniversityBioResources1930-21261930-21262017-02-011222466247810.15376/biores.12.2.2466-2478Determination of the Modulus of Elasticity of Wooden Construction Elements Reinforced with Fiberglass Wire Mesh and Aluminum Wire MeshAbdullah Togay0Nihat Döngel1Cevdet Söğütlü2Emre Ergin3Murat Uzel4Serkan Güneş5Gazi University; TurkeyGazi University; TurkeyGazi University; TurkeyGüzelkıyı High School; TurkeyHacettepe University; TurkeyGazi University; TurkeyLaminated composite wooden construction elements were produced with 7 layers of Scots pine (Pinus sylvestris L.). Fiberglass wire mesh and aluminum wire mesh, which were used as reinforcement materials, were pressed with polyvinyl acetate (PVAc) and polyurethane-type adhesives between each Scots pine layer. The highest bonding strength values were obtained from laminated control specimens produced with polyurethane adhesive without using support materials (4.98 N/mm2) and laminated control specimens made with polyurethane adhesive without using support materials (4.39 N/mm2), respectively. The modulus of elasticity in bending perpendicular to the glue line values of all the specimens except the laminated control specimens produced with polyurethane adhesive without using support materials (14800 N/mm2) were lower than solid wood (6720 N/mm2). In contrast, in the experiments for the modulus of elasticity parallel to the glue line, the variables (adhesive, intermediary layer materials) used for all experiments and specimens were effective factors. Although the modulus of elasticity in bending parallel to the glue line values of all samples were higher than solid wood (6720 N/mm2), the maximum value was obtained in the laminated control specimens produced with polyurethane adhesive without using support materials (17800 N/mm2).http://ojs.cnr.ncsu.edu/index.php/BioRes/article/view/BioRes_12_2_2466_Togay_Modulus_Elasticity_Wooden_ConstructionWooden material; Composite; Reinforcement; Bonding |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Abdullah Togay Nihat Döngel Cevdet Söğütlü Emre Ergin Murat Uzel Serkan Güneş |
spellingShingle |
Abdullah Togay Nihat Döngel Cevdet Söğütlü Emre Ergin Murat Uzel Serkan Güneş Determination of the Modulus of Elasticity of Wooden Construction Elements Reinforced with Fiberglass Wire Mesh and Aluminum Wire Mesh BioResources Wooden material; Composite; Reinforcement; Bonding |
author_facet |
Abdullah Togay Nihat Döngel Cevdet Söğütlü Emre Ergin Murat Uzel Serkan Güneş |
author_sort |
Abdullah Togay |
title |
Determination of the Modulus of Elasticity of Wooden Construction Elements Reinforced with Fiberglass Wire Mesh and Aluminum Wire Mesh |
title_short |
Determination of the Modulus of Elasticity of Wooden Construction Elements Reinforced with Fiberglass Wire Mesh and Aluminum Wire Mesh |
title_full |
Determination of the Modulus of Elasticity of Wooden Construction Elements Reinforced with Fiberglass Wire Mesh and Aluminum Wire Mesh |
title_fullStr |
Determination of the Modulus of Elasticity of Wooden Construction Elements Reinforced with Fiberglass Wire Mesh and Aluminum Wire Mesh |
title_full_unstemmed |
Determination of the Modulus of Elasticity of Wooden Construction Elements Reinforced with Fiberglass Wire Mesh and Aluminum Wire Mesh |
title_sort |
determination of the modulus of elasticity of wooden construction elements reinforced with fiberglass wire mesh and aluminum wire mesh |
publisher |
North Carolina State University |
series |
BioResources |
issn |
1930-2126 1930-2126 |
publishDate |
2017-02-01 |
description |
Laminated composite wooden construction elements were produced with 7 layers of Scots pine (Pinus sylvestris L.). Fiberglass wire mesh and aluminum wire mesh, which were used as reinforcement materials, were pressed with polyvinyl acetate (PVAc) and polyurethane-type adhesives between each Scots pine layer. The highest bonding strength values were obtained from laminated control specimens produced with polyurethane adhesive without using support materials (4.98 N/mm2) and laminated control specimens made with polyurethane adhesive without using support materials (4.39 N/mm2), respectively. The modulus of elasticity in bending perpendicular to the glue line values of all the specimens except the laminated control specimens produced with polyurethane adhesive without using support materials (14800 N/mm2) were lower than solid wood (6720 N/mm2). In contrast, in the experiments for the modulus of elasticity parallel to the glue line, the variables (adhesive, intermediary layer materials) used for all experiments and specimens were effective factors. Although the modulus of elasticity in bending parallel to the glue line values of all samples were higher than solid wood (6720 N/mm2), the maximum value was obtained in the laminated control specimens produced with polyurethane adhesive without using support materials (17800 N/mm2). |
topic |
Wooden material; Composite; Reinforcement; Bonding |
url |
http://ojs.cnr.ncsu.edu/index.php/BioRes/article/view/BioRes_12_2_2466_Togay_Modulus_Elasticity_Wooden_Construction |
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