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Nanoparticles Modeling in Axially Injection Suspension Plasma Spray of Zirconia and Alumina Ceramics

机译:氧化锆和氧化铝陶瓷的轴向注射悬浮等离子喷涂中的纳米颗粒建模

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Suspension plasma spray (SPS) is a thermal spray method in which nanoparticles are injected into the plasma jet with the help of suspension droplets to achieve thin and finely structured nanocoatings. The nanoparticles experience three in-flight stages: injection within the suspension droplets, discharge of the nanoparticle agglomerates after the evaporation of the suspension solvent, and tracking of the nanoparticle or agglomerates during the momentum and heat transfer with the plasma jet before coating. A numerical model is proposed in this paper for nanoparticle injection, discharge, acceleration, heating, melting, and evaporation. Initial values of suspension droplet size and agglomerate size are selected according to typical experimental data. Noncontinuum effects on particle acceleration and heating, known as Knudsen effects, are considered, as well as the influence of evaporation on the heat transfer. After a comparison with the experimental data, this nanoparticle model is applied for zirconia and alumina axially injected into the suspension plasma spray. Trajectory, velocity, and temperature of the in-flight nanoparticles are predicted for different initial sizes ranging from 30 nm to 1.5μm; the distributions of the particle characteristics for multiple particles in the spray are also presented. The effects of powder size and material, power input, plasma gas flow rate, and standoff distance on the nanoparticle characteristics have been investigated and discussed.
机译:悬浮等离子喷涂(SPS)是一种热喷涂方法,在该方法中,借助悬浮液滴将纳米颗粒注入等离子流中,以实现薄而细的纳米涂层。纳米颗粒经历三个飞行阶段:在悬浮液滴内注入,在悬浮溶剂蒸发后纳米颗粒附聚物的排出,以及在动量和在涂覆之前用等离子流传热期间跟踪纳米颗粒或附聚物。本文提出了一个用于纳米粒子注入,排放,加速,加热,熔化和蒸发的数值模型。根据典型的实验数据选择悬浮液液滴尺寸和附聚物尺寸的初始值。考虑了对粒子加速和加热的非连续性影响(称为努德森效应),以及蒸发对传热的影响。在与实验数据进行比较之后,将该纳米颗粒模型应用于轴向注入悬浮液等离子喷涂的氧化锆和氧化铝。预测飞行中纳米粒子在30 nm至1.5μm范围内的不同初始尺寸的轨迹,速度和温度;还介绍了喷雾中多个颗粒的颗粒特性分布。研究和讨论了粉末尺寸和材料,功率输入,等离子气体流速和隔离距离对纳米颗粒特性的影响。

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