A contactless temperature measurement system is presented based on a hyperspectral line camera that captures the spectra in the visible and near infrared (VNIR) region of a large set of closely spaced points. The measured spectra are used in a nonlinear least squares optimization routine to calculate a one-dimensional temperature profile with high spatial resolution. Measurements of a liquid melt pool of AISI 316L stainless steel show that the system is able to determine the absolute temperatures with an accuracy of 10%. The measurements are made with a spatial resolution of 12 µm/pixel, justifying its use in applications where high temperature measurements with high spatial detail are desired, such as in the laser material processing and additive manufacturing fields.
CITATION STYLE
Devesse, W., De Baere, D., & Guillaume, P. (2017). High resolution temperature measurement of liquid stainless steel using hyperspectral imaging. Sensors (Switzerland), 17(1). https://doi.org/10.3390/s17010091
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