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Proceedings of the Institution of Mechanical Engineers, Part B: Journal of Engineering Manufacture | 2017

Tool design effect on microlubrication spray efficiency in milling using inner channels

Arnaud Duchosal; Roger Serra; René Leroy; David Bonhoure; Hédi Hamdi

This study consisted in investigating parameters that significantly influence the spray efficiency of minimum quantity lubrication in a milling tool with inner channels. An initial experimental approach was used to estimate the oil mist consumption and outlet particle velocities with different inlet pressures, for different shapes of inner channels, without rotation (static part). An experimental versus simulation comparison was undertaken between outlet velocities as a function of inlet pressure. The Reynolds-averaged Navier–Stokes model with the Lagrangian multiphase models was validated by comparing experimental and numerical outlet velocities for different inlet pressures. A numerical rotating tool with inner channels was used with the validated model in the second numerical simulation to analyze the influences of inlet conditions (inlet pressure) based on the tool shape and the rotation velocity, in a dynamic approach. The main objective of the oil mist is to reach the cutting edge (qualifying the minimum quantity lubrication spray efficiency) depending on the inlet conditions (inlet pressures) and the machining configurations (rotation velocities) by analyzing the streamlines of the oil mist particles. The study pointed out the tool design effect combined with its rotation velocity on the oil mist capability to reach the cutting edge. This study offered a trend of parameter sets to provide correct inlet parameters based on machining configurations. At high rotation speed, the inlet pressures needed to be high enough to counter the aerodynamic effects occurred by the tool design.


The International Journal of Advanced Manufacturing Technology | 2013

An experimental investigation on oil mist characterization used in MQL milling process

Arnaud Duchosal; René Leroy; Laurent Vecellio; Christophe Louste; Naryanaswami Ranganathan


International Journal of Machine Tools & Manufacture | 2015

Numerical modeling and experimental measurement of MQL impingement over an insert in a milling tool with inner channels

Arnaud Duchosal; Sana Werda; Roger Serra; René Leroy; Hédi Hamdi


Journal of Cleaner Production | 2015

Numerical optimization of the Minimum Quantity Lubrication parameters by inner canalizations and cutting conditions for milling finishing process with Taguchi method

Arnaud Duchosal; Roger Serra; René Leroy; Hédi Hamdi


Mechanics & Industry | 2014

Numerical study of the inner canalization geometry optimization in a milling tool used in micro quantity lubrication

Arnaud Duchosal; Roger Serra; René Leroy


Measurement | 2016

Experimental method to analyze the oil mist impingement over an insert used in MQL milling process

Arnaud Duchosal; Sana Werda; Roger Serra; Cédric Courbon; René Leroy


Journal of Manufacturing Processes | 2015

Numerical steady state prediction of spitting effect for different internal canalization geometries used in MQL machining strategy

Arnaud Duchosal; Roger Serra; René Leroy; Christophe Louste


Procedia CIRP | 2016

Minimum Quantity Lubrication: Influence of the Oil Nature on Surface Integrity

Sana Werda; Arnaud Duchosal; Guenhael Le Quilliec; Antoine Morandeau; René Leroy


Materials Today: Proceedings | 2018

Experimental Investigation on Work Hardening and Residual Stress during Machining of Inconel718

M. Anthony Xavior; Arnaud Duchosal; P. Jeyapandiarajan


The International Journal of Advanced Manufacturing Technology | 2017

Minimum quantity lubrication advantages when applied to insert flank face in milling

Sana Werda; Arnaud Duchosal; Guenhael Le Quilliec; Antoine Morandeau; René Leroy

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René Leroy

François Rabelais University

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Guenhael Le Quilliec

François Rabelais University

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Hédi Hamdi

Ecole nationale d'ingénieurs de Saint-Etienne

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Cédric Courbon

École Normale Supérieure

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