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Full-Scale Numerical Simulation of Plasma-Sprayed Functionally Gradient Materials

机译:等离子体喷涂功能梯度材料的全尺寸数值模拟

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To develop novel and advanced thermal barrier coatings, full-scale numerical simulation of plasma-sprayed functionally gradient materials is conducted in this paper, including the prediction of basic parameters at the nozzle exit, simulation of three dimensional simulation of the plasma jet, modeling of the interaction between the plasma jet and the particles, calculation of flight trajectories and temperature history of flying metal and ceramic particles, the interaction between the molten particles and the substrate, as well as the deposition process of the coatings. Various complex phenomena, such as turbulent effects with chemical reactions in the plasma jet, dispersion status of the particles onto the substrate, and the composition distribution of the functionally gradient materials, are fully taken into account. The numerical simulation results are found to be in good agreement with experimental evidence.
机译:为了开发新颖和先进的热阻挡涂层,在本文中进行了等离子体喷涂功能梯度材料的全尺寸数值模拟,包括喷嘴出口的基本参数的预测,仿真等离子体喷射的三维模拟,造型等离子体射流与颗粒之间的相互作用,飞行轨迹的计算和飞行金属和陶瓷颗粒的温度历史,熔融颗粒与基材之间的相互作用,以及涂层的沉积过程。各种复杂现象,如湍流效果与等离子体射流中的化学反应,颗粒在基板上的分散状态以及功能梯度材料的组成分布,完全考虑。发现数值模拟结果与实验证据同时良好。

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