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dc.contributorEscuela de Ingenierias Industrial, Informática y Aeroespaciales_ES
dc.contributor.authorCuesta González, Eduardo
dc.contributor.authorGiganto Fernández, Sara 
dc.contributor.authorÁlvarez, Braulio José
dc.contributor.authorBarreiro García, Joaquín 
dc.contributor.authorMartínez Pellitero, Susana 
dc.contributor.authorMeana Díaz, Víctor Manuel
dc.contributor.otherIngenieria de los Procesos de Fabricaciones_ES
dc.date2021
dc.date.accessioned2024-02-07T10:47:59Z
dc.date.available2024-02-07T10:47:59Z
dc.identifier.citationCuesta, E., Giganto, S., Alvarez, B. J., Barreiro, J., Martínez-Pellitero, S. & Meana, V. (2021). Laser line scanner aptitude for the measurement of Selective Laser Melting parts. Optics and Lasers in Engineering, 138, 106406. https://doi.org/10.1016/j.optlaseng.2020.106406es_ES
dc.identifier.issn0143-8166
dc.identifier.urihttps://hdl.handle.net/10612/18107
dc.description.abstract[EN] When looking for any metrological verification of parts manufactured by metal laser printing with optical equipment, it is necessary to ensure the traceability of the measurements that can be obtained. The difficulty of this process lies in the fact that these measurements are obtained on point clouds captured from surfaces with high form errors and poor surface finishes, even when this type of surface usually undergoes processes to improve the surface finish, such as sandblasting. This research focuses precisely on the analysis of the metrological suitability of a laser line scanner (laser triangulation sensor) on parts manufactured by Selective Laser Melting (SLM). The study starts from the design of a test part specifically oriented to the printing process with SLM metal powder bed. This test part was printed in 17-4PH stainless steel and then sandblasted. The test part was measured in a Coordinate Measuring Machine (CMM), obtaining reference GD&T values. The measurement was carried out under pre-sandblasting ("as built") and post-sandblasting conditions, thus providing interesting information about the erosion rate of this post process. A state-of-the-art laser sensor was employed for the metrological comparison, mounted on the same available CMM that was used for contact measurements. In this research three analyses were carried out: the quality of 3D metal printed parts with respect to CAD model, the effect of the sandblasting post-process, and the accuracy of the measurements obtained with the laser line sensor. In addition, this work conducts an in-depth study about the influence of point cloud treatment and filtering procedures, by comparing the filtering methods applied by different reverse engineering software packages. The study leads to the conclusion that filters based on the standard deviation of the point cloud are the best candidates in order to obtain laser measurements closer to the contact measurements.es_ES
dc.languageenges_ES
dc.publisherELSEVIERes_ES
dc.subjectIngeniería mecánicaes_ES
dc.subject.otherSelective laser melting (SLM)es_ES
dc.subject.otherLaser line scanneres_ES
dc.subject.other3D metrologyes_ES
dc.titleLaser line scanner aptitude for the measurement of Selective Laser Melting partses_ES
dc.typeinfo:eu-repo/semantics/articlees_ES
dc.identifier.doi10.1016/j.optlaseng.2020.106406
dc.description.peerreviewedSIes_ES
dc.rights.accessRightsinfo:eu-repo/semantics/openAccesses_ES
dc.journal.titleOptics and Lasers in Engineeringes_ES
dc.volume.number138es_ES
dc.page.initial106406es_ES
dc.type.hasVersioninfo:eu-repo/semantics/acceptedVersiones_ES
dc.subject.unesco3310.03 Procesos Industrialeses_ES
dc.subject.unesco2209.10 lásereses_ES
dc.description.projectAuthors thank to the financial support provided by the Junta de Castilla y León (project LE027P17-FEDER funds) and also to two student grants awarded by the University Institute of Industrial Technology of Asturias (IUTA, ref. SV-19-GIJON-1-14) and by the Young researcher mobility program of SIF (Manufacturing Engineering Spanish Society).es_ES


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