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Modeling and Analysis of Five-Axis Milling Configurations and Titanium Alloy Surface Topography

Article dans une revue avec comité de lecture
Auteur
PRAT, David
FROMENTIN, Guillaume
127742 Laboratoire Bourguignon des Matériaux et Procédés [LABOMAP]
POULACHON, Gerard
DUC, Emmanuel
186882 Institut Pascal [IP]

URI
http://hdl.handle.net/10985/10958
DOI
10.1115/1.4032083
Date
2016
Journal
Journal of Manufacturing Science and Engineering

Résumé

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; local cutting conditions depend a lot on the geometrical configuration relating to lead and tilt angles. Furthermore, the surface quality is greatly affected by the cutting conditions that define the milling configuration. This study presents a geometrical model of five-axis milling in order to determine the effective cutting conditions, the milling mode, and the cutter location point. Subsequently, an analysis of surface topography is proposed by using the geometrical model, local criteria, and a principle component analysis of experimental data. The results show the effects of local parameters on the surface roughness, in relation to the lead and tilt angles.

Fichier(s) constituant cette publication

Nom:
LABOMAP_JMSE_2016_PRAT.pdf
Taille:
1.312Mo
Format:
PDF
Description:
Article scientifique
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  • Laboratoire des Matériaux et Procédés (LaBoMaP)

Documents liés

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  • Experimental Analysis and Geometrical Modeling of Cutting Conditions Effect in 5 Axis Milling with Ti6Al4V Alloy 
    Communication avec acte
    PRAT, David; FROMENTIN, Guillaume; POULACHON, Gerard; DUC, Emmanuel (ELSEVIER, 2012)
    The 5 axis continuous milling is an advanced technique for free-form surfaces manufacturing. In finishing, this technique uses ball-end or hemispherical milling cutter. This type of operation for 5 axis milling allows the ...
  • New mechanistic cutting force model for milling additive manufactured Inconel 718 considering effects of tool wear evolution and actual tool geometry 
    Article dans une revue avec comité de lecture
    DUCROUX, Edouard; FROMENTIN, Guillaume; ccVIPREY, Fabien; PRAT, David; D’ACUNTO, Alain (Society of Manufacturing Engineers, 2021)
    Inconel 718 is widely used in aircraft industry due to its properties. Nevertheless, its mechanical and chemical properties make it hard-to-cut. As a consequence, additive manufacturing is developed in order to get near ...
  • Modeling of high-feed milling and surface quality applied to Inconel 718 
    Article dans une revue avec comité de lecture
    ccJACQUET, Thomas; FROMENTIN, GUILLAUME; PRAT, David; ccVIPREY, Fabien (Elsevier, 2024)
    In modern manufacturing, machining remains a vital process for complex mechanical components. In particular, the aerospace industry extensively employs high-feed milling techniques to machine complex geometries from ...
  • Analysis and modelling of trochoidal milling in Inconel 718 
    Communication avec acte
    DUCROUX, Edouard; PRAT, David; ccVIPREY, Fabien; FROMENTIN, Guillaume; D’ACUNTO, Alain (Elsevier BV, 2019)
    Trochoidal path increases productivity, tool life and reduces cutting forces compare to classical slot milling. Consequently, this strategy is well adapted to improve the milling performance in refractory alloy such as ...
  • Analytical and experimental investigations on thread milling forces in titanium alloy 
    Article dans une revue avec comité de lecture
    ARAUJO, Anna Carla; FROMENTIN, Guillaume; POULACHON, Gerard (Elsevier, 2013)
    This study deals with the thread milling process that is considered a complex machining technique due to its elaborated tool geometry and its tridimensional tool trajectory. It needed advanced research on the threading ...

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