Nagata Sho, Nishi Tsuyoshi, Miyake Shugo, Azuma Naoyoshi, Hatori Kimihito, Awano Takaaki, Ohta Hiromichi
Graduate School of Science and Engineering, College of Engineering, Ibaraki University, Hitachi, Ibaraki 316-8511, Japan.
Department of Mechanical Engineering, Kobe City College of Technology, Kobe, Hyogo 651-2194, Japan.
Materials (Basel). 2020 Oct 29;13(21):4848. doi: 10.3390/ma13214848.
A spot periodic heating method is a highly accurate, non-contact method for the evaluation of anisotropy and relative thermophysical property distribution. However, accurately evaluating thermal diffusivity is difficult due to the influence of temperature wave reflection from the whole surface of the sample. This study proposes a method to derive thermal diffusivity using a parameter table based on heat transfer equations using the concept of optimum distance between heating-point and measurement point. This method considers finite sample size, sensitivity distribution of infrared ray detector, intensity distribution of heating laser and sample thickness. In these results, the obtained thermal diffusivity of pure copper corresponded well with previous literature values. In conclusion, this method is considered highly effective in evaluating the thermal diffusivity in the horizontal direction.
点周期加热法是一种用于评估各向异性和相对热物理性质分布的高精度非接触式方法。然而,由于样品整个表面温度波反射的影响,准确评估热扩散率较为困难。本研究提出了一种基于传热方程,利用加热点与测量点之间最佳距离的概念,通过参数表推导热扩散率的方法。该方法考虑了有限的样品尺寸、红外线探测器的灵敏度分布、加热激光的强度分布以及样品厚度。在这些结果中,所获得的纯铜热扩散率与先前文献值吻合良好。总之,该方法被认为在评估水平方向的热扩散率方面非常有效。