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Numerical Study Of Melted Particles Crush Metallic Substrates And The Interaction Between Particles And A Plasma Beam In The Thermal Projection Process

机译:热投影过程中熔化的颗粒粉碎金属基底的数值研究以及颗粒与等离子束之间的相互作用

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摘要

Plasma spray processes have been widely used to produce high performance coatings of a wide range of materials (metallic, non-metallic, and ceramics), offering protection from, e.g. wear, extreme temperature, chemical attack and environmental corrosion. To obtain good quality coatings, spray parameters must be carefully selected. Due to the large variety in process parameters, it is difficult to optimize the process for each specific coating and substrate combinations. Furthermore modelling the spray process allows a better understanding of the process sequences during thermal spraying. The simulation of coating formation to estimate the process parameters is an important tool to develop new coating structures with defined properties. In this work, the process of plasma sprayed coating has been analyzed by numerical simulation. Commercial code is used to predict the plasma jet characteristics, plasma-particle interaction, and coating formation. Using this model we can obtain coating microstructure and characteristics which form a foundation for further improvement of an advanced ceramic coating build up model.
机译:等离子喷涂工艺已被广泛用于生产多种材料(金属,非金属和陶瓷)的高性能涂层,从而提供了保护,例如磨损,极端温度,化学腐蚀和环境腐蚀。为了获得高质量的涂料,必须仔细选择喷涂参数。由于工艺参数种类繁多,因此很难针对每种特定的涂层和基材组合优化工艺。此外,对喷涂过程进行建模可以更好地了解热喷涂过程中的过程顺序。模拟涂层形成以估算工艺参数是开发具有确定性能的新型涂层结构的重要工具。在这项工作中,已经通过数值模拟分析了等离子喷涂的过程。商业代码用于预测等离子流特征,等离子-颗粒相互作用和涂层形成。使用该模型,我们可以获得涂层的微观结构和特性,这些特性为进一步改进高级陶瓷涂层建立模型奠定了基础。

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