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首页> 外文期刊>Journal of Thermal Spray Technology >Online Diagnostic System to Monitor Temperature of In-Flight Particles in Suspension Plasma Spray
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Online Diagnostic System to Monitor Temperature of In-Flight Particles in Suspension Plasma Spray

机译:在线诊断系统监测悬浮等离子体喷雾中飞行中颗粒的温度

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摘要

Suspension plasma spray (SPS) is going through a transition phase from research and development to daily use on production lines. Improving repeatability and reproducibility of coating elements and parameters makes SPS a replacement of former well-developed processes. This transition can be achieved by using in-flight particles diagnostic systems to monitor and control key parameters that influence the coating microstructure. Temperature and velocity of the in-flight particles are among the most critical parameters that should be monitored. However, accurately characterizing the in-flight particles in SPS is particularly challenging due to the small particle size of coating materials, harsh spray conditions, considerably shorter spray distances compared to APS, possible interference from the solvent, and limitations of previous measurement systems. In this study, different strategies were investigated to improve the accuracy of temperature measurements of in-flight particles in SPS. For this purpose, two light collection configurations (double-point and single-point measurement) were investigated along with the influence of plasma radiation. The results were evaluated by collecting and studying splats. The size and shape of splats were correlated with the temperature of in-flight particles in order to confirm the accuracy of the sensor's temperature measurements. In addition, the sensitivity of temperature measurements to the optical filter used for two-color pyrometry, reflection of plasma radiation from surrounding objects, and direct radiation from plasma were investigated. The results showed that the single-point measurement configuration was well adapted for SPS.
机译:悬浮等离子体喷雾(SPS)正在经历从研发到生产线的日常使用的过渡阶段。提高涂层元件和参数的可重复性和再现性使SPS成为原始开发过程的更换。通过使用飞行颗粒诊断系统可以通过用于监测和控制影响涂层微观结构的关键参数来实现这种转变。飞行中颗粒的温度和速度是应监测的最关键参数之一。然而,由于涂层材料的小粒径,苛刻的喷雾条件,与APS相比相比,喷射距离相当短,从溶剂的可能干扰,以及先前测量系统的局限性,苛刻的喷雾条件,喷射距离相当短的喷射距离,以及预先测量系统的限制,精确地表征尤其具有挑战性。在这项研究中,研究了不同的策略,以提高SPS飞行中飞行中的温度测量的准确性。为此目的,研究了两个光收集配置(双点和单点测量)以及等离子体辐射的影响。通过收集和研究Splats来评估结果。 Splats的尺寸和形状与飞行中的温度相关,以确认传感器的温度测量的精度。另外,研究了温度测量到用于双彩色热测定的光学滤光器的敏感性,对周围物体的等离子体辐射的反射,以及从等离子体的直接辐射的反射。结果表明,单点测量配置适用于SPS。

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