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Numerical Simulation for Surface Modification of Thermal Barrier Coatings by High-Current Pulse Electron Beam

机译:大电流脉冲电子束对热障涂层表面改性的数值模拟

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High current pulsed electron beam is an effective technique for surface sealing of ceramic thermal barrier coatings prepared by electron beam physical vapor deposition. Due to the rapid remelting and solidification, the outer layers of ceramic coatings become smooth and dense, and the protective performance for turbine blades is effectively improved. Because of the complex multi-layered structures in the coatings, a high-current pulsed electron beam treatment requires specific parameter inputs which are related to the temperature field induced by electron energy deposition in the coatings. In this paper, a two-dimensional temperature simulation was performed to demonstrate the melting depth and temperature evolution in ceramic coatings treated by high-current pulsed electron beam. Different energy densities and pulses were studied and discussed for obtaining optimized parameters.
机译:大电流脉冲电子束是对通过电子束物理气相沉积制备的陶瓷热障涂层进行表面密封的有效技术。由于快速的重熔和凝固,陶瓷涂层的外层变得光滑而致密,有效地提高了对涡轮叶片的防护性能。由于涂层中复杂的多层结构,高电流脉冲电子束处理需要特定的参数输入,这些参数输入与涂层中电子能量沉积引起的温度场有关。在本文中,进行了二维温度模拟,以证明通过大电流脉冲电子束处理的陶瓷涂层的熔化深度和温度演变。研究和讨论了不同的能量密度和脉冲,以获得最佳参数。

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