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REDUCING DYNAMICALLY-INDUCED DEVIATIONS FOR LINE SCALE CALIBRATION IN NON-IDEAL MEASUREMENT SITUATION

Saulius Kausinis, Algimantas Barakauskas Barakauskas, Rimantas Barauskas, Aurimas Jakstas, Albinas Kasparaitis

Abstract

The paper treats the issue of embedding the traceable length metrology into technological process by performing precise dynamic measurements of line scale in its manufacture line. It addresses the error-related problems specific to line scale calibration in dynamic mode of operation that are caused primarily by dynamic loads. Introducing the dynamic regime of calibration leads to the dynamic calibration error originating due to vibration sources in the structure. This uncertainty contribution should be considered and implicated in the total uncertainty budget. A new 3D finite element model was developed in order to both investigate the influence of dynamical excitations of a long stroke comparator structure and evaluate possible influence of vibrations on geometrical dimensions of the line scale. Both the dynamically induced deviations and current capabilities to carry out line scale calibrations were examined experimentally. The experiments were conducted on the interferometer-controlled comparator setup with a moving microscope that was further developed to reduce the calibration repeatability error.

Keywords
embedded metrology, line scale calibration
Download
IMEKO-WC-2009-TC14-272.pdf
DOI
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IMEKO TC
TC14 - Measurement of Geometrical Quantities

Event details

Event
XIX IMEKO World Congress
Place
Lisbon, PORTUGAL
Time
6 September 2009 - 11 September 2009
Website
http://www.imeko2009.it.pt/

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