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Micro-orthogonal Cutting of Metals

Communication avec acte
Auteur
KERMER, Daniel
ccFROMENTIN, Guillaume
127742 Laboratoire Bourguignon des Matériaux et Procédés [LABOMAP]
LOUTAN, Olivier
AGEBEBIADE, Kossi
GIOVANOLA, Jacques

URI
http://hdl.handle.net/10985/7543
Date
2008

Résumé

High speed micromilling with single point or multi-edge cutting tools of diameters smaller than 300 m is finding increasing applications for the production of small very precise metallic parts. Because of the small value of the ratios cutting depth to cutting edge radius and cutting depth to characteristic microstructural dimensions, one may expect that the extensive technological data base available for conventional metal cutting, may not directly transfer to micromilling and that size effects will influence the cutting pressures in micromilling as compared to those in macromilling. To address this issue, we have developed a micro-orthogonal cutting test facility in which chip thickness can be controlled to within a few microns and cutting forces can be measured. Using this facility, we are conducting a rather fundamental investigation of micro cutting processes to identify possible size effects. Besides measuring specific cutting pressures, we also aim at identifying mechanisms of chip formation and how they are affected by microstructure, fracture damage accumulation and microtool geometry. We intend to contrast these observations with observations made in macro orthogonal cutting of the same materials as those tested in micro orthogonal cutting. This paper will describe the test facility and present preliminary results obtained during micro-orthogonal cutting experiments.

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Documents liés

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  • Development of a precision machine to perform and study orthogonal micro-cutting 
    Article dans une revue avec comité de lecture
    ccFROMENTIN, Guillaume; GASPAROUX, Jennifer; AGBEVIADE, Kossi; GIOVANOLA, Jacques (Penton Publishing, 2016)
    This article presents a laboratory machine designed to perform orthogonal micro-cutting experiments. The machine allows an accurate control of the various cutting parameters and a direct comparison of micro- and macrocutting ...
  • Precision and surface integrity of threads obtained by form tapping 
    Article dans une revue avec comité de lecture
    ccFROMENTIN, Guillaume; ccFROMENTIN, Guillaume; ccPOULACHON, Gerard; ccPOULACHON, Gerard; MOISAN, Alphonse; MOISAN, Alphonse; JULIEN, Benoit; JULIEN, Benoit; GIESSLER, Joseph; GIESSLER, Joseph (ElsevierElsevier, 2006)
    Largely applied to internal threading of extruded tubes, cold form tapping is now becoming a promising process for internal threading of holes in non ferrous and ferrous solid components, more particularly for mass production ...
  • Concepts, Modélisation et Commandes des Hydroliennes 
    Chapitre d'ouvrage scientifique
    ccBENBOUZID, Mohammed; ccASTOLFI, Jacques Andre; BACHA, Seddik; ccCHARPENTIER, Jean-Frederic; MACHMOUN, Mohamed; MAITRE, Thierry; ROYE, Daniel (Hermes Science Publications, 2011)
    Face au problème de la gestion des déchets nucléaire et aux émissions de gaz à effet de serre, les énergies renouvelables occupent une place avancée parmi les énergies d’avenir grâce à leur faible impact sur l’environnement ...
  • Thermo-oxidation behaviour of composite materials at high temperatures: A review of research activities carried out within the COMEDI program 
    Article dans une revue avec comité de lecture
    LAFARIE, Marie Christine; GRANDIDIER, Jean Claude; OLIVIER, Loic; VERDU, Jacques; CINQUIN, Jacques; ccCOLIN, Xavier (Elsevier, 2010)
    The present paper presents a review of the main activities carried out within the context of the COMEDI research program, a joint collaboration involving three research teams focusing on the thermo-oxidation behaviour of ...
  • Response of a numerically controlled machine-tool to the modification of its position feedback using real-time solution 
    Communication avec acte
    ccGUEVEL, Flore; ccEUZENAT, Charly; ccVIPREY, Fabien; ccFROMENTIN, Guillaume (euspen, 2024-06-14)
    The dimensional accuracy of machined parts can be influenced by numerous factors, among which inaccuracies in the machine’s structural loop and thermal expansion of components have the biggest impact. Hence, highly accurate ...

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