One-level two points method for estimation of thermal diffusivity by the converging thermal wave method

D. Kim, D. Kim, S. Kim, O. Troitsky, J.C. Kim, S. Lee
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Abstract

The thermal diffusivity of several kinds of metal sheet was measured by the converging thermal wave method. This is a typical method which can obtain the in-plane thermal diffusivity by measurement of the temperature evolution at the center of a pulsed annular laser beam when the laser beam irradiated the surface of the samples. However, the rapid temperature increase, nonlinearity of the infrared detector, and convection heat loss from the sample surface in the latter part of the temperature evolution can sources of error. In this study, when the temperature of the center reached half of the maximum, the times t/sub 1/ and t/sub 2/ which were the ascending and descending parts of the temperature evolution curve, respectively, were determined and other points t/sub 1/' and t/sub 2/' were determined by increasing the temperature to 90% of the maximum with each 10% successively. By using the determined times, the variation of thermal diffusivity was investigated and compared with results from existing methods and reference values, and analyzed in terms of the reduction of errors.
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用收敛热波法估计热扩散系数的一级两点法
用收敛热波法测量了几种金属薄板的热扩散系数。这是一种典型的通过测量脉冲环形激光束照射样品表面时,其中心温度演变来获得样品面内热扩散系数的方法。然而,在温度演变的后期,红外探测器的快速升温、非线性以及样品表面的对流热损失都是误差的来源。在本研究中,当中心温度达到最大值的一半时,分别确定温度演化曲线的上升段t/sub 1/和下降段t/sub 2/,并依次将温度提高到最大值的90%,分别确定t/sub 1/'和t/sub 2/'点。利用确定的时间,研究了热扩散系数的变化,并与现有方法和参考值的结果进行了比较,分析了误差减小的情况。
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