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Published on: January 30, 2020
Mechanical stress measurement by an achromatic optical digital speckle pattern interferometry strain sensor with
Matias R Viotti1, Armando Albertazzi G, Walter A Kapp
1Laboratório de Metrologia e Automatização, Universidade Federal de Santa Catarina, CEP 88040-970, Florianópolis, Santa Catarina, Brazil. matiasviotti@gmail.com
Abstract:
This paper shows the optical setup of a radial in-plane digital speckle pattern interferometer which uses an axis-symmetrical diffractive optical element (DOE) to obtain double illumination. The application of the DOE gives in-plane sensitivity which only depends on the grating period of the DOE instead of the wavelength of the laser used as illumination source. A compact optical layout was built in order to have a portable optical strain sensor with a circular measurement area of about 5 mm in diameter. In order to compare its performance with electrical strain sensors (strain gauges), mechanical loading was generated by a four-point bending device and simultaneously monitored by the optical strain sensor and by two-element strain gauge rosettes. Several mechanical stress levels were measured showing a good agreement between both sensors. Results showed that the optical sensor could measure applied mechanical strains with a mean uncertainty of about 5% and 4% for the maximum and minimum principal strains, respectively.
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