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Simultaneous measurement of particle size, velocity, and temperature in thermal plasmas

机译:同时测量热等离子体中的粒径,速度和温度

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摘要

The in-flight measurement of particle parameters (size, velocity, temperature, and local number density) can prove insight into the plasma processing of solid materials. A measurement technique for simultaneously obtaining the size, velocity, and temperature of particles entrained in high-temperature flow fields is described. Particle size and velocity are obtained from a combination laser-particle-sizing system and laser Doppler velocimeter. The particle temperature is determined by a two-color pyrometry technique and the data rate is a measure of relative particle number density. Typical measured temperatures and velocities for the 5-100 mu m particles used in plasma spraying are 1600-3500 K and 100-300 m/s, respectively. Since particle size, velocity, and temperature are measured simultaneously, cold particles (>1600 K) are identified and their relative number density can be quantified. Data from two plasma spray systems, a metal one (Ni-Al) and a metal oxide one (Al/sub 2/O/sub 3/), are presented and their application to understanding the plasma spray-coating process is illustrated.
机译:粒子参数(尺寸,速度,温度和局部数密度)的飞行中测量可以证明对固体材料的等离子体处理有深刻的了解。描述了一种用于同时获得在高温流场中夹带的颗粒的尺寸,速度和温度的测量技术。粒度和速度是从激光粒度仪和激光多普勒测速仪的组合中获得的。颗粒温度通过双色高温测定技术确定,数据速率是相对颗粒数密度的度量。等离子喷涂中使用的5-100微米颗粒的典型测量温度和速度分别为1600-3500 K和100-300 m / s。由于同时测量了粒度,速度和温度,因此可以识别冷颗粒(> 1600 K),并可以量化其相对数密度。给出了来自两种等离子喷涂系统的数据,一种是金属喷涂(Ni-Al),一种是金属氧化物喷涂(Al / sub 2 / O / sub 3 /),并说明了它们在理解等离子体喷涂过程中的应用。

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