Mechanical properties of tubular bioinspired metamaterials

dc.audience.educationlevelInvestigadores/Researcherses_MX
dc.contributor.advisorCuan Urquizo, Enrique
dc.contributor.authorPalancares-Díaz, Jocelyn Sarai
dc.contributor.catalogerpuelquio/mscuervoes_MX
dc.contributor.committeememberRomán Flores, Armando
dc.contributor.committeememberJiménez Martínez, Moisés
dc.contributor.committeememberFarfán Cabrera, Leonardo Israel
dc.contributor.departmentSchool of Engineering and Scienceses_MX
dc.contributor.institutionCampus Monterreyes_MX
dc.creatorCUAN URQUIZO, ENRIQUE; 345654
dc.date.accepted2022-06-14
dc.date.accessioned2023-06-23T17:36:51Z
dc.date.available2023-06-23T17:36:51Z
dc.date.issued2022
dc.description.abstractThis dissertation is concerned around the analysis of tubular bioinspired metamaterials and the relationship between their mesostructural characteristics in the cross sectional area and reticulated distribution and their mechanical characteristics under torsional and bending loads. Bioinspiration was taken from Cactaceae family to find cross sectional and void distribution inspiration, once the characteristics were selected a geometrical parameterization was performed. The mechanical characterization was done with the aid of FE models in COMSOL Multiphysics for bending and torsion. As validation some models were printed and tested under bending and torsion as well. The manufacturing of the samples used fused filament fabrication (FFF) with polylactic acid (PLA). Validation of the manufacturing using a microscope was done. The results from this study confirm the influence of the selected characteristics in the bending and torsional stiffness. Being the torsional stiffness being specially sensitive to changes in the cross sectional geometry while the bending stiffness was found to be best modulated by the allowance of the reticulated pattern to leave straight lines of material from one end to the other of the tubular structure.es_MX
dc.description.degreeMaster of Science in Engineeringes_MX
dc.format.mediumTextoes_MX
dc.identificator7||33||3312||331299es_MX
dc.identifier.citationPalancares-Díaz, J.S. (2022). Mechanical properties of tubular bioinspired metamaterials [Unpublished master's thesis]. Instituto Tecnológico y de Estudios Superiores de Monterrey. Recuperado de: https://hdl.handle.net/11285/650937es_MX
dc.identifier.urihttps://hdl.handle.net/11285/650937
dc.language.isoenges_MX
dc.publisherInstituto Tecnológico y de Estudios Superiores de Monterreyes_MX
dc.relation.isFormatOfdraftes_MX
dc.relation.isreferencedbyREPOSITORIO NACIONAL CONACYT
dc.rightsopenAccesses_MX
dc.rights.urihttp://creativecommons.org/licenses/by-nc-sa/4.0es_MX
dc.subject.classificationINGENIERÍA Y TECNOLOGÍA::CIENCIAS TECNOLÓGICAS::TECNOLOGÍA DE MATERIALES::OTRASes_MX
dc.subject.keywordmetamaterialses_MX
dc.subject.keywordtubulares_MX
dc.subject.keywordtubular metamaterialses_MX
dc.subject.keywordbioinspired tubees_MX
dc.subject.keywordtorsiones_MX
dc.subject.keywordbendinges_MX
dc.subject.keywordtorsional stiffnesses_MX
dc.subject.keywordbending stiffnesses_MX
dc.subject.keywordadditive manufacturinges_MX
dc.subject.keywordtubular latticees_MX
dc.subject.lcshSciencees_MX
dc.titleMechanical properties of tubular bioinspired metamaterialses_MX
dc.typeTesis de maestría

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