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3D Measurement and Characterization of Ultra-precision Aspheric Surfaces

Article dans une revue avec comité de lecture
Author
EL HAYEK, Nadim
NOUIRA, Hichem
866 Franche-Comté Électronique Mécanique, Thermique et Optique - Sciences et Technologies (UMR 6174) [FEMTO-ST]
ANWER, Nabil
30464 Laboratoire Universitaire de Recherche en Production Automatisée [LURPA]
DAMAK, Mohamed
BOURDET, Pierre
30464 Laboratoire Universitaire de Recherche en Production Automatisée [LURPA]
ccGIBARU, Olivier
178374 Laboratoire des Sciences de l'Information et des Systèmes : Ingénierie Numérique des Systèmes Mécaniques [LSIS- INSM]

URI
http://hdl.handle.net/10985/8653
Date
2014
Journal
Procedia CIRP

Abstract

Aspheric surfaces have become widely used in various fields ranging from imaging systems to energy and biomedical applications. Although many researches have been conducted to address their manufacturing and measurement, there are still challenges in form characterization of aspheric surfaces considering a large number of data points. This paper presents a comparative study of 3D measurement and form characterization of an aspheric lens using tactile and optical single scanning probing systems. The design of the LNE high precision profilometer, traceable to standard references is presented. The measured surfaces are obtained from the aforementioned system. They are characterized with large number of data points for which a suitable process chain is deployed. The form characterization of the aspheric surfaces is based on surface fitting techniques by comparing the measured surface with the design surface. A comparative study of registration methods and non-linear Orthogonal Least-Squares fitting Methods is presented. Experimental results are analyzed and discussed to illustrate the effectiveness of the proposed approaches.

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