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Jet Fuel Thermal Stability Investigations using Ellipsometry

机译:使用椭偏仪的喷气燃料热稳定性研究

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Jet fuels are typically used for endothermic cooling in practical engines where their thermal stability is very important. In this work the thermal stability of Sasol IPK (a synthetic jet fuel) with varying levels of naphthalene has been studied on stainless steel substrates using spectroscopic ellipsometry in the temperature range 385-400 K. Ellipsometry is an optical technique that measures the changes in a light beam's polarization and intensity after it reflects off of a thin film to determine the film's thickness and optical properties. All of the tubes used were rated as thermally unstable by the color standard portion of the Jet Fuel Thermal Oxidation Test, and this was confirmed by the deposit thicknesses observed using ellipsometry. A new amorphous model on a stainless steel substrate was used to model the data and obtain the results. It was observed that, as would be expected, increasing the temperature of the tube increased the overall deposit amount for a constant concentration of naphthalene. The repeatability of these measurements was assessed using multiple trials of the same fuel at 385 K. Lastly, the effect of increasing the naphthalene concentration in the fuel at a constant temperature was found to increase the deposit thickness.
机译:喷气燃料通常用于实际发动机中的吸热冷却,在这些发动机中,喷气发动机的热稳定性非常重要。在这项工作中,使用光谱椭圆偏光法在385-400 K的温度范围内,研究了具有不同萘含量的Sasol IPK(一种合成喷气燃料)在不锈钢基材上的热稳定性。光束反射离开薄膜后的偏振和强度,以确定薄膜的厚度和光学特性。通过喷气燃料热氧化试验的颜色标准部分,将所有使用的管评定为热不稳定,这通过椭圆偏光法观察到的沉积物厚度得到证实。在不锈钢基板上使用了新的非晶模型来对数据进行建模并获得结果。可以预见的是,对于恒定浓度的萘,增加管的温度会增加总沉积量。使用同一燃料在385 K的多次试验评估了这些测量的可重复性。最后,发现在恒定温度下增加燃料中萘浓度的作用会增加沉积物的厚度。

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