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Numerical approach and optimization of the combustion and gas dynamics in High Velocity Suspension Flame Spraying (HVSFS)

机译:高速悬浮火焰喷涂(HVSFS)的数值方法和燃烧与气体动力学优化

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摘要

The interest in submicron and nano-structured layers applied by thermal spray technologies on different surfaces has been significantly increased during the last decade. Conventional HVOF spraying processes are not suitable to achieve submicron and nano-particles. Therefore, High Velocity Suspension Flame Spraying (HVSFS) has been developed for the processing of nano-structured spray material to achieve dense surface layers in supersonic mode with a refined micro- or nano-structure, from which superior mechanical and physical properties are expected. However. the chemical and thermodynamic phenomena occurring in the HVSFS reacting flow field are a challenging, multidisciplinary issue. This study is intended to analyze and understand the HVSFS combustion and flow dynamic system on the basis of a CFD model and numerical calculation. The final aim is an optimization of the process parameters by variations during simulation experiments.
机译:在过去的十年中,通过热喷涂技术在不同表面上施加的亚微米和纳米结构层的兴趣已大大增加。常规的HVOF喷涂工艺不适合获得亚微米和纳米颗粒。因此,已开发出高速悬浮火焰喷涂(HVSFS)用于处理纳米结构喷涂材料,以超音速模式获得具有精细微结构或纳米结构的致密表面层,​​从而有望获得优异的机械和物理性能。然而。 HVSFS反应流场中发生的化学和热力学现象是一个具有挑战性的多学科问题。本研究旨在基于CFD模型和数值计算来分析和理解HVSFS燃烧和流动动力系统。最终目标是通过仿真实验中的变化来优化工艺参数。

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