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Thermo-mechanical effects in drilling using metal working fluids and cryogenic cooling and their impact in tool performance

Article dans une revue avec comité de lecture
Auteur
ccMARTINS DO OUTEIRO, Jose Carlos
127742 Laboratoire Bourguignon des Matériaux et Procédés [LABOMAP]
LENOIR, Pierrick
BOSSELUT, A.
223582 Mecachrome

URI
http://hdl.handle.net/10985/9860
DOI
10.1007/s11740-015-0619-6
Date
2015
Journal
Production Engineering

Résumé

Cryogenic machining opens up new industrial perspectives in difficult-to-cut materials like nickel-based alloys. In particular, drilling is an operation that generates high thermal and mechanical loading to the drill. There- fore, tool performance, hole geometry and surface integrity can be highly affected. The objective of this study is to analyse tool performance during drilling of IN718 using conventional metal working fluids (MWF) and cryogenic cooling conditions, and correlate it with the thermo-me- chanical phenomena. This study is conducted with standard coated cemented carbide twist drills, designed to work with MWF. The results show that drill performance under cryogenic cooling is strongly affected by its geometry. The axial force, drilling torque and tool wear/failure are higher under cryogenic cooling when compared to conventional MWF. Therefore, in order to take advantage of the cryo- genic machining, new drill design is required, which cur- rently is not available on the market.

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Nom:
LABOMAP_PERD_2015_OUTEIRO.pdf
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3.664Mo
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  • Residual Stresses Induced by Dry and Cryogenic Cooling during Machining of AZ31B Magnesium Alloy 
    Article dans une revue avec comité de lecture
    ccMARTINS DO OUTEIRO, Jose Carlos; BATISTA, Antonio; ccMARQUES, Maria José (Trans Tech Publications, 2014)
    The major challenge of the Mg alloys has been their unsatisfactory corrosion resistance, which can be enhanced by improving the surface integrity. Cryogenic machining, where liquid nitrogen was used during machining, has ...
  • Advances in material and friction data for modelling of metal machining 
    Article dans une revue avec comité de lecture
    MELKOTE, Shreyes; GRZESIK, Wit; ccMARTINS DO OUTEIRO, Jose Carlos; RECH, Joël; SCHULZE, Volker; ATTIA, Helmi; ARRAZOLA, Pedro José; M'SAOUBI, Rachid; SALDANA, Christopher (Elsevier, 2017)
    This paper reviews recent advances in constitutive and friction data and models for simulation of metal machining. Phenomenological and physically-based constitutive models commonly used in machining simulations are presented ...
  • Tool life and surface integrity in hard milling of hot work tool steels 
    Communication avec acte
    M'SAOUBI, Rachid; CHANDRASEKARAN, H.; COULON, Bertrand; ccMARQUES, Maria José; ccMARTINS DO OUTEIRO, Jose Carlos (2008)
    Machinability enhancement of hot work tool steels can be achieved intrinsically through tailoring of alloying elements and steel processing route but also externally through the use of adequate tooling. The aim of the ...
  • Constitutive Modelling of AZ31B-O Magnesium Alloy for Cryogenic Machining 
    Communication avec acte
    GIRAUD, Eliane; ccROSSI, FREDERIC; ccGERMAIN, Guénaël; ccMARTINS DO OUTEIRO, Jose Carlos (Elsevier, 2013)
    The success of a FE model for metal cutting process is strongly dependent on the accurate characterization of the workpiece material, under similar conditions as those found in metal cutting. In this paper, dynamic shear ...
  • Optimization of Machining Parameters for improved Surface Integrity of AISI H13 Tool Steel 
    Communication avec acte
    ccMARTINS DO OUTEIRO, Jose Carlos (ENISE-CETIM, 2012)
    The surface integrity plays a very important rule in this functional performance, being dependent of a large number of machining parameters. The major concern of the industry is to know which combination of machining ...

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