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Novel front-surface thermal-diffusivity measurement method based on phase analysis

机译:基于相位分析的新型前表面热漫射测量方法

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The technique described in this paper is for one-side thermal diffusivity measurement. A single stripe-shaped pulse provided by a flash lamp is used to heat the front surface of a specimen slab. Classical methods for estimating a parameter out of a distribution involve fitting the temperature distribution with its theoretical model. With the technique described in this paper the evolution of the temperature distribution along a line perpendicular to the heated stripe is analyzed in the frequency domain. An estimate of the thermal diffusivity is then obtained from comparison of the phase component behavior with an abacus similarly built from the theoretical model. This technique is valid for any shape of flash lamp pulse (i.e. laser spot), and can be used also for estimating the thermal diffusivity of anisotropic materials. The choice of the stripe shape is due to the limitations of the simulation environment used.
机译:本文中描述的技术用于一侧热漫射测量。由闪光灯提供的单条纹形脉冲用于加热样品板的前表面。用于估计分配的​​参数的经典方法涉及将温度分布与其理论模型拟合。利用本文中描述的技术,在频域中分析沿垂直于加热条纹的线的温度分布的进化。然后从与理论模型类似地构建的算盘的相位分量行为的比较获得热扩散率的估计。该技术对于任何形状的闪光灯脉冲(即激光点)有效,并且还可以用于估计各向异性材料的热扩散性。条纹形状的选择是由于所使用的模拟环境的局限性。

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