Paper
30 September 1998 Minimizing error sources in gauge block mechanical comparison measurements
Bryon S. Faust, John R. Stoup, Eric S. Stanfield
Author Affiliations +
Abstract
Error sources in gage block mechanical comparisons can range from classical textbook examples to a completely counter- intuitive example of diamond probe tip wear at low applied force. Fortunately, there are methods available to metrologists that can successfully be applied to minimize these and other effects. Techniques such as statistical process control, use of check standards, thermal drift eliminating measurement algorithms, improved sensor calibration, and well-tested deformation modeling are used at the National Institute of Standards and Technology to minimize errors. These same methods can be applied by anyone making mechanical comparison gage block measurements.
© (1998) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
Bryon S. Faust, John R. Stoup, and Eric S. Stanfield "Minimizing error sources in gauge block mechanical comparison measurements", Proc. SPIE 3477, Recent Developments in Optical Gauge Block Metrology, (30 September 1998); https://doi.org/10.1117/12.323101
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Cited by 9 scholarly publications.
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KEYWORDS
Calibration

Temperature metrology

Body temperature

Error analysis

Process control

Standards development

Interferometry

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