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Novel in-situ methodology for geometric error characterisation of rotary axis errors on multi-axis machine tool.

Communication avec acte
Auteur
MALDONADO PIMIENTO, Daniel
127742 Laboratoire Bourguignon des Matériaux et Procédés [LABOMAP]
ccVIPREY, Fabien
127742 Laboratoire Bourguignon des Matériaux et Procédés [LABOMAP]
ccLAVERNHE, Sylvain
1051092 Laboratoire Universitaire de Recherche en Production Automatisée [LURPA]
ccPOULACHON, Gerard
127742 Laboratoire Bourguignon des Matériaux et Procédés [LABOMAP]

URI
http://hdl.handle.net/10985/25546
Date
2023-03-14

Résumé

Complex mechanical parts with high geometry and dimensional accuracy require multi-axis machining with low volumetric errors. To achieve such precision in the micrometer range, the geometric errors of the machine tool must be correctly identified and compensated. This article proposes a new methodology to measure directly the geometric errors of the rotary axes on machine tool. The methodology consists of a system of several non-contact sensors that are strategically placed around a datum cylinder. This system is held on the machine spindle and remains static over the entire measurement. The relative motion between the sensors and the cylinder is obtained by rotating the table of the multi-axis machine tool. The cylinder could be fast centered and leveled by using micro linear stages. A rotation stage enables to decouple the rotary axis motion from the datum cylinder rotation, consequently carry out methodologies of errors separation associated with multiprobe and multistep methods.

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2023-09-14
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  • Laboratoire des Matériaux et Procédés (LaBoMaP)

Documents liés

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  • Modelling and characterisation of geometric errors on 5-axis machine-tool 
    Article dans une revue avec comité de lecture
    ccVIPREY, Fabien; NOUIRA, Hichem; ccLAVERNHE, Sylvain; TOURNIER, Christophe (EDP Sciences, 2019)
    This research work deals with the geometric modelling of 5-axis machine tool based on a standard-ised parameterisation of geometric errors with the aim to decrease the volumetric error in the workspace. The identification ...
  • Prediction of stability in boring using a multistep tool 
    Article dans une revue avec comité de lecture
    SELMI, Jaouher; SELMI, Jaouher; SELMI, Jaouher; SELMI, Jaouher; ccLORONG, Philippe; ccLORONG, Philippe; ccLORONG, Philippe; ccLORONG, Philippe; COSTES, Jean-Philippe; COSTES, Jean-Philippe; COSTES, Jean-Philippe; COSTES, Jean-Philippe; ccPOULACHON, Gerard; ccPOULACHON, Gerard; ccPOULACHON, Gerard; ccPOULACHON, Gerard; CARRAS, Patrice; CARRAS, Patrice; CARRAS, Patrice; CARRAS, Patrice (Springer VerlagSpringer VerlagSpringer VerlagSpringer Verlag, 2016)
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  • Response of a numerically controlled machine-tool to the modification of its position feedback using real-time solution 
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    ccGUEVEL, Flore; ccEUZENAT, Charly; ccVIPREY, Fabien; ccFROMENTIN, Guillaume (euspen, 2024-06-14)
    The dimensional accuracy of machined parts can be influenced by numerous factors, among which inaccuracies in the machine’s structural loop and thermal expansion of components have the biggest impact. Hence, highly accurate ...
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    TOUBHANS, Bastien; ccVIPREY, Fabien; ccFROMENTIN, Guillaume; KARAOUNI, Habib (Elsevier BV, 2019)
    Complex workpieces may contain thin sections that are more likely to deform during machining due to cutting forces. It may result in form errors on the final product. Then, it is important to anticipate such defects when ...
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    DUCROUX, Edouard; PRAT, David; ccVIPREY, Fabien; ccFROMENTIN, Guillaume; ccALAIN, D'acunto (Elsevier BV, 2019)
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