Analytical Analysis of Distribution of Bending Stresses in Layers of Plywood with Numerical Verification/Analiza raspodjele naprezanja u slojevima furnirske ploce pri savijanju, s racunskom provjerom
The study presents methods for accurate estimation of bending stresses in the 3-point flexural bending test of plywood, i.e. a wood-based laminate with an alternate crosswise ply configuration. The characteristic bending strength (MOR) and mean modulus of elasticity (MOE) of standard beech plywood w...
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description | The study presents methods for accurate estimation of bending stresses in the 3-point flexural bending test of plywood, i.e. a wood-based laminate with an alternate crosswise ply configuration. The characteristic bending strength (MOR) and mean modulus of elasticity (MOE) of standard beech plywood was determined using European Standard bending tests EN 310. Correlations were determined between empirically determined bending moduli of the plywood and material moduli of the veneer layer. Calculations were conducted based on the classical plate theory for thin panels comprising the theory of elasticity including the Kirchhoff-Love hypothesis. Rigidity of individual layer was established theoretically in the axial configuration of transformed rigidity matrix values. Numerical laminate models were developed and simulation tests were conducted. Results of experimental and analytical studies were verified using the Finite Element Method (FEM). Analyses were performed in two plywood cross-band arrangement variants. An analysis of the distribution of stresses in individual layers of plywood used an analytical and numerical method assuming the plywood specimen to be a rhombic-anisotropic material. It was found that the bending load capacity of plywood depends on the configuration of individual layers (veneers). Values of stresses originating from bending do not only depend on the distance of the considered plywood layer from the middle layer but also on stiffness in the direction of operating stresses. Bending strength varies in individual directions of the plywood panel. Therefore, the distribution of stresses in individual layers differs from that resulting from the stress distribution for homogeneous isotropic materials. Results are presented in the form of tables, bitmaps, graphs and photographs. The tests were conducted based on the BFU-BU-18 standard beech plywood thickness of 18 mm. Keywords: plywood, stress distribution, veneers, layers, FEM, numerical analysis U radu se opisuju metode tocne procjene naprezanja pri testu savijanja furnirske ploce u tri tocke, tj. pri savijanju laminata na bazi drva s naizmjenicno okomito postavljenim slojevima. Karakteristicni modul loma (MOR) i srednja vrijednost modula elasticnosti (MOE) standardne furnirske ploce od bukovine utvrdeni suprema EN 310. Uocena je povezanost izmedu empirijski odredenih modula na savijanje furnirskih ploca i modula na savijanje slojeva furnira. Izracuni su provedeni na temelju klasicne teorije |
doi_str_mv | 10.5552/drvind.2019.1823 |
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The characteristic bending strength (MOR) and mean modulus of elasticity (MOE) of standard beech plywood was determined using European Standard bending tests EN 310. Correlations were determined between empirically determined bending moduli of the plywood and material moduli of the veneer layer. Calculations were conducted based on the classical plate theory for thin panels comprising the theory of elasticity including the Kirchhoff-Love hypothesis. Rigidity of individual layer was established theoretically in the axial configuration of transformed rigidity matrix values. Numerical laminate models were developed and simulation tests were conducted. Results of experimental and analytical studies were verified using the Finite Element Method (FEM). Analyses were performed in two plywood cross-band arrangement variants. An analysis of the distribution of stresses in individual layers of plywood used an analytical and numerical method assuming the plywood specimen to be a rhombic-anisotropic material. It was found that the bending load capacity of plywood depends on the configuration of individual layers (veneers). Values of stresses originating from bending do not only depend on the distance of the considered plywood layer from the middle layer but also on stiffness in the direction of operating stresses. Bending strength varies in individual directions of the plywood panel. Therefore, the distribution of stresses in individual layers differs from that resulting from the stress distribution for homogeneous isotropic materials. Results are presented in the form of tables, bitmaps, graphs and photographs. The tests were conducted based on the BFU-BU-18 standard beech plywood thickness of 18 mm. Keywords: plywood, stress distribution, veneers, layers, FEM, numerical analysis U radu se opisuju metode tocne procjene naprezanja pri testu savijanja furnirske ploce u tri tocke, tj. pri savijanju laminata na bazi drva s naizmjenicno okomito postavljenim slojevima. Karakteristicni modul loma (MOR) i srednja vrijednost modula elasticnosti (MOE) standardne furnirske ploce od bukovine utvrdeni suprema EN 310. Uocena je povezanost izmedu empirijski odredenih modula na savijanje furnirskih ploca i modula na savijanje slojeva furnira. Izracuni su provedeni na temelju klasicne teorije za tanke ploce, koju cine teorija elasticnosti i Kirchhoff-Loveova hipoteza. Krutost pojedinog sloja utvrdena je teorijski u aksijalnoj konfiguraciji izmijenjenih vrijednosti matrice krutosti. Razvijeni su racunski modeli laminata i provedena su simulacijska ispitivanja. Rezultati eksperimentalnih i analitickih ispitivanja potvrdeni su metodom analize konacnih elemenata (FEM). Analize su provedene na dvije vrste furnirskih ploca s okomito usmjerenim slojevima furnira. Za analizu raspodjele naprezanja u pojedinim slojevima furnira furnirske ploce primijenjena je analiticka i racunska metoda, uz pretpostavku da je uzorak furnirske ploce rombo-anizotropni materijal. Utvrdeno je da kapacitet savijanja furnirske ploce ovisi o konfiguraciji pojedinih slojeva (furnira). Vrijednosti naprezanja koje proizlaze iz savijanja ne ovise samo o udaljenosti promatranog sloja od srednjeg sloja furnirske ploce, vec i o krutosti u smjeru naprezanja. Cvrstoca na savijanje u pojedinim smjerovima furnirske ploce varira. Stoga se raspodjela naprezanja u pojedinim slojevima razlikuje od raspodjele naprezanja za homogene izotropne materijale. Rezultati su prikazani uz pomoc tablica, grafova i fotografija. Ispitivanja su provedena na standardnoj furnirskoj ploci od bukovine debljine 18 mm BFU-BU-18. Kljucne rijeci: furnirska ploca, raspodjela naprezanja, furniri, slojevi, FEM, racunska analiza</description><identifier>ISSN: 0012-6772</identifier><identifier>DOI: 10.5552/drvind.2019.1823</identifier><language>eng</language><publisher>Sveuciliste U Zagrebu</publisher><ispartof>Drvna industrija, 2019-03, Vol.70 (1), p.77</ispartof><rights>COPYRIGHT 2019 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>Makowski, Andrzej</creatorcontrib><title>Analytical Analysis of Distribution of Bending Stresses in Layers of Plywood with Numerical Verification/Analiza raspodjele naprezanja u slojevima furnirske ploce pri savijanju, s racunskom provjerom</title><title>Drvna industrija</title><description>The study presents methods for accurate estimation of bending stresses in the 3-point flexural bending test of plywood, i.e. a wood-based laminate with an alternate crosswise ply configuration. The characteristic bending strength (MOR) and mean modulus of elasticity (MOE) of standard beech plywood was determined using European Standard bending tests EN 310. Correlations were determined between empirically determined bending moduli of the plywood and material moduli of the veneer layer. Calculations were conducted based on the classical plate theory for thin panels comprising the theory of elasticity including the Kirchhoff-Love hypothesis. Rigidity of individual layer was established theoretically in the axial configuration of transformed rigidity matrix values. Numerical laminate models were developed and simulation tests were conducted. Results of experimental and analytical studies were verified using the Finite Element Method (FEM). Analyses were performed in two plywood cross-band arrangement variants. An analysis of the distribution of stresses in individual layers of plywood used an analytical and numerical method assuming the plywood specimen to be a rhombic-anisotropic material. It was found that the bending load capacity of plywood depends on the configuration of individual layers (veneers). Values of stresses originating from bending do not only depend on the distance of the considered plywood layer from the middle layer but also on stiffness in the direction of operating stresses. Bending strength varies in individual directions of the plywood panel. Therefore, the distribution of stresses in individual layers differs from that resulting from the stress distribution for homogeneous isotropic materials. Results are presented in the form of tables, bitmaps, graphs and photographs. The tests were conducted based on the BFU-BU-18 standard beech plywood thickness of 18 mm. Keywords: plywood, stress distribution, veneers, layers, FEM, numerical analysis U radu se opisuju metode tocne procjene naprezanja pri testu savijanja furnirske ploce u tri tocke, tj. pri savijanju laminata na bazi drva s naizmjenicno okomito postavljenim slojevima. Karakteristicni modul loma (MOR) i srednja vrijednost modula elasticnosti (MOE) standardne furnirske ploce od bukovine utvrdeni suprema EN 310. Uocena je povezanost izmedu empirijski odredenih modula na savijanje furnirskih ploca i modula na savijanje slojeva furnira. Izracuni su provedeni na temelju klasicne teorije za tanke ploce, koju cine teorija elasticnosti i Kirchhoff-Loveova hipoteza. Krutost pojedinog sloja utvrdena je teorijski u aksijalnoj konfiguraciji izmijenjenih vrijednosti matrice krutosti. Razvijeni su racunski modeli laminata i provedena su simulacijska ispitivanja. Rezultati eksperimentalnih i analitickih ispitivanja potvrdeni su metodom analize konacnih elemenata (FEM). Analize su provedene na dvije vrste furnirskih ploca s okomito usmjerenim slojevima furnira. Za analizu raspodjele naprezanja u pojedinim slojevima furnira furnirske ploce primijenjena je analiticka i racunska metoda, uz pretpostavku da je uzorak furnirske ploce rombo-anizotropni materijal. Utvrdeno je da kapacitet savijanja furnirske ploce ovisi o konfiguraciji pojedinih slojeva (furnira). Vrijednosti naprezanja koje proizlaze iz savijanja ne ovise samo o udaljenosti promatranog sloja od srednjeg sloja furnirske ploce, vec i o krutosti u smjeru naprezanja. Cvrstoca na savijanje u pojedinim smjerovima furnirske ploce varira. Stoga se raspodjela naprezanja u pojedinim slojevima razlikuje od raspodjele naprezanja za homogene izotropne materijale. Rezultati su prikazani uz pomoc tablica, grafova i fotografija. Ispitivanja su provedena na standardnoj furnirskoj ploci od bukovine debljine 18 mm BFU-BU-18. Kljucne rijeci: furnirska ploca, raspodjela naprezanja, furniri, slojevi, FEM, racunska analiza</description><issn>0012-6772</issn><fulltext>true</fulltext><rsrctype>article</rsrctype><creationdate>2019</creationdate><recordtype>article</recordtype><sourceid/><recordid>eNqVTEtOwzAQ9QIkymfPcg5A08QhDVmWn1gghARii0wyKZM6duRxUqUX5Fo4ERdAI817M-8jxGUSR1mWyVXlBjJVJOOkiJIbmR6JRRwncrnOc3kiTpmbOF4H8XohfjZG6dFTqTTMlInB1nBP7B199Z6sme5bNBWZLbx5h8zIQAae1Yhudr_qcW9tBXvy3_DSt-jmwo-AdWBTyWpqp4MCp7izVYMawajO4UGZRkEPrG2DA7UK6t4ZcrxD6LQtw3YErAZqgrO_Ag4VZW94Z9sg2aFBZ9tzcVwrzXjxh2cienx4v3tabpXGTzK19SEVpsKWSmuwpvDfZEUus1QWSfrvwC_YPnqW</recordid><startdate>20190301</startdate><enddate>20190301</enddate><creator>Makowski, Andrzej</creator><general>Sveuciliste U Zagrebu</general><scope/></search><sort><creationdate>20190301</creationdate><title>Analytical Analysis of Distribution of Bending Stresses in Layers of Plywood with Numerical Verification/Analiza raspodjele naprezanja u slojevima furnirske ploce pri savijanju, s racunskom provjerom</title><author>Makowski, Andrzej</author></sort><facets><frbrtype>5</frbrtype><frbrgroupid>cdi_FETCH-gale_infotracacademiconefile_A5972532913</frbrgroupid><rsrctype>articles</rsrctype><prefilter>articles</prefilter><language>eng</language><creationdate>2019</creationdate><toplevel>peer_reviewed</toplevel><toplevel>online_resources</toplevel><creatorcontrib>Makowski, Andrzej</creatorcontrib><jtitle>Drvna industrija</jtitle></facets><delivery><delcategory>Remote Search Resource</delcategory><fulltext>fulltext</fulltext></delivery><addata><au>Makowski, Andrzej</au><format>journal</format><genre>article</genre><ristype>JOUR</ristype><atitle>Analytical Analysis of Distribution of Bending Stresses in Layers of Plywood with Numerical Verification/Analiza raspodjele naprezanja u slojevima furnirske ploce pri savijanju, s racunskom provjerom</atitle><jtitle>Drvna industrija</jtitle><date>2019-03-01</date><risdate>2019</risdate><volume>70</volume><issue>1</issue><spage>77</spage><pages>77-</pages><issn>0012-6772</issn><abstract>The study presents methods for accurate estimation of bending stresses in the 3-point flexural bending test of plywood, i.e. a wood-based laminate with an alternate crosswise ply configuration. The characteristic bending strength (MOR) and mean modulus of elasticity (MOE) of standard beech plywood was determined using European Standard bending tests EN 310. Correlations were determined between empirically determined bending moduli of the plywood and material moduli of the veneer layer. Calculations were conducted based on the classical plate theory for thin panels comprising the theory of elasticity including the Kirchhoff-Love hypothesis. Rigidity of individual layer was established theoretically in the axial configuration of transformed rigidity matrix values. Numerical laminate models were developed and simulation tests were conducted. Results of experimental and analytical studies were verified using the Finite Element Method (FEM). Analyses were performed in two plywood cross-band arrangement variants. An analysis of the distribution of stresses in individual layers of plywood used an analytical and numerical method assuming the plywood specimen to be a rhombic-anisotropic material. It was found that the bending load capacity of plywood depends on the configuration of individual layers (veneers). Values of stresses originating from bending do not only depend on the distance of the considered plywood layer from the middle layer but also on stiffness in the direction of operating stresses. Bending strength varies in individual directions of the plywood panel. Therefore, the distribution of stresses in individual layers differs from that resulting from the stress distribution for homogeneous isotropic materials. Results are presented in the form of tables, bitmaps, graphs and photographs. The tests were conducted based on the BFU-BU-18 standard beech plywood thickness of 18 mm. Keywords: plywood, stress distribution, veneers, layers, FEM, numerical analysis U radu se opisuju metode tocne procjene naprezanja pri testu savijanja furnirske ploce u tri tocke, tj. pri savijanju laminata na bazi drva s naizmjenicno okomito postavljenim slojevima. Karakteristicni modul loma (MOR) i srednja vrijednost modula elasticnosti (MOE) standardne furnirske ploce od bukovine utvrdeni suprema EN 310. Uocena je povezanost izmedu empirijski odredenih modula na savijanje furnirskih ploca i modula na savijanje slojeva furnira. Izracuni su provedeni na temelju klasicne teorije za tanke ploce, koju cine teorija elasticnosti i Kirchhoff-Loveova hipoteza. Krutost pojedinog sloja utvrdena je teorijski u aksijalnoj konfiguraciji izmijenjenih vrijednosti matrice krutosti. Razvijeni su racunski modeli laminata i provedena su simulacijska ispitivanja. Rezultati eksperimentalnih i analitickih ispitivanja potvrdeni su metodom analize konacnih elemenata (FEM). Analize su provedene na dvije vrste furnirskih ploca s okomito usmjerenim slojevima furnira. Za analizu raspodjele naprezanja u pojedinim slojevima furnira furnirske ploce primijenjena je analiticka i racunska metoda, uz pretpostavku da je uzorak furnirske ploce rombo-anizotropni materijal. Utvrdeno je da kapacitet savijanja furnirske ploce ovisi o konfiguraciji pojedinih slojeva (furnira). Vrijednosti naprezanja koje proizlaze iz savijanja ne ovise samo o udaljenosti promatranog sloja od srednjeg sloja furnirske ploce, vec i o krutosti u smjeru naprezanja. Cvrstoca na savijanje u pojedinim smjerovima furnirske ploce varira. Stoga se raspodjela naprezanja u pojedinim slojevima razlikuje od raspodjele naprezanja za homogene izotropne materijale. Rezultati su prikazani uz pomoc tablica, grafova i fotografija. Ispitivanja su provedena na standardnoj furnirskoj ploci od bukovine debljine 18 mm BFU-BU-18. Kljucne rijeci: furnirska ploca, raspodjela naprezanja, furniri, slojevi, FEM, racunska analiza</abstract><pub>Sveuciliste U Zagrebu</pub><doi>10.5552/drvind.2019.1823</doi></addata></record> |
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title | Analytical Analysis of Distribution of Bending Stresses in Layers of Plywood with Numerical Verification/Analiza raspodjele naprezanja u slojevima furnirske ploce pri savijanju, s racunskom provjerom |
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