Rodyti trumpą aprašą

dc.contributor.authorDey, Alinda
dc.contributor.authorValiukas, Domas
dc.contributor.authorJakubovskis, Ronaldas
dc.contributor.authorSokolov, Aleksandr
dc.contributor.authorKaklauskas, Gintaris
dc.date.accessioned2023-09-18T16:12:44Z
dc.date.available2023-09-18T16:12:44Z
dc.date.issued2022
dc.identifier.other(SCOPUS_ID)85122076442
dc.identifier.urihttps://etalpykla.vilniustech.lt/handle/123456789/112380
dc.description.abstractA bond mechanism at the reinforcement-concrete interface is one of the key sources of the comprehensive functioning of reinforced concrete (RC) structures. In order to apprehend the bond mechanism, the study on bond stress and slip relation (henceforth referred as bond-slip) is necessary. On this subject, experimental and numerical investigations were performed on short RC tensile specimens. A double pull-out test with pre-installed electrical strain gauge sensors inside the modified embedded rebar was performed in the experimental part. Numerically, a three dimensional rib scale model was designed and finite element analysis was performed. The compatibility and reliability of the numerical model was verified by comparing its strain result with an experimentally obtained one. Afterwards, based on stress transfer approach, the bond-slip relations were calculated from the extracted strain results. The maximum disparity between experimental and numerical investigation was found as 19.5% in case of strain data and 7% for the bond-slip relation at the highest load level (110 kN). Moreover, the bond-slip curves at different load levels were compared with the bond-slip model established in CEB-fib Model Code 2010 (MC2010). Overall, in the present study, strain monitoring through the experimental tool and finite element modelling have accomplished a broader picture of the bond mechanism at the reinforcement-concrete interface through their bond-slip relationship.eng
dc.formatPDF
dc.format.extentp. 1-13
dc.format.mediumtekstas / txt
dc.language.isoeng
dc.relation.isreferencedbyScopus
dc.relation.isreferencedbyScience Citation Index Expanded (Web of Science)
dc.source.urihttps://www.mdpi.com/1996-1944/15/1/293
dc.titleExperimental and numerical investigation of bond-slip behavior of high-strength reinforced concrete at service load
dc.typeStraipsnis Web of Science DB / Article in Web of Science DB
dcterms.accessRightsThis article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https:// creativecommons.org/licenses/by/ 4.0/).
dcterms.licenseCreative Commons – Attribution – 4.0 International
dcterms.references37
dc.type.pubtypeS1 - Straipsnis Web of Science DB / Web of Science DB article
dc.contributor.institutionVilniaus Gedimino technikos universitetas
dc.contributor.facultyStatybos fakultetas / Faculty of Civil Engineering
dc.contributor.departmentStatinių ir tiltų konstrukcijų institutas / Institute of Building and Bridge Structures
dc.subject.researchfieldT 002 - Statybos inžinerija / Construction and engineering
dc.subject.vgtuprioritizedfieldsSD0101 - Pažangios statinių konstrukcijos / Smart building structures
dc.subject.ltspecializationsL104 - Nauji gamybos procesai, medžiagos ir technologijos / New production processes, materials and technologies
dc.subject.enreinforced concrete
dc.subject.endouble pull-out test
dc.subject.enbond-slip
dc.subject.enfinite element modelling
dcterms.sourcetitleMaterials: Special Issue Advances in Serviceability Analysis of Concrete Structures
dc.description.issueiss. 1
dc.description.volumevol. 15
dc.publisher.nameMDPI
dc.publisher.cityBasel
dc.identifier.doi2-s2.0-85122076442
dc.identifier.doi85122076442
dc.identifier.doi1
dc.identifier.doi133512058
dc.identifier.doi10.3390/ma15010293
dc.identifier.elaba116264374


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