Investigation of Some Physical and Mechanical Properties of Basalt Fiber-Reinforced Polymer (BFRP) Woven Fabrics and Plaster Mesh (PSM) Reinforced Glued Laminated Oak Lumber

In this study, some physical and mechanical properties of the basalt fiber-reinforced polymer (BFRP) woven fabrics (WF) and plaster mesh (PSM) reinforced glued laminated oak lumber were investigated. The BFRPWF and PSM were used in order to increase the mechanical properties of the laminated element...

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Main Authors: Abdurrahman Karaman, Huseyin Yesil
Format: Article
Language:English
Published: University of Zagreb, Faculty of Forestry and Wood Technology 2024-01-01
Series:Drvna Industrija
Subjects:
Online Access:https://hrcak.srce.hr/file/470685
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author Abdurrahman Karaman
Huseyin Yesil
author_facet Abdurrahman Karaman
Huseyin Yesil
author_sort Abdurrahman Karaman
collection DOAJ
description In this study, some physical and mechanical properties of the basalt fiber-reinforced polymer (BFRP) woven fabrics (WF) and plaster mesh (PSM) reinforced glued laminated oak lumber were investigated. The BFRPWF and PSM were used in order to increase the mechanical properties of the laminated elements. One-component polyurethane glue (PUR) was used in the production of lumber. The BFRPWF and PSM were tested in three different locations using non-reinforced laminated oak lumber (LOL), reinforced laminated oak lumber with BFRPWF (LOLBFRPWF), and reinforced laminated oak lumber with PSM (LOL-PSM). Tests were performed on the LOL, LOLBFRPWF, and LOL-PSM to investigate their bending strength (MOR), air-dried density (δ12), and modulus of elasticity (MOE). The three-point MOR and MOE in bending tests were applied to the samples. The results showed that the highest value for MOR was found in the laminated wood samples (135.20 N/mm2) that were prepared using the BFRPWF inter-layer. The lowest value of 112.82 N/mm2 was found in the LOL samples. The highest value of modulus elasticity was found in the samples prepared with the BFRPWF inter-layer (16167 N/mm2). The lowest value of 13786 N/mm2 was found in the LOL samples. It was observed that the samples parallel to the glue line of the laminated material showed higher performance compared to those perpendicular to the glue line. The LOL-BFRPWF samples give better results than LOL-PSM and control samples. Accordingly, the LOL-BFRPWF and LOL-PSM samples have the potential to be used as viable options for both furniture and building materials.
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spelling doaj-art-8002aa8f3aa74355abc60e9a1023c90f2025-01-03T09:02:32ZengUniversity of Zagreb, Faculty of Forestry and Wood TechnologyDrvna Industrija0012-67721847-11532024-01-0175441942910.5552/drvind.2024.0174Investigation of Some Physical and Mechanical Properties of Basalt Fiber-Reinforced Polymer (BFRP) Woven Fabrics and Plaster Mesh (PSM) Reinforced Glued Laminated Oak LumberAbdurrahman Karaman0Huseyin Yesil1Uşak University, Banaz, TurkeyKutahya Dumlupınar University, Kutahya, TurkeyIn this study, some physical and mechanical properties of the basalt fiber-reinforced polymer (BFRP) woven fabrics (WF) and plaster mesh (PSM) reinforced glued laminated oak lumber were investigated. The BFRPWF and PSM were used in order to increase the mechanical properties of the laminated elements. One-component polyurethane glue (PUR) was used in the production of lumber. The BFRPWF and PSM were tested in three different locations using non-reinforced laminated oak lumber (LOL), reinforced laminated oak lumber with BFRPWF (LOLBFRPWF), and reinforced laminated oak lumber with PSM (LOL-PSM). Tests were performed on the LOL, LOLBFRPWF, and LOL-PSM to investigate their bending strength (MOR), air-dried density (δ12), and modulus of elasticity (MOE). The three-point MOR and MOE in bending tests were applied to the samples. The results showed that the highest value for MOR was found in the laminated wood samples (135.20 N/mm2) that were prepared using the BFRPWF inter-layer. The lowest value of 112.82 N/mm2 was found in the LOL samples. The highest value of modulus elasticity was found in the samples prepared with the BFRPWF inter-layer (16167 N/mm2). The lowest value of 13786 N/mm2 was found in the LOL samples. It was observed that the samples parallel to the glue line of the laminated material showed higher performance compared to those perpendicular to the glue line. The LOL-BFRPWF samples give better results than LOL-PSM and control samples. Accordingly, the LOL-BFRPWF and LOL-PSM samples have the potential to be used as viable options for both furniture and building materials.https://hrcak.srce.hr/file/470685bending strengthmodulus of elasticityplaster meshoak woodpolyurethane adhesive
spellingShingle Abdurrahman Karaman
Huseyin Yesil
Investigation of Some Physical and Mechanical Properties of Basalt Fiber-Reinforced Polymer (BFRP) Woven Fabrics and Plaster Mesh (PSM) Reinforced Glued Laminated Oak Lumber
Drvna Industrija
bending strength
modulus of elasticity
plaster mesh
oak wood
polyurethane adhesive
title Investigation of Some Physical and Mechanical Properties of Basalt Fiber-Reinforced Polymer (BFRP) Woven Fabrics and Plaster Mesh (PSM) Reinforced Glued Laminated Oak Lumber
title_full Investigation of Some Physical and Mechanical Properties of Basalt Fiber-Reinforced Polymer (BFRP) Woven Fabrics and Plaster Mesh (PSM) Reinforced Glued Laminated Oak Lumber
title_fullStr Investigation of Some Physical and Mechanical Properties of Basalt Fiber-Reinforced Polymer (BFRP) Woven Fabrics and Plaster Mesh (PSM) Reinforced Glued Laminated Oak Lumber
title_full_unstemmed Investigation of Some Physical and Mechanical Properties of Basalt Fiber-Reinforced Polymer (BFRP) Woven Fabrics and Plaster Mesh (PSM) Reinforced Glued Laminated Oak Lumber
title_short Investigation of Some Physical and Mechanical Properties of Basalt Fiber-Reinforced Polymer (BFRP) Woven Fabrics and Plaster Mesh (PSM) Reinforced Glued Laminated Oak Lumber
title_sort investigation of some physical and mechanical properties of basalt fiber reinforced polymer bfrp woven fabrics and plaster mesh psm reinforced glued laminated oak lumber
topic bending strength
modulus of elasticity
plaster mesh
oak wood
polyurethane adhesive
url https://hrcak.srce.hr/file/470685
work_keys_str_mv AT abdurrahmankaraman investigationofsomephysicalandmechanicalpropertiesofbasaltfiberreinforcedpolymerbfrpwovenfabricsandplastermeshpsmreinforcedgluedlaminatedoaklumber
AT huseyinyesil investigationofsomephysicalandmechanicalpropertiesofbasaltfiberreinforcedpolymerbfrpwovenfabricsandplastermeshpsmreinforcedgluedlaminatedoaklumber