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首页> 外文期刊>Journal of Thermal Spray Technology >Supersonic Nozzle Flow Simulations for Particle Coating Applications: Effects of Shockwaves, Nozzle Geometry, Ambient Pressure, and Substrate Location upon Flow Characteristics
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Supersonic Nozzle Flow Simulations for Particle Coating Applications: Effects of Shockwaves, Nozzle Geometry, Ambient Pressure, and Substrate Location upon Flow Characteristics

机译:用于颗粒涂层的超音速喷嘴流动模拟:冲击波,喷嘴几何形状,环境压力和基材位置对流动特性的影响

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摘要

Characteristics of supersonic flow are examined with specific regard to nano-particle thin-film coating. Effects of shockwaves, nozzle geometry, chamber pressure, and substrate location were studied computationally. Shockwaves are minimized to reduce fluctuations in flow properties at the discontinuities across diamond shock structures. Nozzle geometry was adjusted to ensure optimal expansion (i.e., P_(exit) = P_(ambient)), where shock formation was significantly reduced and flow kinetic energy maximized. When the ambient pressure was reduced from 1 to 0.01316 bar, the nozzle's diverging angle must be increased to yield the optimum condition of minimized adversed effects. Beyond some critical distance, substrate location did not seem to be a sensitive parameter on flow characteristics when P_(amb) = 0.01316 bar; however, overly close proximity to the nozzle exit caused flow disturbances inside the nozzle, thereby adversely affecting coating gas flow.
机译:针对纳米颗粒薄膜涂层,研究了超声速流动的特性。通过计算研究了冲击波,喷嘴几何形状,腔室压力和基板位置的影响。冲击波被最小化以减小在金刚石冲击结构上的不连续处的流动特性的波动。调整喷嘴的几何形状以确保最佳膨胀(即,P_(出口)= P_(环境)),在这种情况下,冲击的形成显着减少,流动动能最大化。当环境压力从1降低到0.01316 bar时,必须增加喷嘴的发散角,以产生使不利影响最小化的最佳条件。当P_(amb)= 0.01316 bar时,超出某个临界距离,基板位置似乎不是流动特性的敏感参数;然而,过度靠近喷嘴出口会引起喷嘴内部的流动扰动,从而不利地影响涂覆气体的流动。

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