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Experimental Investigation of Chatter Dynamics in Thin-walled Tubular Parts Turning

Communication avec acte
Auteur
GERASIMENKO, Artem
DUCHEMIN, Jérôme
GOUSKOV, Alexander
LORONG, Philippe
86289 Laboratoire Procédés et Ingénierie en Mécanique et Matériaux [PIMM]
ccGUSKOV, Mikhail

URI
http://hdl.handle.net/10985/11876
Date
2016

Résumé

Chatter prediction is nowadays frequently carried out for machining operations involving deformable parts or tools. These analyses are commonly based on the uncoupled elements of the system: frequency response of the deformable parts under non-rotating conditions and cutting law. The present investigation puts forward the dynamics of a thin-walled tubular part during straight axial turning undergoing chatter instability. Studied system’s peculiarities include quasi-static nominal cutting conditions and twin flexural modes featuring strong variation of modal characteristics along the pass. The measurement records, based mainly on fixed-frame non-contact eddy-current displacement probes, are performed during the machining operation. Additional hammer modal analysis tests are also carried out. As can be observed from time and spectral analysis of the records, the system's response features several characteristic phenomena as, for example, twin mode separation. The influence of different factors, such as the additional stiffness due to the tool presence, gyroscopic effects and the fixed sensors measurement on rotating part is investigated.

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Documents liés

Visualiser des documents liés par titre, auteur, créateur et sujet.

  • Variable compliance-related aspects of chatter in turning thin-walled tubular parts 
    Communication avec acte
    GERASIMENKO, Artem; DUCHEMIN, Jérôme; GOUSKOV, Alexander; LORONG, Philippe; ccGUSKOV, Mikhail (ELSEVIER, 2015)
    Thin tubular parts are often subject to turning process during manufacturing. The increasing compliance of the workpiece, which is associated to tool displacement and to matter removal, can give rise to chatter, leading ...
  • Analytical modeling of a thin-walled cylindrical workpiece during the turning process. Stability analysis of a cutting process 
    Article dans une revue avec comité de lecture
    GERASIMENKO, Artem; GOUSKOV, Alexander; SHOKHIN, Alexander; LORONG, Philippe; ccGUSKOV, Mikhail (Inderscience, 2017)
    The purpose of this work is to develop a mathematical model of the dynamics of turning a thin-walled cylindrical shell. This model uses a finite number of degrees of freedom and takes into account the variability of dynamic ...
  • Analysis of Indirect Measurement of Cutting Forces Turning Metal Cylindrical Shells 
    Communication avec acte
    KONDRATENKO, Kirill; GOUSKOV, Alexander; PANOVKO, Grigory; LORONG, Philippe; ccGUSKOV, Mikhail (Springer International Publishing Switzerland, 2015)
    Cutting forces measurement is an important component of the ma- chining processes development and control. The use of conventional direct meas- urement systems is often impossible as they interfere in the process’s dynamics. ...
  • Influence of flank face on the condition of chatter self-excitation during turning 
    Article dans une revue avec comité de lecture
    GOUSKOV, Alexander M.; PANOVKO, Grigory; LORONG, Philippe; ccGUSKOV, Mikhail (Inderscience, 2017)
    This paper addresses a modelling approach for cutting tool and workpiece material interaction with ploughing taken into account. In the proposed model the distributed contact on the flank face is replaced by a concentrated ...
  • Phénomènes dynamiques en usinage : Prédiction de l’état géométrique des surfaces usinées 
    Communication sans acte
    COFFIGNAL, Gérard; DUCHEMIN, Jérôme; ILLOUL, Lounès; GENGEMBRE, Christophe; LORONG, Philippe; ccGUSKOV, Mikhail (2013)
    Présentation concernant la modélisation des phénomènes dynamiques en usinage. Cette modélisation a pour particularité de permettre la prédiction de la géométrie des surfaces usinées (défauts de forme, d'ondulation) que la ...

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