Abstract
The depth of curing due to photopolymerization in a commercial dental resin is studied using photothermal radiometry. The sample consists of a thick layer of resin on which a thin metallic layer is deposited guaranteeing full opacity of the sample. In this case, purely thermal-wave inverse problem techniques without the interference of optical profiles can be used. Thermal profiles are obtained by heating the coating with a modulated laser beam and performing a modulation frequency scan. Before each frequency scan, photopolymerization was induced using a high power blue LED. However due to the fact that dental resins are highly light dispersive materials, the polymerization process depends strongly on the optical absorption coefficient inducing a depth dependent thermal diffusion in the sample. It is shown that using a robust depth profilometric inverse method one can reconstruct the thermal diffusivity profile of the photopolymerized resin. © 2010 IOP Publishing Ltd.
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CITATION STYLE
Martínez-Torres, P., Mandelis, A., & Alvarado-Gil, J. J. (2010). Photothermal radiometric determination of thermal diffusivity depth profiles in a dental resin. In Journal of Physics: Conference Series (Vol. 214). Institute of Physics Publishing. https://doi.org/10.1088/1742-6596/214/1/012097
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