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Nondestructive technique of measuring heat conductivity of thermal barrier coatings

机译:测量热障涂层导热系数的无损技术

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摘要

A non-destructive technique for measuring effective thermal conductivity of thermal barrier coatings (TBCs) was developed. The heat conduction problem in the sample is solved numerically, making this technique applicable to bodies of elements shape covered by TBCs. The principle of the experiment relies on locally heating the sample by a laser flash and recording the time and space variation of the so generated temperature field on the heated surface by an IR camera. Both laser and camera are located on the same side of the heated surface. The thermal conductivity is retrieved by an inverse method where the Finite Element solver is invoked iteratively minimizing the discrepancy between the measured and simulated results. The geometry of the sample is captured by a laser scanner twice: before and after the TBC is deposited. Results are compared with measurements conducted by a commercial Laser Flash Apparatus (LFA) achieving good agreements.
机译:开发了一种用于测量热障涂层(TBC)有效导热系数的无损技术。数值上解决了样品中的导热问题,使该技术适用于TBC覆盖的元素形状的物体。实验原理依赖于通过激光闪光灯对样品进行局部加热,并通过红外热像仪记录所产生的温度场在加热表面上的时间和空间变化。激光和照相机都位于加热表面的同一侧。可通过反方法检索导热系数,在该方法中,迭代调用有限元求解器,以最小化测量结果与模拟结果之间的差异。样品的几何形状由激光扫描仪捕获两次:在TBC沉积之前和之后。将结果与商用激光闪光设备(LFA)进行的测量相比较,可以达成良好的一致性。

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