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dc.contributor.authorAutorBalboa-Constanzo, Esteban.
dc.contributor.authorAutorMaureira-Carsalade, Nelson.
dc.contributor.authorAutorSanhueza-Espinoza, Frank.
dc.contributor.authorAutorRoco-Videla, Ángel.
dc.contributor.authorAutorSanhueza-Cartes, Marcelo.
dc.contributor.authorAutorArias-Guzmán, Patricio.
dc.contributor.authorAutorCanales, Cristian
dc.date.accessionedFecha ingreso2024-09-03T19:20:27Z
dc.date.availableFecha disponible2024-09-03T19:20:27Z
dc.date.issuedFecha publicación2023
dc.identifier.citationReferencia BibliográficaBuildings, 13(9), 32 p.
dc.identifier.issnISSN2075-5309
dc.identifier.uriURLhttp://repositorio.udla.cl/xmlui/handle/udla/1494
dc.identifier.uriURLhttps://www.mdpi.com/journal/buildings
dc.description.abstractResumenAn improved numerical formulation for a self-centering frictional damper is presented. This was experimentally validated through quasi-static tests carried out on a steel-made prototype of the damper. Its design is ad hoc for implementation in the seismic protection of industrial storage racks. The conceptual model of the device was adjusted to the prototype built. The formulation of the analytical model, a parametric analysis of it, and the validation with experimental results are presented. The improvement of the model presented here explicitly considers elements included in the prototype, such as a system of load transmission rings and the friction between all of the components that slide or rotate relatively. In the experimental validation, the parameters of the improved model were determined. The numerical predictions for the improved model were contrasted with those obtained with the original one and with the experimental results. This demonstrates that the improvement leads to a better adjustment of the numerical predictions concerning the experimental measurements, which is useful for nonlinear analysis. The device withstood forces of considerable magnitude in addition to dissipating enough energy per load–unload cycle to be effective in the seismic protection of industrial storage racks.
dc.format.extentdc.format.extent32 páginas
dc.format.extentdc.format.extent10.05Mb
dc.format.mimetypedc.format.mimetypePDF
dc.language.isoLenguaje ISOeng
dc.publisherEditorMDPI
dc.rightsDerechosCreative Commons Attribution License (CC BY)
dc.sourceFuentesBuildings
dc.subjectPalabras ClavesFrictional damper
dc.subjectPalabras ClavesIndustrial storage rack application
dc.subjectPalabras ClavesNonlinear model
dc.subjectPalabras ClavesSelf-centering capacity
dc.subjectPalabras ClavesTension loads
dc.titleTítuloImprovement of the Analytical Model of an Energy Dissipator and Validation with Experimental Tests of a Prototype
dc.typeTipo de DocumentoArtículo
dc.udla.catalogadordc.udla.catalogadorCBM
dc.udla.indexdc.udla.indexWoS
dc.udla.indexdc.udla.indexScience Citation Index Expanded
dc.udla.indexdc.udla.indexScopus
dc.udla.indexdc.udla.indexNatural Science Collection
dc.udla.indexdc.udla.indexDOAJ
dc.udla.indexdc.udla.indexINSPEC
dc.identifier.doidc.identifier.doi10.3390/buildings13092302
dc.facultaddc.facultadFacultad de Salud y Ciencias Sociales


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