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2018 | OriginalPaper | Buchkapitel

3. Quantitative Calorimetry and TSA in Case of Low Thermal Signal and Strong Spatial Gradients: Application to Glass Materials

verfasst von : Guillaume Corvec, Eric Robin, Jean-Benoît Le Cam, Pierre Lucas, Jean-Christophe Sangleboeuf, Frédéric Canevet

Erschienen in: Residual Stress, Thermomechanics & Infrared Imaging, Hybrid Techniques and Inverse Problems, Volume 8

Verlag: Springer International Publishing

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Abstract

In the present paper, the thermo-mechanical characterization of a holed glass sample under cyclic loading is carried out. Due to the low thermoelastic response obtained for such a material, the thermal movie has been preliminary filtered. The experimental stress field obtained from the Thermoelastic Stress Analysis (TSA) is well correlated to the finite element model. It validates both the use of this experimental technique to study the thermoelastic response of brittle materials and the filtering methodology. Finally, the corresponding calorimetric response has been determined by using a simplified formulation of the heat diffusion equation. This permits to quantify heat sources and to carry out energy balances.

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Metadaten
Titel
Quantitative Calorimetry and TSA in Case of Low Thermal Signal and Strong Spatial Gradients: Application to Glass Materials
verfasst von
Guillaume Corvec
Eric Robin
Jean-Benoît Le Cam
Pierre Lucas
Jean-Christophe Sangleboeuf
Frédéric Canevet
Copyright-Jahr
2018
DOI
https://doi.org/10.1007/978-3-319-62899-8_3

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