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Estimation of Molten Content of the Spray Stream from Analysis of Experimental Particle Diagnostics

机译:从实验粒子诊断分析估计喷雾流中的熔融物含量

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Particle melting is one of the key issues in air plasma spray processing of high temperature ceramics such as Yttria Stabilized Zirconia (YSZ). The significance of assessing, monitoring, and controlling the molten content in spray stream on achieving an efficient process and reproducible coating characteristics and properties is known. This study aims to estimate the molten content of the spray stream (as an ensemble) from experimental measurement of in-flight (individual) particle characteristics. In a previous study by Streibl et al. the presence of melting signature in the particle temperature distribution was observed, which has been confirmed by simulation and through independent experimental observation by Mauer et al. Based on this observation, the particle temperature distribution could be delineated into the different achievable particle states in-flight (unmolten, partially molten, and completely molten) to a first approximation. This in-turn would enable estimation of the molten content in the spray stream. Thus obtained percentage molten content (referred in this study as Spray Stream Melting Index-SSMI) has been observed to correlate well with the experimentally measured deposition efficiency for a wide range of process conditions and feedstock characteristics. The implications of estimating SSMI for other materials and processes are also discussed.
机译:颗粒熔化是高温陶瓷(例如氧化钇稳定氧化锆(YSZ))的空气等离子喷涂工艺中的关键问题之一。评估,监测和控制喷雾流中熔融成分对实现有效过程和可再现涂层特性和性能的重要性。这项研究旨在通过对飞行中(单个)颗粒特征的实验测量来估算喷雾流的熔融含量(作为整体)。在Streibl等人的先前研究中。通过模拟和Mauer等人的独立实验观察,证实了在颗粒温度分布中存在熔融特征。基于此观察,可以将粒子温度分布描绘为飞行中(未熔化,部分熔化和完全熔化)的近似可达到的不同粒子状态。这继而将使得能够估计喷雾流中的熔融含量。已经观察到,由此获得的熔融百分含量(在本研究中称为喷雾流熔融指数-SSMI)与各种工艺条件和原料特性的实验测得的沉积效率具有良好的相关性。还讨论了估计SSMI对其他材料和过程的影响。

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