Heterogeneous upper-bound finite element limit analysis of masonry walls out-of-plane loaded
A heterogeneous approach for FE upper bound limit analyses of out-of-plane loaded masonry panels is presented. Under the assumption of associated plasticity for the constituent materials, mortar joints are reduced to interfaces with a Mohr–Coulomb failure criterion with tension cut-off and cap in co...
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Veröffentlicht in: | Computational mechanics 2007-11, Vol.40 (6), p.911-931 |
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description | A heterogeneous approach for FE upper bound limit analyses of out-of-plane loaded masonry panels is presented. Under the assumption of associated plasticity for the constituent materials, mortar joints are reduced to interfaces with a Mohr–Coulomb failure criterion with tension cut-off and cap in compression, whereas for bricks both limited and unlimited strength are taken into account. At each interface, plastic dissipation can occur as a combination of out-of-plane shear, bending and torsion. In order to test the reliability of the model proposed, several examples of dry-joint panels out-of-plane loaded tested at the University of Calabria (Italy) are discussed. Numerical results are compared with experimental data for three different series of walls at different values of the in-plane compressive vertical loads applied. The comparisons show that reliable predictions of both collapse loads and failure mechanisms can be obtained by means of the numerical procedure employed. |
doi_str_mv | 10.1007/s00466-006-0151-9 |
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A. ; Olivito, R. S. ; Tralli, A.</creator><creatorcontrib>Milani, G. ; Zuccarello, F. A. ; Olivito, R. S. ; Tralli, A.</creatorcontrib><description>A heterogeneous approach for FE upper bound limit analyses of out-of-plane loaded masonry panels is presented. Under the assumption of associated plasticity for the constituent materials, mortar joints are reduced to interfaces with a Mohr–Coulomb failure criterion with tension cut-off and cap in compression, whereas for bricks both limited and unlimited strength are taken into account. At each interface, plastic dissipation can occur as a combination of out-of-plane shear, bending and torsion. In order to test the reliability of the model proposed, several examples of dry-joint panels out-of-plane loaded tested at the University of Calabria (Italy) are discussed. Numerical results are compared with experimental data for three different series of walls at different values of the in-plane compressive vertical loads applied. The comparisons show that reliable predictions of both collapse loads and failure mechanisms can be obtained by means of the numerical procedure employed.</description><identifier>ISSN: 0178-7675</identifier><identifier>EISSN: 1432-0924</identifier><identifier>DOI: 10.1007/s00466-006-0151-9</identifier><language>eng</language><publisher>Heidelberg: Springer Nature B.V</publisher><subject>Collapse load ; Compressive strength ; Failure mechanisms ; Finite element method ; Limit analysis ; Masonry ; Mohr-Coulomb theory ; Mortars (material) ; Panels ; Upper bounds ; Vertical loads ; Walls</subject><ispartof>Computational mechanics, 2007-11, Vol.40 (6), p.911-931</ispartof><rights>Computational Mechanics is a copyright of Springer, (2006). 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S.</creatorcontrib><creatorcontrib>Tralli, A.</creatorcontrib><title>Heterogeneous upper-bound finite element limit analysis of masonry walls out-of-plane loaded</title><title>Computational mechanics</title><description>A heterogeneous approach for FE upper bound limit analyses of out-of-plane loaded masonry panels is presented. Under the assumption of associated plasticity for the constituent materials, mortar joints are reduced to interfaces with a Mohr–Coulomb failure criterion with tension cut-off and cap in compression, whereas for bricks both limited and unlimited strength are taken into account. At each interface, plastic dissipation can occur as a combination of out-of-plane shear, bending and torsion. In order to test the reliability of the model proposed, several examples of dry-joint panels out-of-plane loaded tested at the University of Calabria (Italy) are discussed. Numerical results are compared with experimental data for three different series of walls at different values of the in-plane compressive vertical loads applied. The comparisons show that reliable predictions of both collapse loads and failure mechanisms can be obtained by means of the numerical procedure employed.</description><subject>Collapse load</subject><subject>Compressive strength</subject><subject>Failure mechanisms</subject><subject>Finite element method</subject><subject>Limit analysis</subject><subject>Masonry</subject><subject>Mohr-Coulomb theory</subject><subject>Mortars (material)</subject><subject>Panels</subject><subject>Upper bounds</subject><subject>Vertical loads</subject><subject>Walls</subject><issn>0178-7675</issn><issn>1432-0924</issn><fulltext>true</fulltext><rsrctype>article</rsrctype><creationdate>2007</creationdate><recordtype>article</recordtype><sourceid>BENPR</sourceid><recordid>eNotkMFKxDAURYMoOI5-gLuA62he0ibtUgZ1hAE3uhNCJn2RDmlTkxaZvzcyLi4PLofH5RByC_weONcPmfNKKcZ5CdTA2jOygkoKxltRnZMVB90wrXR9Sa5yPvACNbJekc8tzpjiF44Yl0yXacLE9nEZO-r7sZ-RYsABx5mGfuhnakcbjrnPNHo62BzHdKQ_NoRSLDOLnk3BjkhDtB121-TC25Dx5v-uycfz0_tmy3ZvL6-bxx1zQsuZuZajBMW1q1tfQ9UpIWXdeaUru3cApUWlQODeVZ3VUoL3nW1BKHSuUSDX5O70d0rxe8E8m0NcUlmajRCqaFC84YWCE-VSzDmhN1PqB5uOBrj5k2hOEk2RaP4kmlb-AipLZZ0</recordid><startdate>20071101</startdate><enddate>20071101</enddate><creator>Milani, G.</creator><creator>Zuccarello, F. A.</creator><creator>Olivito, R. S.</creator><creator>Tralli, A.</creator><general>Springer Nature B.V</general><scope>AAYXX</scope><scope>CITATION</scope><scope>8FE</scope><scope>8FG</scope><scope>ABJCF</scope><scope>AFKRA</scope><scope>BENPR</scope><scope>BGLVJ</scope><scope>CCPQU</scope><scope>DWQXO</scope><scope>HCIFZ</scope><scope>L6V</scope><scope>M7S</scope><scope>PQEST</scope><scope>PQQKQ</scope><scope>PQUKI</scope><scope>PRINS</scope><scope>PTHSS</scope></search><sort><creationdate>20071101</creationdate><title>Heterogeneous upper-bound finite element limit analysis of masonry walls out-of-plane loaded</title><author>Milani, G. ; Zuccarello, F. A. ; Olivito, R. 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A.</au><au>Olivito, R. S.</au><au>Tralli, A.</au><format>journal</format><genre>article</genre><ristype>JOUR</ristype><atitle>Heterogeneous upper-bound finite element limit analysis of masonry walls out-of-plane loaded</atitle><jtitle>Computational mechanics</jtitle><date>2007-11-01</date><risdate>2007</risdate><volume>40</volume><issue>6</issue><spage>911</spage><epage>931</epage><pages>911-931</pages><issn>0178-7675</issn><eissn>1432-0924</eissn><abstract>A heterogeneous approach for FE upper bound limit analyses of out-of-plane loaded masonry panels is presented. Under the assumption of associated plasticity for the constituent materials, mortar joints are reduced to interfaces with a Mohr–Coulomb failure criterion with tension cut-off and cap in compression, whereas for bricks both limited and unlimited strength are taken into account. At each interface, plastic dissipation can occur as a combination of out-of-plane shear, bending and torsion. In order to test the reliability of the model proposed, several examples of dry-joint panels out-of-plane loaded tested at the University of Calabria (Italy) are discussed. Numerical results are compared with experimental data for three different series of walls at different values of the in-plane compressive vertical loads applied. The comparisons show that reliable predictions of both collapse loads and failure mechanisms can be obtained by means of the numerical procedure employed.</abstract><cop>Heidelberg</cop><pub>Springer Nature B.V</pub><doi>10.1007/s00466-006-0151-9</doi><tpages>21</tpages></addata></record> |
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subjects | Collapse load Compressive strength Failure mechanisms Finite element method Limit analysis Masonry Mohr-Coulomb theory Mortars (material) Panels Upper bounds Vertical loads Walls |
title | Heterogeneous upper-bound finite element limit analysis of masonry walls out-of-plane loaded |
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