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Modeling of Microstructural Evolution in an MCrAlY Overlay Coating on Different Superalloy Substrates

机译:不同高温合金基底上MCrAlY覆盖涂层的微观结构演变建模

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摘要

A multicomponent, one-dimensional diffusion model that was developed for simulating microstructure evolution in coated gas turbine blade systems has been used to compare the phase structures of three MCrAlY coated superalloy systems. The model is based on finite differences and incorporates oxidation and equilibrium thermodynamic computations. The superalloy substrates considered were the nickel-based superalloy CMSX-4, a high-Cr single-crystal superalloy, and a cobalt-based MAR-M509, and these were all coated with an MCrAlY bond coat of similar composition. The results predicted by the model have been compared with similar experimental systems. The model can predict many features observed experimentally and therefore can be expected to be a useful tool in lifetime prediction and microstructural assessment of turbine blade systems based on superalloys. The work also highlighted the fact that for a given coating, the phase evolution within system is dependent on the substrate material.
机译:已开发出一种用于模拟涂层燃气轮机叶片系统中微观结构演变的多组分一维扩散模型,用于比较三种MCrAlY涂层高温合金系统的相结构。该模型基于有限差分,并结合了氧化和平衡热力学计算。所考虑的超级合金基材为镍基超级合金CMSX-4,高铬单晶超级合金和钴基MAR-M509,它们均涂有相似成分的MCrAlY粘结涂层。该模型预测的结果已与类似的实验系统进行了比较。该模型可以预测通过实验观察到的许多特征,因此可以预期将成为基于超合金的涡轮叶片系统寿命预测和微结构评估的有用工具。这项工作还强调了以下事实:对于给定的涂层,系统内的相变取决于基材的材料。

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