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首页> 外文期刊>Journal of Thermal Spray Technology >PIV Validation of 3D Multicomponent Model for Cold Spray Within Nitrogen and Helium Supersonic Flow Field
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PIV Validation of 3D Multicomponent Model for Cold Spray Within Nitrogen and Helium Supersonic Flow Field

机译:氮气和氦超声波流场冷喷涂3D多组分模型的PIV验证

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摘要

This study presents the validation of a developed three-dimensional multicomponent model for cold spray process using two particle image velocimetry (PIV) experiments. The k-epsilon type 3D model developed for spherical titanium particles was validated with the measured titanium particle velocity within a nitrogen and helium supersonic jet. The 3D model predicted lower values of particle velocity than the PIV experimental study that used irregularly shaped titanium particles. The results of the 3D model were consistent with the PIV experiment that used spherical titanium powder. The 3D model simulation of particle velocity within the helium and nitrogen jet was coupled with an estimation of titanium particle temperature. This was achieved with the consideration of the fact that cold spray particle temperature is difficult and expensive to measure due to considerably lower temperature of particles than thermal spray. The model predicted an interesting pattern of particle size distribution with respect to the location of impact with a concentration of finer particles close to the jet center. It is believed that the 3D model outcomes for particle velocity, temperature and location could be a useful tool to optimize system design, deposition process and mechanical properties of the additively manufactured cold spray structures.
机译:本研究介绍了使用两个粒子图像速度(PIV)实验的用于冷喷工艺的开发的三维多组分模型的验证。为球形钛颗粒开发的K-epsilon型3D模型用氮气和氦超声波射流中的测量钛颗粒速度验证。 3D模型预测了比使用不规则形状的钛颗粒的PIV实验研究更低的粒子速度值。 3D模型的结果与使用球形钛粉末的PIV实验一致。氦气和氮气射流内的粒子速度的3D模型模拟与钛颗粒温度的估计偶联。考虑到冷喷雾颗粒温度难以且由于比热喷涂而较低的颗粒温度较低而衡量,因此实现了这一点。该模型预测了相对于靠近喷射中心靠近较细的颗粒的冲击的位置的粒度分布的有趣模式。据信,用于粒子速度,温度和位置的3D模型结果可以是优化系统设计,沉积工艺和机械性能的有用工具,用于加剧制造的冷雾结构的系统设计,沉积工艺和机械性能。

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