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Hardness-load modelling applied to multilayer galvanised coatings

Article dans une revue avec comité de lecture
Auteur
BENARIOUA, Younef
MEJIAS, Alberto
ROUDET, Francine
IOST, Alain
211915 Mechanics surfaces and materials processing [MSMP]
CHICOT, Didier

URI
http://hdl.handle.net/10985/10703
DOI
10.1080/02670844.2015.1116802
Date
2016
Journal
Surface Engineering

Résumé

During the last past decades, galvanised steels have been extensively developed to improve corrosion resistance of steels due to their excellent chemical properties particularly in severe atmospheric conditions. The objective of this work is to predict the hardness-load variation in relation to the bath immersion time using both a multilayer coating hardness model and a layers growth modelling. The kinetic growth of each layer relates the thickness to the immersion time by a simple power law. The hardness of the intermetallic compounds is determined by applying a multilayer hardness model on classical Vickers microindentation data obtained at different indentation loads. Afterwards by combining the kinetic growth laws and the compounds hardness, it is possible to predict the surface hardness-load variation as a function of the immersion bath time.

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  • Laboratoire Mechanics, Surfaces and Materials Processing (MSMP)

Documents liés

Visualiser des documents liés par titre, auteur, créateur et sujet.

  • Multi-scale approach of the instrumented indentation technique on the fracture toughness estimation 
    Communication sans acte
    MEJIAS, A; CHICOT, Didier; DECOOPMAN, Xavier; ROUDET, Francine; IOST, Alain; ccMONTAGNE, Alex (SF2M, 2015)
    Instrumented Indentation Technique (IIT) is widely used to determine the mechanical properties of materials. The elastic modulus is usually determined by applying the methodology proposed by ...
  • Multiscale and multicycle instrumented indentation to determine mechanical properties: Application to the BK7 crown borosilicate 
    Article dans une revue avec comité de lecture
    BENTOUMI, Mohamed; BOUZID, Djamel; BENZAAMA, H; MEJIAS, Alberto; KOSSMAN, Stephania; IOST, Alain; CHICOT, Didier; ccMONTAGNE, Alex (Cambridge University Press (CUP), 2017)
    In this work, nano, micro, and macro-indentation tests under standard or multicycle loading conditions were performed for studying the mechanical behavior of a crown borosilicate glass sample with the objective to study ...
  • Propriétés mécaniques par indentation d’un film mince nanometrique de nitrure d’aluminium 
    Article dans une revue avec comité de lecture
    ROUDET, Francine; CHICOT, Didier; DECOOPMAN, Xavier; IOST, Alain; BÜRGI, Juan; MOLLEJA, Javier Garcia; FEUGEAS, Jorge (EDP Sciences, 2015)
    Les propriétés mécaniques des films minces sont généralement déterminées par nanoindentation pour éviter l’influence du substrat. En effet, nous savons que le substrat influence cette mesure dès lors que l’indenteur pénètre ...
  • Analysis of indentation size effect in copper and its alloys 
    Article dans une revue avec comité de lecture
    CHICOT, Didier; PUCHI-CABRERA, Eli-Saul; IOST, Alain; STAIA, M.H; DECOOPMAN, Xavier; ROUDET, F.; LOUIS, G. (Maney Publishing, 2013)
    For describing the indentation size effect (ISE), numerous models, which relate the load or hardness to the indent dimensions, have been proposed. Unfortunately, it is still difficult to associate the different parameters ...
  • A new approach of the Oliver and Pharr model to fit the unloading curve from instrumented indentation testing 
    Article dans une revue avec comité de lecture
    KOSSMAN, Stephania; IOST, Alain; CHICOT, Didier; ccCOOREVITS, Thierry (Cambridge University Press (CUP), 2017)
    The unloading part of a load–displacement curve from instrumented indentation tests is usually approximated by a power law (Oliver and Pharr model), where the load is the dependent variable. This approach generally fits ...

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