Abstract

An alternative photopyroelectric (PPE) technique that combines the front detection configuration (FPPE) with the thermal-wave-resonator-cavity (TWRC) method is proposed for direct measurement of thermal effusivity of solid materials inserted as backings in the FPPE detection cell. The method uses the scan of the normalized PPE phase as a function of sample's thickness, in the thermally thin regime for the sensor and liquid layer, and thermally thick regime for the backing material. The value of backing's thermal effusivity results from the optimization of the fit of the phase of the signal, performed with sample's thickness and backing's thermal effusivity as fitting parameters. The paper presents experimental results on several solid materials (inserted as backing in the cell), with different values of thermal effusivity (brass, steel, wood) and two liquids (ethylene glycol, water) largely used in the FPPE-TWRC cells. The paper stresses mainly on the sensitivity of the technique to different liquid/backing effusivity ratios. It seems that the method is suitable especially when investigating solids with values of thermal effusivity close to the effusivity of the liquid layer.

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