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Comparative Performance of PLZT and PVDF Pyroelectric Sensors Used to the Thermal Characterization of Liquid Samples

机译:PLZT和PVDF热电传感器的比较性能用于液体样品的热表征

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摘要

Among the photothermal methods, the photopyroelectric (PPE) technique is a suitable method to determine thermal properties of different kinds of samples ranging from solids to liquids and gases. Polyvinylidene difluoride (PVDF) is one of the most frequently used pyroelectric sensors in PPE technique but has the disadvantage that it can be easily deformed by the sample weight. This deformation could add a piezoelectric effect to the thermal parameters assessment; also PVDF has a narrow temperature operation range when compared with ceramic pyroelectric sensors. In order to minimize possible piezoelectric effects due to sensor deformation, a ceramic of lanthanum modified lead zirconate (PLZT) was used as pyroelectric sensor in the PPE technique. Then, thermal diffusivity of some liquid samples was measured, by using the PPE configuration that denominated the thermal wave resonator cavity (TWRC), with a PLZT ceramic as pyroelectric detector. The performance obtained with the proposed ceramic in the TWRC configuration was compared with that obtained with PVDF by using the same configuration.
机译:在光热方法中,光学电解(PPE)技术是确定不同种类样品的热性质的合适方法,其范围为液体和气体。聚偏二氟化乙烯(PVDF)是PPE技术中最常用的热电传感器之一,但具有缺点,即它可以容易地通过样品重量变形。这种变形可以为热参数评估增加压电效果;与陶瓷热电传感器相比,PVDF也具有窄的温度操作范围。为了使由于传感器变形引起的可能压电效应,在PPE技术中使用镧改性锆锆(PLZT)的陶瓷作为热电传感器。然后,通过使用以PPE构型计为热波谐振器腔(TWRC),以PPE陶瓷作为热电检测器来测量一些液体样品的热扩散性。将在TWRC构型中提出的陶瓷获得的性能与使用相同的配置进行比较,用PVDF获得。

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