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dc.creatorArtero Real, Ángeles
dc.creatorKristiansen, Mortenes
dc.creatorFrostevarg, Janes
dc.creatorJusto Estebaranz, Jesúses
dc.creatorCañas Delgado, Josées
dc.date.accessioned2024-09-20T08:47:46Z
dc.date.available2024-09-20T08:47:46Z
dc.date.issued2025-02
dc.identifier.citationArtero Real, Á., Kristiansen, M., Frostevarg, J., Justo Estebaranz, J. y Cañas Delgado, J. (2025). Evaluating edge joint preparation impact on penetration depth in laser-arc hybrid welding. Optics and Laser Technology, 181, Part A (111592). https://doi.org/10.1016/j.optlastec.2024.111592.
dc.identifier.issn0030-3992es
dc.identifier.issn1879-2545es
dc.identifier.urihttps://hdl.handle.net/11441/162675
dc.description.abstractNowadays, conventional welding technologies such as submerged arc welding (SAW) are still used in most heavy-steel industries. This type of traditional technology means that welding takes up a large part of the productive time. As a solution to this problem, there are welding methods, such as Laser-Arc Hybrid Welding (LAHW), that have the potential to reduce the cost of manufacturing large steel structures. This is possible due to the reduced number of weld passes required to join thicker steel sections, as large thicknesses can be welded in one or a few passes. A problem with LAHW is achieving satisfactory quality. For this reason, it is essential to study the starting conditions, e.g. edge joint preparation. The target of this research work is to find out the relationship between the penetration value of the weld bead obtained and the edge joint preparation. The evolution of the molten pool and the behavior of the molten material in the joint is discussed for the different edge joint preparation configurations. The effect of the roughness is that it affects the wetting of the molten material in the joint, which would affect the penetration result, together with the gap and air volume gap used in the joint. Cut-wire is also used in the research, in samples that presented a larger air volume gap. The behavior of the molten metal inside the joint in this case is also discussed. In addition, the quality of the weld beads has also been determined by making macrographs, microstructural analysis, X-ray, microhardness profiles, tensile test and Charpy test. Some pores and cracks have been found, although destructive tests show adequate behavior of the weld bead. It is possible to elucidate from the findings that as the roughness, gap and/or air volume gap of the edge joint increases, the penetration value obtained increases. Cut-wire samples obtained full penetration.es
dc.formatapplication/pdfes
dc.format.extent15 p.es
dc.language.isoenges
dc.publisherElsevieres
dc.relation.ispartofOptics and Laser Technology, 181, Part A (111592).
dc.rightsAtribución-NoComercial 4.0 Internacional*
dc.rights.urihttp://creativecommons.org/licenses/by-nc/4.0/*
dc.subjectHybrid weldinges
dc.subjectLaser-MIG/MAGes
dc.subjectEdge joint preparationes
dc.subjectSurface roughnesses
dc.subjectGapes
dc.subjectAir volume gapes
dc.titleEvaluating edge joint preparation impact on penetration depth in laser-arc hybrid weldinges
dc.typeinfo:eu-repo/semantics/articlees
dc.type.versioninfo:eu-repo/semantics/publishedVersiones
dc.rights.accessRightsinfo:eu-repo/semantics/openAccesses
dc.contributor.affiliationUniversidad de Sevilla. Departamento de Mecánica de Medios Continuos y Teoría de Estructurases
dc.relation.publisherversionhttps://www.sciencedirect.com/science/article/pii/S0030399224010508?via%3Dihubes
dc.identifier.doi10.1016/j.optlastec.2024.111592es
dc.contributor.groupUniversidad de Sevilla. TEP131: Grupo de Elasticidad y Resistencia de Materialeses
dc.journaltitleOptics and Laser Technologyes
dc.publication.volumen181, Part Aes
dc.publication.issue111592es

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