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Finite element and dimensional analysis algorithm for the prediction of mechanical properties of bulk materials and thin films
Authors:Sara Aida Rodríguez Pulecio  María Cristina Moré Farias
Affiliation:
  • a Surface Phenomena Laboratory, Department of Mechanical Engineering, University of São Paulo Av. Prof. Mello Moraes, 2231 05508-900 Sao Paulo, SP Brazil
  • b Research Group of Fatigue and Surfaces, Mechanical Engineering School, Universidad del Valle, Cll 13 No 100-00 Cali, Colombia
  • Abstract:In this work, the applicability of a new algorithm for the estimation of mechanical properties from instrumented indentation data was studied for thin films. The applicability was analyzed with the aid of both three-dimensional finite element simulations and experimental indentation tests. The numerical approach allowed studying the effect of the substrate on the estimation of mechanical properties of the film, which was conducted based on the ratio hmax/l between maximum indentation depth and film thickness. For the experimental analysis, indentation tests were conducted on AISI H13 tool steel specimens, plasma nitrated and coated with TiN thin films. Results have indicated that, for the conditions analyzed in this work, the elastic deformation of the substrate limited the extraction of mechanical properties of the film/substrate system. This limitation occurred even at low hmax/l ratios and especially for the estimation of the values of yield strength and strain hardening exponent. At indentation depths lower than 4% of the film thickness, the proposed algorithm estimated the mechanical properties of the film with accuracy. Particularly for hardness, precise values were estimated at hmax/l lower than 0.1, i.e. 10% of film thickness.
    Keywords:Vickers instrumented indentation test  Mechanical properties  Finite element modeling
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