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A New Efficient Stiffness Evaluation Method to Improve Accuracy of Hexapods
Acte de colloque   Open Access

A New Efficient Stiffness Evaluation Method to Improve Accuracy of Hexapods

Vinayak Jagannathrao Kalas, Alain Vissière, Thierry Roux, Olivier Company, Sébastien Krut et Francois PIERROT
ASME 2018 International Design Engineering Technical Conferences and Computers and Information in Engineering Conference, Vol.5A(DETC2018-85986)
42nd Mechanisms and Robotics Conference (MR)
IDETC/CIE 2018 - International Design Engineering Technical Conferences and Computers and Information in Engineering (Quebec City, Canada, 26/08/2018–29/08/2018)
2018

Résumé

Structural compliance of hexapods limits their positioning accuracy. Taking a step towards solving this problem, this paper proposes a new efficient method to evaluate the stiffness of hexapods in order to predict and correct their positioning error due to compliance. The proposed method can be used to predict the six degree of freedom deflection of the platform under load. This method uses a simple lumped stiffness parameter model whose parameters can be estimated using the identification technique presented in this paper. An experimental study with micrometer level measurements performed on a hexapod based micro-positioning system is used to assess the efficiency of the presented method.

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