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dc.creatorGarcía J.M.spa
dc.creatorBonett R.L.spa
dc.creatorSchultz A.E.spa
dc.creatorLedezma C.spa
dc.date.accessioned2017-12-19T19:36:48Z
dc.date.available2017-12-19T19:36:48Z
dc.date.created2017
dc.identifier.issn1410296
dc.identifier.urihttp://hdl.handle.net/11407/4325
dc.description.abstractAccurate estimation of tendon stress is crucial for calculating the flexural capacity of post-tensioned masonry members. Tendon stresses in bonded elements may be calculated based on strain-compatibility. For unbonded tendons, stresses depend on the relative displacement between the tendon's anchor points, and strain-compatibility is not totally applicable to calculate stresses. Masonry codes in some countries provide equations for unbonded, post-tensioned members that are based on modified strain-compatibility approaches for calculating stress increases in unbonded tendons at ultimate; some of these equations required calibration using statistical evaluation of experimental results and finite-element analysis. A new approach to calculate tendon stress increase, based on the theory of beam deformation, in the elastic zone, and a plastic hinge with a geometric curvature distribution in the inelastic region, is reported here for the calculation of the stress increase at ultimate. To compare the accuracy of code equations and that of the proposed methodology, a database of test results for post-tensioned, simply supported, flexure critical masonry beams has been used. This comparison shows that the proposed equation provides an accurate prediction of tendon stress at ultimate for post-tensioned masonry beams. © 2017 Elsevier Ltdeng
dc.language.isoeng
dc.publisherElsevier Ltdspa
dc.relation.isversionofhttps://www.scopus.com/inward/record.uri?eid=2-s2.0-85014881323&doi=10.1016%2fj.engstruct.2017.01.046&partnerID=40&md5=f1bd19dbdc3d468c18881b2597687377spa
dc.sourceScopusspa
dc.titleStress at ultimate in unbonded tendons for ungrouted post-tensioned masonry beamsspa
dc.typeArticleeng
dc.rights.accessrightsinfo:eu-repo/semantics/restrictedAccess
dc.contributor.affiliationGarcía, J.M., Civil Engineering Department, Faculty of Engineering, University of Medellin, Medellin, Colombiaspa
dc.contributor.affiliationBonett, R.L., Civil Engineering Department, Faculty of Engineering, University of Medellin, Medellin, Colombiaspa
dc.contributor.affiliationSchultz, A.E., Civil, Environmental and Geo- Engineering, Twin Cities, University of Minnesota, Minneapolis, United Statesspa
dc.contributor.affiliationLedezma, C., Structural and Geotechnical Engineering Department, Escuela de Ingeniería, Pontificia Universidad Católica de Chile, Santiago, Chilespa
dc.identifier.doi10.1016/j.engstruct.2017.01.046
dc.subject.keywordBeamseng
dc.subject.keywordMasonryeng
dc.subject.keywordPosttensioningeng
dc.subject.keywordStresseng
dc.subject.keywordUnbonded tendoneng
dc.subject.keywordFinite element methodeng
dc.subject.keywordMasonry materialseng
dc.subject.keywordStresseseng
dc.subject.keywordAccurate estimationeng
dc.subject.keywordBeamseng
dc.subject.keywordMasonryeng
dc.subject.keywordPosttensioningeng
dc.subject.keywordRelative displacementeng
dc.subject.keywordStatistical evaluationeng
dc.subject.keywordStrain compatibilityeng
dc.subject.keywordUnbonded tendonseng
dc.subject.keywordTendonseng
dc.publisher.facultyFacultad de Ingenieríasspa
dc.abstractAccurate estimation of tendon stress is crucial for calculating the flexural capacity of post-tensioned masonry members. Tendon stresses in bonded elements may be calculated based on strain-compatibility. For unbonded tendons, stresses depend on the relative displacement between the tendon's anchor points, and strain-compatibility is not totally applicable to calculate stresses. Masonry codes in some countries provide equations for unbonded, post-tensioned members that are based on modified strain-compatibility approaches for calculating stress increases in unbonded tendons at ultimate; some of these equations required calibration using statistical evaluation of experimental results and finite-element analysis. A new approach to calculate tendon stress increase, based on the theory of beam deformation, in the elastic zone, and a plastic hinge with a geometric curvature distribution in the inelastic region, is reported here for the calculation of the stress increase at ultimate. To compare the accuracy of code equations and that of the proposed methodology, a database of test results for post-tensioned, simply supported, flexure critical masonry beams has been used. This comparison shows that the proposed equation provides an accurate prediction of tendon stress at ultimate for post-tensioned masonry beams. © 2017 Elsevier Ltdeng
dc.creator.affiliationCivil Engineering Department, Faculty of Engineering, University of Medellin, Medellin, Colombiaspa
dc.creator.affiliationCivil, Environmental and Geo- Engineering, Twin Cities, University of Minnesota, Minneapolis, United Statesspa
dc.creator.affiliationStructural and Geotechnical Engineering Department, Escuela de Ingeniería, Pontificia Universidad Católica de Chile, Santiago, Chilespa
dc.relation.ispartofesEngineering Structuresspa
dc.relation.referencesOzkul, O., Nassif, H., Tanchan, P., Harajli, M., Rational approach for predicting stress in beams with unbonded tendons (2008) ACI Struct J, 105 (3), pp. 338-347spa
dc.relation.referencesBS 5628-2, Code of practice for the use of masonry Part 2: structural use of reinforced and prestressed masonry (2005), British Standards Institution London (United Kingdom)AS 3700, Masonry structures (2011), Standards Australia International Sydney (NSW, Australia)Masonry Standards Joint Committee (MSJC), Building code requirements for masonry structures (2013), ACI 530-13/ASCE 5-13/TMS 402-13 American Concrete Institute Farmington Hills, MichNZS 4320, Design of reinforced concrete masonry structures (2004), Standards New Zealand Wellington (New Zealand)Design of masonry structures (2014), Canadian Standards Association Mississauga (Ontario, Canada)He, Z., Liu, Z., Stresses in external and internal unbonded tendons: unified methodology and design equations (2010) J Struct Eng, 136 (9), pp. 1055-1065spa
dc.relation.referencesHarajli, M.H., On the stress in unbonded tendons at ultimate: critical assessment and proposed changes (2006) ACI Struct J, 103 (6), pp. 803-812spa
dc.relation.referencesGuiglia, M., Taliano, M., Debernardi, P.G., Calculation of the ultimate stress of unbonded tendons in prestressed concrete members considering the rotation capacity (2012) Mag Concr Res, 65 (1), pp. 14-26spa
dc.relation.referencesBaker, A.L., Plastic theory of design for ordinary reinforced and prestressed concrete including moment redistribution in continuous members (1949) Mag Concr Res, 1 (2), pp. 57-66spa
dc.relation.referencesNaaman, A.E., Alkhairi, F.M., Stress at ultimate in unbonded post-tensioning tendons: Part 2—Proposed methodology (1991) ACI Struct J, 88 (6), pp. 683-692spa
dc.relation.referencesWight, G.D., Ingham, J.M., Kowalsky, M.J., Shaketable testing of rectangular post-tensioned concrete masonry walls (2006) ACI Struct J, 103 (4), pp. 587-595spa
dc.relation.referencesSchultz, A.E., Scolforo, M., An overview of prestressed masonry (1991) TMS J, 10 (1), pp. 6-21. , The Masonry Societyspa
dc.relation.referencesBean, J.R., Experimental verification of the resistance of masonry walls under transverse loads (2003), p. 140. , M.S. Thesis University of Minnesota Minneapolis, MNBean, J.R., Schultz, A.E., Design provisions for post tensioned masonry walls loaded out-of-plane (2010) TMS J, 28 (2), pp. 9-26spa
dc.relation.referencesBean, J.R., Schultz, A.E., Flexural capacity of posttensioned masonry walls: code review and recommended procedure (2003) Post-Tensioning Inst J, 1 (1), pp. 28-44spa
dc.relation.referencesMasonry Standards Joint Committee (MSJC), Building code requirements for masonry structures (2002), ACI 530-02/ASCE 5-02/TMS 402-02 American Concrete Institute Farmington Hills, MichMasonry Standards Joint Committee (MSJC), Building code requirements for masonry structures (2005), ACI 530-05/ASCE 5-05/TMS 402-05 American Concrete Institute Farmington Hills, MichHarajli, M.H., Mabsout, M.E., Al-Hajj, J.A., Response of externally post-tensioned continuous members (2002) ACI Struct J, 99 (5), pp. 671-680spa
dc.relation.referencesAu, F.T.K., Du, J.S., Prediction of ultimate stress in unbonded prestressed tendons (2004) Mag Concrete Res, 56 (1), pp. 1-11spa
dc.relation.referencesNazir, N.A., Hart, G.C., Analytical stress strain curves for confined and reinforced concrete masonry (2001) TMS J, 19 (1), pp. 9-20spa
dc.relation.referencesSoto, I.I., Ramalho, M.A., Izquierdo, O.S., Post-cracking behavior of blocks, prisms, and small concrete walls reinforced with plant fiber (2013) IBRACON Struct Mater J, 6 (4), pp. 598-612. , Brazilian Concrete Institutespa
dc.relation.referencesKaushik, H.B., Rai, D.C., Jain, S.K., Stress-strain characteristics of clay brick masonry under uniaxial compression (2007) J Struct Eng, ASCE, 19 (9), pp. 728-739spa
dc.relation.referencesMohamad, G., Lourenco, P.B., Roman, H.R., Mechanics of hollow concrete block masonry prisms under compression: review and prospects (2007) Cement Concr Compos, 29, pp. 181-192spa
dc.relation.referencesBaqi, A., Bhandari, N.M., Trikha, D.N., Experimental study of prestressed masonry flexural elements (1999) J Struct Eng, 125 (3), pp. 245-254spa
dc.relation.referencesGarcía, J.M., Ledezma, C., Bonett, R., Modelo analítico del comportamiento a compresión de bloques huecos de concreto [Analytical Model for Compression Behavior of Hollow Concrete Blocks] (2013) Revista de la Construcción, 12 (3), pp. 76-82spa
dc.relation.referencesGarcía, J.M., Flexural behavior of ungrouted post-tensioned concrete masonry (2016), PhD thesis Universidad de Medellin Colombia AASTM C1314, Standard test method for compressive strength of masonry prisms (2014), ASTM International West Conshohocken (PA)Wight, G.D., Ingham, J.M., Tendon stress in unbonded posttensioned masonry walls at nominal in-plane strength (2008) J Struct Eng, 134 (6), pp. 938-946spa
dc.type.versioninfo:eu-repo/semantics/publishedVersion
dc.type.driverinfo:eu-repo/semantics/article
dc.identifier.reponamereponame:Repositorio Institucional Universidad de Medellínspa
dc.identifier.instnameinstname:Universidad de Medellínspa


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