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A physical-based constitutive model for surface integrity prediction in machining of OFHC copper

Article dans une revue avec comité de lecture
Auteur
DENGUIR, Lamice
MARTINS DO OUTEIRO, Jose Carlos
FROMENTIN, Guillaume
127742 Laboratoire Bourguignon des Matériaux et Procédés [LABOMAP]
VIGNAL, Vincent
103192 Laboratoire Interdisciplinaire Carnot de Bourgogne [ICB]
BESNARD, Rémy
12062 VALDUC [DAM/VALDUC]

URI
http://hdl.handle.net/10985/11796
DOI
10.1016/j.jmatprotec.2017.05.009
Date
2017
Journal
Journal of Materials Processing Technology

Résumé

Due to the rising interest in predicting machined surface integrity and sustainability, various models for metal cutting simulation have been developed. However, their accuracy depends deeply on the physical description of the machining process. This study aims to develop an orthogonal cutting model for surface integrity prediction, which includes a physical-based constitutive model of Oxygen Free High Conductivity (OFHC) copper. This constitutive model incorporates the effects of the state of stress and microstructure on the work material behavior, as well as a dislocation density-based model for surface integrity prediction. The coefficients of the constitutive model were identified through a hybrid experimental/numerical approach, consisting in mechanical tests, numerical simulations and an optimization-based algorithm. The orthogonal cutting model was simulated by FEM, using ALE formulation, and was validated by comparing predicted and measured results, including residual stresses, dislocation density and grain size. The model is then used to analyze the influence of the cutting parameters and cutting geometry on surface integrity, and its results are compared to those obtained by the Johnson-Cook model.

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LABOMAP_JMPT_2017_DENGUIR.pdf
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Documents liés

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  • On the optimization of the cutting conditions for an improved corrosion resistance of OFHC copper 
    Communication avec acte
    DENGUIR, Lamice; MARTINS DO OUTEIRO, Jose Carlos; VIGNAL, Vincent; FROMENTIN, Guillaume; BESNARD, Rémy (Elsevier, 2018)
    Machining has a particular impact on the surface integrity and on corrosion resistance of components. In fact, material removal induces geometrical, mechanical and micro-structural modifications in the machined surface and ...
  • Friction Model for Tool/Work Material Contact Applied to Surface Integrity Prediction in Orthogonal Cutting Simulation 
    Communication avec acte
    DENGUIR, Lamice; MARTINS DO OUTEIRO, Jose Carlos; RECH, Joël; FROMENTIN, Guillaume; VIGNAL, Vincent; BESNARD, Rémy (Elsevier, 2017)
    Tribological behavior at both tool/chip and tool/work material interfaces should be highly considered while simulating the machining process. In fact, it is no longer accurate to suppose one independent constant friction ...
  • Orthogonal cutting simulation of OFHC copper using a new constitutive model considering the state of stress and the microstructure effects 
    Communication avec acte
    DENGUIR, Lamice; MARTINS DO OUTEIRO, Jose Carlos; FROMENTIN, Guillaume; VIGNAL, Vincent; BESNARD, Rémy (Elsevier, 2016)
    This work aims to develop an orthogonal cutting model for surface integrity prediction, which incorporates a new constitutive model of Oxygen Free High Conductivity (OFHC) copper. It accounts for the effects of the state ...
  • Influence of cutting process mechanics on surface integrity and electrochemical behavior of OFHC copper 
    Communication avec acte
    DENGUIR, Lamice; FROMENTIN, Guillaume; MARTINS DO OUTEIRO, Jose Carlos; VIGNAL, Vincent; BESNARD, Rémy (ELSEVIER, 2014)
    Superfinishing machining has a particular impact on cutting mechanics, surface integrity and local electrochemical behavior. In fact, material removal during this process induces geometrical, mechanical and micro-structural ...
  • Experimental and numerical assessment of subsurface plastic deformation induced by OFHC copper machining 
    Article dans une revue avec comité de lecture
    MARTINS DO OUTEIRO, Jose Carlos; CAMPOCASSO, Sébastien; DENGUIR, Lamice; FROMENTIN, Guillaume; VIGNAL, Vincent; POULACHON, Gerard (Elsevier, 2015)
    Strain distributions in the machined surface and subsurface of OFHC copper workpieces were determined experimentally and through numerical simulations. An experimental setup, comprising a double frame camera and a pulsed ...

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