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Predicting the Thermal Conductivity of AlSi/Polyester Abradable Coatings: Effects of the Numerical Method

机译:预测AlSi /聚酯可磨耗涂层的热导率:数值方法的影响

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摘要

The final target of this study is to achieve a better understanding of the behavior of thermally sprayed abradable seals such as AlSi/polyester composites. These coatings are used as seals between the static and the rotating parts in aero-engines. The machinability of the composite coatings during the friction of the blades depends on their mechanical and thermal effective properties. In order to predict these properties from micrographs, numerical studies were performed with different software packages such as OOF developed by NIST and TS2C developed at the UTBM. In 2008, differences were reported concerning predictions of effective thermal conductivities obtained with the two codes. In this article, a particular attention was paid to the mathematical formulation of the problem. In particular, results obtained with a finite difference method using a cell-centered approach or a nodal formulation allow explaining the discrepancies previously noticed. A comparison of the predictions of the computed effective thermal conductivities is thus proposed. This study is part of the NEWAC project, funded by the European Commission within the 6th RTD Framework programm (FP6).
机译:这项研究的最终目标是更好地了解热喷涂耐磨密封件(例如AlSi /聚酯复合材料)的性能。这些涂层用作航空发动机中静态零件和旋转零件之间的密封。叶片摩擦过程中复合涂层的可加工性取决于其机械和热有效性能。为了从显微照片中预测这些特性,使用了不同的软件包,例如NIST开发的OOF和UTBM开发的TS2C,进行了数值研究。在2008年,据报道在通过两个规范获得的有效热导率的预测上存在差异。在本文中,特别注意了问题的数学表述。特别是,使用以细胞为中心的方法或节点公式的有限差分法获得的结果可以解释先前发现的差异。因此提出了对所计算的有效热导率的预测的比较。这项研究是NEWAC项目的一部分,该项目由欧盟委员会在第六个RTD框架计划(FP6)中资助。

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