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Development of a precision machine to perform and study orthogonal micro-cutting

Article dans une revue avec comité de lecture
Auteur
ccFROMENTIN, Guillaume
127742 Laboratoire Bourguignon des Matériaux et Procédés [LABOMAP]
GASPAROUX, Jennifer
302851 Ecole Polytechnique Fédérale de Lausanne [EPFL]
AGBEVIADE, Kossi
302851 Ecole Polytechnique Fédérale de Lausanne [EPFL]
GIOVANOLA, Jacques
302851 Ecole Polytechnique Fédérale de Lausanne [EPFL]

URI
http://hdl.handle.net/10985/10880
Date
2016
Journal
Production Engineering

Résumé

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 tool-material data bases. Research with the machine will focus on validating the application of macrocutting data to at least a range of microcutting applications and to define the limits beyond which such applications are no longer possible. The paper describes the machine and its design specifications and provides the validation of the performances claimed. The machine can cut in a reproducible manner with depths of cut as low as 1 micronm, at speeds in the range 50 to 1000 mm/s while measuring the cutting and thrust forces. The variability in nominal depth of cut is equal or better than 1 micronm. Application examples illustrate the influence of lubrication and lead additions on the cutting process and demonstrate that the machine is indeed suitable for the application for which it was designed.

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Documents liés

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  • Micro-orthogonal Cutting of Metals 
    Communication avec acte
    KERMER, Daniel; ccFROMENTIN, Guillaume; LOUTAN, Olivier; AGEBEBIADE, Kossi; GIOVANOLA, Jacques (European Society for Precision Engineering and Nanotechnology, 2008)
    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 ...
  • Influence of cutting process mechanics on surface integrity and electrochemical behavior of OFHC copper 
    Communication avec acte
    DENGUIR, Lamice; ccFROMENTIN, 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 ...
  • Modeling and Analysis of Five-Axis Milling Configurations and Titanium Alloy Surface Topography 
    Article dans une revue avec comité de lecture
    PRAT, David; ccFROMENTIN, Guillaume; POULACHON, Gerard; DUC, Emmanuel (American Society of Mechanical Engineers, 2016)
    Five-axis milling with a ball-end cutter is commonly used to generate a good surface finish on complex parts, such as blades or impellers made of titanium alloy. The five-axis milling cutting process is not straight forward; ...
  • Flank wear prediction in milling AISI 4140 based on cutting forces PCA for different cutting edge preparations 
    Article dans une revue avec comité de lecture
    DENGUIR, Lamice; BESNARD, Aurélien; ccFROMENTIN, Guillaume; POULACHON, Gerard; ZHU, Xiaowen (Inderscience, 2016)
    One of the criteria mastering the choice of a cutting tool is its wear resistance. For coated inserts, prior to the coating process, edge preparation method choice will impact their performance. So, a classification based ...
  • Process Mechanics and Surface Integrity Induced by Dry and Cryogenic Machining of AZ31B-O Magnesium Alloy 
    Communication avec acte
    MARTINS DO OUTEIRO, Jose Carlos; ROSSI, Frederic; ccFROMENTIN, Guillaume; POULACHON, Gerard; ccGERMAIN, Guénaël; BATISTA, Antonio (Elsevier, 2013)
    The corrosion resistance of magnesium alloys depends mainly on its surface integrity. Previous experimental studies have shown that machining can induces small (nano-scale) grain size, compressive residual stresses and ...

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