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首页> 外文期刊>Journal of Thermal Spray Technology >Velocity Diagnostics for Gas Velocity Distributions in Cold Gas and Plasma Spraying Using Non-Resonant Laser Scattering
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Velocity Diagnostics for Gas Velocity Distributions in Cold Gas and Plasma Spraying Using Non-Resonant Laser Scattering

机译:使用非共振激光散射对冷气和等离子喷涂中的气体速度分布进行速度诊断

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摘要

In cold spray and thermal spray applications, one of the primary factors affecting coating deposition is the location where particles are injected into the gas jet. Therefore, a detailed knowledge of the gas flow distribution at that location is required. Use of non-resonant laser scattering allows to spatially resolve the distribution of drift velocity and mass density within the flow, particularly, at locations close to the injector. Based on this technique, this article presents a new diagnostic to locally measure drift velocity and relative mass density distribution of a gas stream. Its application is mainly focused on cold gas flows, where velocity measurements in a supersonic nozzle, obtained by means of laser scattering correlate well with theoretical calculations and particle image velocimetry (PIV) experimental results.
机译:在冷喷涂和热喷涂应用中,影响涂层沉积的主要因素之一是将微粒注入气体喷嘴的位置。因此,需要对该位置的气流分布有详细的了解。非共振激光散射的使用允许在空间上解决流动内的漂移速度和质量密度的分布,特别是在靠近注射器的位置。基于此技术,本文提出了一种新的诊断方法,可以局部测量气流的漂移速度和相对质量密度分布。它的应用主要集中在冷气流上,其中通过激光散射获得的超音速喷嘴中的速度测量值与理论计算和粒子图像测速(PIV)实验结果密切相关。

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