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Thermal Diffusivity Imaging with a Moving Line Source

机译:热扩散性成像与移动线路源

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The thermal lino scan technique has been shown to be an effective technique for rapid inspection of aerospace specimens. Past efforts have focused on thermal measurements far behind the line source where the heat flow normal to the surface is negligible. This paper focuses on measurements closer to the line source to enable the measurement of the thermal diffusivity in the surface normal direction. This measurement also enables an independent characterization of the thermal diffusivity in the direction of motion of the thermal line source. An analytical solution is given for a line source moving with constant velocity across an anisotropic plane. A nonlinear least squares fitting routine is used to reduce the temporal response of a specimen to images of the thermal diffusivity in both the directions normal to the surface and parallel to the motion of the line source. Measurements are presented on specimens with known variations in effective diffusivity. Measurements on these specimens allow a comparison of this technique to more conventional techniques for diffusivity measurement.
机译:热线扫描技术已被证明是一种有效的技术快速检查航空航天标本。过去的努力集中在远后的热测量远远落后于垂直于表面的热流忽略不计。本文侧重于更接近线源的测量,以使表面法线方向的热扩散率测量。该测量还使得能够在热线源的运动方向上独立地表征热漫射率。给出了在各向异性平面上具有恒定速度的线源的分析解决方案。非线性最小二乘拟合例程用于将样本的时间响应降低到垂直于表面的方向上的热扩散率的图像和平行于线源的运动。在具有已知有效扩散率的已知变化的样本上呈现测量。这些标本的测量允许将该技术与更传统的扩散测量技术进行比较。

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