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Thermal effusivity measurements of thermal insulators using the photopyroelectric technique in the front configuration

机译:前构造中使用光学电解技术的热绝缘子的热快速测量

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摘要

In the photopyroelectric (PPE) technique in the front configuration one surface of a pyroelectric sensor is illuminated by a modulated laser beam, whereas the other surface is in contact with the sample under study. A frequency scan of the PPE signal allows to measure the thermal effusivity of liquids. Recently, it has been applied to solid samples, by taking into account the effect of the thin grease layer used to guarantee the thermal contact between sample and sensor. In this work, we extend this method to address the challenge of measuring the effusivity of thermal insulators accurately. We have developed a complete model of the PPE signal generation, including heat losses by convection, radiation and conduction to the surrounding gas. Besides, very thin pyroelectric sensors are used since they enhance the sensitivity of the PPE signal to the sample effusivity. Moreover, the sample is placed directly in contact with the sensor, without using any coupling grease, to avoid polluting porous samples. PPE measurements on several thermal insulators (paper, cork, wood and foam) indicate that this method is well suited to retrieve the thermal effusivity of insulators precisely.
机译:在前构造中的光学电气(PPE)技术中,通过调制的激光束照射热电传感器的一个表面,而另一个表面与正在研究的样品接触。 PPE信号的频率扫描允许测量液体的热力速度。最近,通过考虑用于保证样品和传感器之间的热接触的薄润滑脂层的效果,它已经应用于固体样品。在这项工作中,我们扩展了这种方法,以解决准确测量热绝缘体的积极性的挑战。我们开发了一种完整的PPE信号产生模型,包括通过对流,辐射和传导到周围气体的热损失。此外,使用非常薄的热电传感器,因为它们增强了PPE信号对样品的灵敏度。此外,样品直接与传感器接触,而不使用任何耦合润滑脂,以避免污染多孔样品。 PPE在几个热绝缘体(纸张,软木,木材和泡沫)上的测量表明,这种方法非常适合于精确地检索绝缘体的热量性。

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