Tensile Performance of Traditional and Modern Corner Joints in Wooden Structures/Vlacna svojstva tradicionalnih i modernih kutnih spojeva u drvnim konstrukcijama
Corner joints are critical points of wooden structures not only in furniture construction but also in traditional wooden architecture, especially in constructions without nails. This study was performed to determine the effects of particular factors such as the axis of assembly, types of material, a...
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description | Corner joints are critical points of wooden structures not only in furniture construction but also in traditional wooden architecture, especially in constructions without nails. This study was performed to determine the effects of particular factors such as the axis of assembly, types of material, and adhesive on the tensile performance of various modern and traditional types of wooden corner joints. For this purpose, various corner joint specimens were prepared with three different wooden materials: Scots pine fPinus sylvestris Lipsky) wood, Lombardy poplar (Populus nigra Lipsky) wood, and Medium Density Fibreboard (MDF) using two different adhesives: polyvinyl acetate (PVAc) and polyurethane (Desmodur-VTKA) glues; and five different wooden joint types: dowel, tongue-and-groove, half-blind dovetail, screw, and eccentric screw joints. Tensile performance tests, vertical and parallel to the axis of assembly, were carried out according to ASTM D 1037 guidelines. Experiments indicated that, while the tensile performance of MDF specimen connected with a screw and PVAc adhesive was the highest under loading parallel to the axis of assembly (4592 N); it was the lowest under loading parallel to the axis of assembly in MDF specimen connected with tongue-and-groove joint and PVAc adhesive (260 N), respectively. As a result, it may be advantageous to apply screwed joints in corners for high tensile strength in parallel to the axis of the assembly. KEYWORDS: tensile performance; construction materials; corner joints; wooden joints Kutni su spojevi kriticne tocke drvnih konstrukcija ne samo u proizvodnji namjestaja nego i u tradicionalnoj drvnoj arhitekturi, posebice u konstrukcijama bez cavala. Ovo je istrazivanje provedeno kako bi se utvrdili ucinci specificnih cimbenika kao sto su os montaze, vrsta materijala i vrsta Ijepila na vlacna svojstva razlicitih modernih i tradicionalnih vrsta drvnih kutnih spojeva. Za tu su svrhu pripremljeni razliciti uzorci kutnih spojeva od tri vrste drvnog materijala: od drva bijelog bora (Pinus sylvestris Lipsky), drva lombardijske topole (Populus nigra Lipsky) i od srednje guste ploce vlaknatice (MDF), uz uporabu dvaju razlicitih Ijepila: polivinilacetatnoga (PVAc) i poliuretanskoga (Desmodur-VTKA) te uz pet razlicitih vrsta drvnih spojeva: mozdanika, pera i utora, poluzatvorenog lastina repa, vijka i ekscentra. Ispitivanja vlacnih svojstava okomito i paralelno s osi montaze provedena su u skladu s normom ASTM D 103 7. Rezultati su |
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This study was performed to determine the effects of particular factors such as the axis of assembly, types of material, and adhesive on the tensile performance of various modern and traditional types of wooden corner joints. For this purpose, various corner joint specimens were prepared with three different wooden materials: Scots pine fPinus sylvestris Lipsky) wood, Lombardy poplar (Populus nigra Lipsky) wood, and Medium Density Fibreboard (MDF) using two different adhesives: polyvinyl acetate (PVAc) and polyurethane (Desmodur-VTKA) glues; and five different wooden joint types: dowel, tongue-and-groove, half-blind dovetail, screw, and eccentric screw joints. Tensile performance tests, vertical and parallel to the axis of assembly, were carried out according to ASTM D 1037 guidelines. Experiments indicated that, while the tensile performance of MDF specimen connected with a screw and PVAc adhesive was the highest under loading parallel to the axis of assembly (4592 N); it was the lowest under loading parallel to the axis of assembly in MDF specimen connected with tongue-and-groove joint and PVAc adhesive (260 N), respectively. As a result, it may be advantageous to apply screwed joints in corners for high tensile strength in parallel to the axis of the assembly. KEYWORDS: tensile performance; construction materials; corner joints; wooden joints Kutni su spojevi kriticne tocke drvnih konstrukcija ne samo u proizvodnji namjestaja nego i u tradicionalnoj drvnoj arhitekturi, posebice u konstrukcijama bez cavala. Ovo je istrazivanje provedeno kako bi se utvrdili ucinci specificnih cimbenika kao sto su os montaze, vrsta materijala i vrsta Ijepila na vlacna svojstva razlicitih modernih i tradicionalnih vrsta drvnih kutnih spojeva. Za tu su svrhu pripremljeni razliciti uzorci kutnih spojeva od tri vrste drvnog materijala: od drva bijelog bora (Pinus sylvestris Lipsky), drva lombardijske topole (Populus nigra Lipsky) i od srednje guste ploce vlaknatice (MDF), uz uporabu dvaju razlicitih Ijepila: polivinilacetatnoga (PVAc) i poliuretanskoga (Desmodur-VTKA) te uz pet razlicitih vrsta drvnih spojeva: mozdanika, pera i utora, poluzatvorenog lastina repa, vijka i ekscentra. Ispitivanja vlacnih svojstava okomito i paralelno s osi montaze provedena su u skladu s normom ASTM D 103 7. Rezultati su pokazali da su najbolja vlacna svojstva MDF uzorka spojenoga vijkom i PVAc Ijepilom pod opterecenjem paralelno s osi montaze (4592 N), a najlosijima su se pokazala vlacna svojstva MDF uzorka spojenoga perom i utorom te PVAc Ijepilom pod opterecenjem paralelno s osi montaze (260 N). Prema tome, primjena vijaka u kutnim spojevima moze biti dobar izbor zapostizanje visoke vlacne cvrstoce paralelno s osi montaze. KLJUCNE RIJECI: vlacna svojstva; konstrukcijski materijali; kutni spojevi; drvni spojevi</description><identifier>ISSN: 0012-6772</identifier><identifier>DOI: 10.5552/drvind.2022.2106</identifier><language>eng</language><publisher>Sveuciliste U Zagrebu</publisher><ispartof>Drvna industrija, 2022-03, Vol.73 (1), p.69</ispartof><rights>COPYRIGHT 2022 Sveuciliste U Zagrebu</rights><lds50>peer_reviewed</lds50><woscitedreferencessubscribed>false</woscitedreferencessubscribed></display><links><openurl>$$Topenurl_article</openurl><openurlfulltext>$$Topenurlfull_article</openurlfulltext><thumbnail>$$Tsyndetics_thumb_exl</thumbnail><link.rule.ids>314,780,784,864,27924,27925</link.rule.ids></links><search><creatorcontrib>Atar, Musa</creatorcontrib><creatorcontrib>Gode, Fazli</creatorcontrib><creatorcontrib>Kucuktuvek, Mustafa</creatorcontrib><creatorcontrib>Akan, Asli Er</creatorcontrib><creatorcontrib>Ormecioglu, Hilal Tugba</creatorcontrib><creatorcontrib>Keskin, Hakan</creatorcontrib><title>Tensile Performance of Traditional and Modern Corner Joints in Wooden Structures/Vlacna svojstva tradicionalnih i modernih kutnih spojeva u drvnim konstrukcijama</title><title>Drvna industrija</title><description>Corner joints are critical points of wooden structures not only in furniture construction but also in traditional wooden architecture, especially in constructions without nails. This study was performed to determine the effects of particular factors such as the axis of assembly, types of material, and adhesive on the tensile performance of various modern and traditional types of wooden corner joints. For this purpose, various corner joint specimens were prepared with three different wooden materials: Scots pine fPinus sylvestris Lipsky) wood, Lombardy poplar (Populus nigra Lipsky) wood, and Medium Density Fibreboard (MDF) using two different adhesives: polyvinyl acetate (PVAc) and polyurethane (Desmodur-VTKA) glues; and five different wooden joint types: dowel, tongue-and-groove, half-blind dovetail, screw, and eccentric screw joints. Tensile performance tests, vertical and parallel to the axis of assembly, were carried out according to ASTM D 1037 guidelines. Experiments indicated that, while the tensile performance of MDF specimen connected with a screw and PVAc adhesive was the highest under loading parallel to the axis of assembly (4592 N); it was the lowest under loading parallel to the axis of assembly in MDF specimen connected with tongue-and-groove joint and PVAc adhesive (260 N), respectively. As a result, it may be advantageous to apply screwed joints in corners for high tensile strength in parallel to the axis of the assembly. KEYWORDS: tensile performance; construction materials; corner joints; wooden joints Kutni su spojevi kriticne tocke drvnih konstrukcija ne samo u proizvodnji namjestaja nego i u tradicionalnoj drvnoj arhitekturi, posebice u konstrukcijama bez cavala. Ovo je istrazivanje provedeno kako bi se utvrdili ucinci specificnih cimbenika kao sto su os montaze, vrsta materijala i vrsta Ijepila na vlacna svojstva razlicitih modernih i tradicionalnih vrsta drvnih kutnih spojeva. Za tu su svrhu pripremljeni razliciti uzorci kutnih spojeva od tri vrste drvnog materijala: od drva bijelog bora (Pinus sylvestris Lipsky), drva lombardijske topole (Populus nigra Lipsky) i od srednje guste ploce vlaknatice (MDF), uz uporabu dvaju razlicitih Ijepila: polivinilacetatnoga (PVAc) i poliuretanskoga (Desmodur-VTKA) te uz pet razlicitih vrsta drvnih spojeva: mozdanika, pera i utora, poluzatvorenog lastina repa, vijka i ekscentra. Ispitivanja vlacnih svojstava okomito i paralelno s osi montaze provedena su u skladu s normom ASTM D 103 7. Rezultati su pokazali da su najbolja vlacna svojstva MDF uzorka spojenoga vijkom i PVAc Ijepilom pod opterecenjem paralelno s osi montaze (4592 N), a najlosijima su se pokazala vlacna svojstva MDF uzorka spojenoga perom i utorom te PVAc Ijepilom pod opterecenjem paralelno s osi montaze (260 N). Prema tome, primjena vijaka u kutnim spojevima moze biti dobar izbor zapostizanje visoke vlacne cvrstoce paralelno s osi montaze. KLJUCNE RIJECI: vlacna svojstva; konstrukcijski materijali; kutni spojevi; drvni spojevi</description><issn>0012-6772</issn><fulltext>true</fulltext><rsrctype>article</rsrctype><creationdate>2022</creationdate><recordtype>article</recordtype><sourceid/><recordid>eNqVj91KxEAMhedCwfXn3su8wHans9vWXsqiiCAIFr1chmmq6U8iM9O-j2_q7OILSC5OICffSZS6zXVWFIXZtH4hbjOjjclMrssztdI6N-uyqsyFugyh17rUeb1bqZ8GOdCI8Iq-Ez9ZdgjSQeNtS5GE7QiWW3iRFj3DXjyjh2chjgGI4UPSgOEt-tnF2WPYvI_WsYWwSB_iYiEeSe5EYvoCgumESu0wx6OEb-kxGWdIdzNNMAiHxBsc9Xay1-q8s2PAmz-9UtnjQ7N_Wn_aEQ_EnaQEl6rFiZwwdumdw32lta7vtvVu---FX4iWbDE</recordid><startdate>20220301</startdate><enddate>20220301</enddate><creator>Atar, Musa</creator><creator>Gode, Fazli</creator><creator>Kucuktuvek, Mustafa</creator><creator>Akan, Asli Er</creator><creator>Ormecioglu, Hilal Tugba</creator><creator>Keskin, Hakan</creator><general>Sveuciliste U Zagrebu</general><scope/></search><sort><creationdate>20220301</creationdate><title>Tensile Performance of Traditional and Modern Corner Joints in Wooden Structures/Vlacna svojstva tradicionalnih i modernih kutnih spojeva u drvnim konstrukcijama</title><author>Atar, Musa ; Gode, Fazli ; Kucuktuvek, Mustafa ; Akan, Asli Er ; Ormecioglu, Hilal Tugba ; Keskin, Hakan</author></sort><facets><frbrtype>5</frbrtype><frbrgroupid>cdi_FETCH-gale_infotracacademiconefile_A7000983943</frbrgroupid><rsrctype>articles</rsrctype><prefilter>articles</prefilter><language>eng</language><creationdate>2022</creationdate><toplevel>peer_reviewed</toplevel><toplevel>online_resources</toplevel><creatorcontrib>Atar, Musa</creatorcontrib><creatorcontrib>Gode, Fazli</creatorcontrib><creatorcontrib>Kucuktuvek, Mustafa</creatorcontrib><creatorcontrib>Akan, Asli Er</creatorcontrib><creatorcontrib>Ormecioglu, Hilal Tugba</creatorcontrib><creatorcontrib>Keskin, Hakan</creatorcontrib><jtitle>Drvna industrija</jtitle></facets><delivery><delcategory>Remote Search Resource</delcategory><fulltext>fulltext</fulltext></delivery><addata><au>Atar, Musa</au><au>Gode, Fazli</au><au>Kucuktuvek, Mustafa</au><au>Akan, Asli Er</au><au>Ormecioglu, Hilal Tugba</au><au>Keskin, Hakan</au><format>journal</format><genre>article</genre><ristype>JOUR</ristype><atitle>Tensile Performance of Traditional and Modern Corner Joints in Wooden Structures/Vlacna svojstva tradicionalnih i modernih kutnih spojeva u drvnim konstrukcijama</atitle><jtitle>Drvna industrija</jtitle><date>2022-03-01</date><risdate>2022</risdate><volume>73</volume><issue>1</issue><spage>69</spage><pages>69-</pages><issn>0012-6772</issn><abstract>Corner joints are critical points of wooden structures not only in furniture construction but also in traditional wooden architecture, especially in constructions without nails. This study was performed to determine the effects of particular factors such as the axis of assembly, types of material, and adhesive on the tensile performance of various modern and traditional types of wooden corner joints. For this purpose, various corner joint specimens were prepared with three different wooden materials: Scots pine fPinus sylvestris Lipsky) wood, Lombardy poplar (Populus nigra Lipsky) wood, and Medium Density Fibreboard (MDF) using two different adhesives: polyvinyl acetate (PVAc) and polyurethane (Desmodur-VTKA) glues; and five different wooden joint types: dowel, tongue-and-groove, half-blind dovetail, screw, and eccentric screw joints. Tensile performance tests, vertical and parallel to the axis of assembly, were carried out according to ASTM D 1037 guidelines. Experiments indicated that, while the tensile performance of MDF specimen connected with a screw and PVAc adhesive was the highest under loading parallel to the axis of assembly (4592 N); it was the lowest under loading parallel to the axis of assembly in MDF specimen connected with tongue-and-groove joint and PVAc adhesive (260 N), respectively. As a result, it may be advantageous to apply screwed joints in corners for high tensile strength in parallel to the axis of the assembly. KEYWORDS: tensile performance; construction materials; corner joints; wooden joints Kutni su spojevi kriticne tocke drvnih konstrukcija ne samo u proizvodnji namjestaja nego i u tradicionalnoj drvnoj arhitekturi, posebice u konstrukcijama bez cavala. Ovo je istrazivanje provedeno kako bi se utvrdili ucinci specificnih cimbenika kao sto su os montaze, vrsta materijala i vrsta Ijepila na vlacna svojstva razlicitih modernih i tradicionalnih vrsta drvnih kutnih spojeva. Za tu su svrhu pripremljeni razliciti uzorci kutnih spojeva od tri vrste drvnog materijala: od drva bijelog bora (Pinus sylvestris Lipsky), drva lombardijske topole (Populus nigra Lipsky) i od srednje guste ploce vlaknatice (MDF), uz uporabu dvaju razlicitih Ijepila: polivinilacetatnoga (PVAc) i poliuretanskoga (Desmodur-VTKA) te uz pet razlicitih vrsta drvnih spojeva: mozdanika, pera i utora, poluzatvorenog lastina repa, vijka i ekscentra. Ispitivanja vlacnih svojstava okomito i paralelno s osi montaze provedena su u skladu s normom ASTM D 103 7. Rezultati su pokazali da su najbolja vlacna svojstva MDF uzorka spojenoga vijkom i PVAc Ijepilom pod opterecenjem paralelno s osi montaze (4592 N), a najlosijima su se pokazala vlacna svojstva MDF uzorka spojenoga perom i utorom te PVAc Ijepilom pod opterecenjem paralelno s osi montaze (260 N). Prema tome, primjena vijaka u kutnim spojevima moze biti dobar izbor zapostizanje visoke vlacne cvrstoce paralelno s osi montaze. KLJUCNE RIJECI: vlacna svojstva; konstrukcijski materijali; kutni spojevi; drvni spojevi</abstract><pub>Sveuciliste U Zagrebu</pub><doi>10.5552/drvind.2022.2106</doi></addata></record> |
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title | Tensile Performance of Traditional and Modern Corner Joints in Wooden Structures/Vlacna svojstva tradicionalnih i modernih kutnih spojeva u drvnim konstrukcijama |
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