Citation:
Braun M, Ivañez I, Aranda-Ruiz J. Numerical analysis of the dynamic frequency responses of damaged micro-lattice core sandwich plates. The Journal of Strain Analysis for Engineering Design. 2020;55(1-2):31-41.
ISSN:
0309-3247
DOI:
10.1177/0309324719890958
xmlui.dri2xhtml.METS-1.0.item-contributor-funder:
Ministerio de Economía y Competitividad (España)
Sponsor:
The authors wish to gratefully acknowledge the financial support of
the Spanish Ministry of Economy and Competitiveness under Projects
DPI2011-24068 and DPI2011-23191.
Project:
Gobierno de España. DPI2011-24068 Gobierno de España. DPI2011-23191
In this work, a numerical analysis of the dynamic frequency responses of sandwich plates with micro-lattice core is presented. The finite element analysis is implemented in the commercial software Abaqus/Standard, calculating the natural frequencies and eigenmIn this work, a numerical analysis of the dynamic frequency responses of sandwich plates with micro-lattice core is presented. The finite element analysis is implemented in the commercial software Abaqus/Standard, calculating the natural frequencies and eigenmodes of sandwich plates containing defects on the micro-lattice structure. In order to include the presence of defects, an aleatory algorithm is developed in MATLAB. The effect of the damage percentage, cell type, cell size and material on the frequency and modal responses of the sandwich plates is highlighted. Results show that the dynamic frequency response may be useful for analysing practical issues related to non-destructive damage identification of imperfections in the micro-lattice core of sandwich structures.[+][-]