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首页> 外文期刊>Modern Physics Letters, B. Condensed Matter Physics, Statistical Physics, Applied Physics >A theoretical study for photothermal deflection for the thermal conductivity measurement of anisotropic materials
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A theoretical study for photothermal deflection for the thermal conductivity measurement of anisotropic materials

机译:各向异性材料热导率测量的光热挠度理论研究

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摘要

We have analyzed the three-dimensional thermal conduction in anisotropic materials using nonsymmetric-Fourier transforms. The distribution of temperature fields which corresponds to the variation of the anisotropic ratio of thermal conductivities was obtained. The differences of the temperature fields for each material give rise to distinctions in the deflection of a probe beam. By using the relation between the temperature fields and the deflection of the probe beam, a complete theoretical treatment of the photothermal deflection has been performed for thermal conductivity measurement in an anisotropic medium. Principal and effective thermal conductivity were determined from the deflection angle and phase angle with the relative position between the heating and probe beams. The influence of the parameters, such as modulation frequency of the heating beam, the thermal conductivity, the angle between crystalline direction and probe beam direction, was investigated. Consequently, the overall effects between both thermal properties of anisotropic materials and experimental parameters and deflection signals were proposed in this study.
机译:我们已经使用非对称傅立叶变换分析了各向异性材料中的三维热传导。获得了对应于导热系数各向异性比变化的温度场分布。每种材料的温度场的差异引起探测光束偏转的区别。通过利用温度场和探测光束的挠度之间的关系,对各向异性介质中的热导率测量进行了光热挠度的完整理论处理。根据偏转角和相位角以及加热光束和探测光束之间的相对位置确定主导热系数和有效导热系数。研究了诸如加热束的调制频率,热导率,结晶方向与探测束方向之间的夹角等参数的影响。因此,本研究提出了各向异性材料的热性能与实验参数和偏转信号之间的整体影响。

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