Modal Identification in an Automotive Multi-Component System Using HS 3D-DIC
The modal characterization of automotive lighting systems becomes difficult using sensors due to the light weight of the elements which compose the component as well as the intricate access to allocate them. In experimental modal analysis, high speed 3D digital image correlation (HS 3D-DIC) is attra...
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Published in | Materials Vol. 11; no. 2; p. 241 |
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Main Authors | , , , |
Format | Journal Article |
Language | English |
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05.02.2018
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Abstract | The modal characterization of automotive lighting systems becomes difficult using sensors due to the light weight of the elements which compose the component as well as the intricate access to allocate them. In experimental modal analysis, high speed 3D digital image correlation (HS 3D-DIC) is attracting the attention since it provides full-field contactless measurements of 3D displacements as main advantage over other techniques. Different methodologies have been published that perform modal identification, i.e., natural frequencies, damping ratios, and mode shapes using the full-field information. In this work, experimental modal analysis has been performed in a multi-component automotive lighting system using HS 3D-DIC. Base motion excitation was applied to simulate operating conditions. A recently validated methodology has been employed for modal identification using transmissibility functions, i.e., the transfer functions from base motion tests. Results make it possible to identify local and global behavior of the different elements of injected polymeric and metallic materials. |
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AbstractList | The modal characterization of automotive lighting systems becomes difficult using sensors due to the light weight of the elements which compose the component as well as the intricate access to allocate them. In experimental modal analysis, high speed 3D digital image correlation (HS 3D-DIC) is attracting the attention since it provides full-field contactless measurements of 3D displacements as main advantage over other techniques. Different methodologies have been published that perform modal identification, i.e., natural frequencies, damping ratios, and mode shapes using the full-field information. In this work, experimental modal analysis has been performed in a multi-component automotive lighting system using HS 3D-DIC. Base motion excitation was applied to simulate operating conditions. A recently validated methodology has been employed for modal identification using transmissibility functions, i.e., the transfer functions from base motion tests. Results make it possible to identify local and global behavior of the different elements of injected polymeric and metallic materials. |
Author | Felipe-Sesé, Luis Molina-Viedma, Ángel Jesús Díaz, Francisco A López-Alba, Elías |
AuthorAffiliation | 1 Department of Mechanical and Mining Engineering, Campus Las Lagunillas, University of Jaén, 23071 Jaén, Spain; elalba@ujaen.es (E.L.-A.); fdiaz@ujaen.es (F.A.D.) 2 Department of Mechanical and Mining Engineering, Campus Científico Tecnológico de Linares, University of Jaén, 23700 Linares, Spain; lfelipe@ujaen.es |
AuthorAffiliation_xml | – name: 1 Department of Mechanical and Mining Engineering, Campus Las Lagunillas, University of Jaén, 23071 Jaén, Spain; elalba@ujaen.es (E.L.-A.); fdiaz@ujaen.es (F.A.D.) – name: 2 Department of Mechanical and Mining Engineering, Campus Científico Tecnológico de Linares, University of Jaén, 23700 Linares, Spain; lfelipe@ujaen.es |
Author_xml | – sequence: 1 givenname: Ángel Jesús orcidid: 0000-0002-5425-7683 surname: Molina-Viedma fullname: Molina-Viedma, Ángel Jesús email: ajmolina@ujaen.es organization: Department of Mechanical and Mining Engineering, Campus Las Lagunillas, University of Jaén, 23071 Jaén, Spain. ajmolina@ujaen.es – sequence: 2 givenname: Elías surname: López-Alba fullname: López-Alba, Elías email: elalba@ujaen.es organization: Department of Mechanical and Mining Engineering, Campus Las Lagunillas, University of Jaén, 23071 Jaén, Spain. elalba@ujaen.es – sequence: 3 givenname: Luis surname: Felipe-Sesé fullname: Felipe-Sesé, Luis email: lfelipe@ujaen.es organization: Department of Mechanical and Mining Engineering, Campus Científico Tecnológico de Linares, University of Jaén, 23700 Linares, Spain. lfelipe@ujaen.es – sequence: 4 givenname: Francisco A surname: Díaz fullname: Díaz, Francisco A email: fdiaz@ujaen.es organization: Department of Mechanical and Mining Engineering, Campus Las Lagunillas, University of Jaén, 23071 Jaén, Spain. fdiaz@ujaen.es |
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Keywords | automotive lighting system experimental modal analysis HS 3D-DIC multi-component multi-material transmissibility functions |
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SubjectTerms | Algorithms automotive lighting system Damping ratio Digital imaging experimental modal analysis Fuel consumption HS 3D-DIC Identification Lasers Lighting Lighting systems Methods Mining engineering Modal analysis Modal identification multi-component multi-material Three dimensional motion Transfer functions transmissibility functions Weight reduction |
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Title | Modal Identification in an Automotive Multi-Component System Using HS 3D-DIC |
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