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首页> 外文期刊>International Journal of Precision Engineering and Manufacturing >Development of Thermal Gradient Prediction Method for Thermal Barrier Coating
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Development of Thermal Gradient Prediction Method for Thermal Barrier Coating

机译:热障涂层热梯度预测方法的发展

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摘要

Thermal barrier coatings (TBC) protect the components of gas turbines from severe environments by reducing the surface temperature of the substrate. Therefore, an accurate prediction of the temperature gradient (temperature drop) in TBC is an important issue when estimating the exact life of the components. Material properties of bulk ceramic are often used for the analysis. However, Bulk materials do not have the same material properties as thin ceramic layers due to differences in processing and micro structure. Bulk materials also have different interfacial properties since the ceramic is sprayed on different materials with highly conductivity. Therefore, it is necessary to develop a thermal barrier performance test method using a TBC applied to real gas turbine. In this study, a thermal barrier performance test method was developed using the TBC applied to real gas turbine. The thermal gradient of a real gas turbine was analyzed by FEA, using measured conductive heat transfer coefficients. A simple equation that can predict thermal gradient conditions of the components in a gas turbine from measured temperature of the test is proposed Finally, Thermal barrier performance tests on various TBCs were conducted. The test method was verified by comparing the tested data with reference data.
机译:热障涂层(TBC)通过降低基材的表面温度来保护燃气轮机的组件免受恶劣环境的影响。因此,在估算组件的确切寿命时,TBC中温度梯度(温度下降)的准确预测是一个重要的问题。大块陶瓷的材料特性通常用于分析。然而,由于工艺和微观结构的差异,块状材料不具有与薄陶瓷层相同的材料性能。散装材料还具有不同的界面特性,因为陶瓷以高导电性喷涂在不同的材料上。因此,有必要开发一种将TBC应用于实际燃气轮机的热障性能测试方法。在这项研究中,采用了应用于实际燃气轮机的TBC,开发了一种隔热性能测试方法。使用测量的传导热传递系数,通过FEA分析真实燃气轮机的热梯度。提出了一个简单的方程,该方程可以根据测试的温度预测燃气轮机中组件的热梯度条件。最后,对各种TBC进行了热障性能测试。通过将测试数据与参考数据进行比较来验证测试方法。

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