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Process Mechanics and Surface Integrity Induced by Dry and Cryogenic Machining of AZ31B-O Magnesium Alloy

Type
Communications avec actes
Author
OUTEIRO, José
127742 Laboratoire Bourguignon des Matériaux et Procédés [LaBoMaP]
ROSSI, Frédéric
127742 Laboratoire Bourguignon des Matériaux et Procédés [LaBoMaP]
FROMENTIN, Guillaume
127742 Laboratoire Bourguignon des Matériaux et Procédés [LaBoMaP]
POULACHON, Gérard
127742 Laboratoire Bourguignon des Matériaux et Procédés [LaBoMaP]
GERMAIN, Guénaël
206863 Laboratoire des Arts et Métiers ParisTech d'Angers - Procédés Matériaux Durabilité [LAMPA - PMD]
BATISTA, Antonio

URI
http://hdl.handle.net/10985/7015
Date
2013

Abstract

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 basal plane crystallographic texture, which significantly improve the corrosion resistance of magnesium alloy. These studies have focused on the positive effects of cryogenic cooling and tool edge radius preparation. In this paper, the influence of a wide range of cutting process parameters (including cut-ting speed, feed, tool rake angle, tool edge radius and cooling conditions) acting on the cutting mechanics and surface integrity produced during machining of AZ31B-O magnesium alloy have been studied experimentally and numerically.

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