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Parallel Imaging of Thickness Variations and Disbonding of Thermal Barrier Coatings by Time-Resolved Infrared Radiometry (TRIR)

机译:时间分辨红外辐射(TRIR)对热障涂层厚度变化和剥离的平行成像

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摘要

Pulsed photothermal radiometry has been shown to be a useful thermally-based nondestructive evaluation technique for various thin films and layered specimens [1,2]. In this method the time development of the surface temperature is studied for both heating and cooling, during and after the application of a step heating pulse of duration, T. In this paper, we show that the method gives quantitative information about layered materials including measurement of coating thickness and the detection and characterization of disbonding between layers. Since all times are monitored, it is not necessary to know the thickness of the coating provided the heating pulse is set longer than the thermal transit time of the coating. As a result, both coating thickness and the integrity of the coating-substrate bond can be determined simultaneously.
机译:脉冲光热辐射法已被证明是一种有用的基于热的无损评估技术,适用于各种薄膜和分层样品[1,2]。在此方法中,研究了在施加持续时间T的步进加热脉冲期间和之后,加热和冷却时表面温度随时间的变化。在本文中,我们证明了该方法可提供有关分层材料的定量信息,包括测量涂层厚度的检测以及层间剥离的检测和表征。由于所有时间均受到监控,因此只要加热脉冲的设置时间长于涂层的热传递时间,就不必知道涂层的厚度。结果,可以同时确定涂层厚度和涂层-基材结合的完整性。

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