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An Investigation on the Optimization, Reliability and Repeatability Assessment of Plasma Spray Coatings Deposited using Twin Opposing Injectors

机译:双对置喷射器沉积的等离子喷涂涂层的优化,可靠性和可重复性评估的研究

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摘要

In plasma spray process, the injection conditions crucially affect the particle properties and thus the characteristics of the deposited coating. The carrier gas flow has to be adjusted carefully depending on particle size and density, injector geometry and position, as well as on plasma jet characteristics to achieve optimum heat and momentum transfer. The variability of coating deposition due to parameter variations can be reduced by optimizing the injection. The situation becomes complicated when twin-opposing injectors are used to supply powder particles into the plasma jet. Further, the crossover of the two streams of particles makes it quite difficult to finalize the optimum injection set point. Hence, in this investigation a closed loop injection method was adopted to optimize the injection parameter of two opposing streams of particles. Three different opposing jet configurations namely the upstream (75°), orthogonal (90°) and downstream (105°) were employed and the methods to optimize injection were investigated systematically. The particle state - first order process map and the deposition state - second order process map were constructed using ensemble particle diagnostics method and in-situ beam curvature measurements respectively. The process property correlations were also fortified using reliability, repeatability and microstructure assessments of the coating deposits.
机译:在等离子喷涂过程中,注入条件会严重影响颗粒性质,进而影响沉积涂层的特性。必须根据颗粒大小和密度,喷射器的几何形状和位置以及等离子流特性仔细调整载气流,以实现最佳的热量和动量传递。通过优化注入可以减少由于参数变化而导致的涂层沉积变化。当使用双对置喷射器将粉末颗粒供应到等离子流中时,情况变得复杂。此外,两个颗粒流的交叉使得最终确定最佳喷射设定点非常困难。因此,在这项研究中,采用闭环注入方法来优化两个相对的粒子流的注入参数。采用了三种不同的反向喷射构型,即上游(75°),正交(90°)和下游(105°),并系统地研究了优化喷射的方法。分别使用集成粒子诊断方法和原位束曲率测量分别构建了粒子状态一阶过程图和沉积状态二阶过程图。使用涂层沉积物的可靠性,可重复性和微观结构评估,也可以增强工艺性能的相关性。

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