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首页> 外文期刊>Thin Solid Films >Effects of spray parameters on the microstructure and property of Al_2O_3 coatings sprayed by a low power plasma torch with a novel hollow cathode
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Effects of spray parameters on the microstructure and property of Al_2O_3 coatings sprayed by a low power plasma torch with a novel hollow cathode

机译:喷涂参数对新型空心阴极低功率等离子炬喷涂Al_2O_3涂层组织和性能的影响

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Al_2O_3 coating is deposited using a low power plasma torch with a novel hollow cathode through axial powder injection under a plasma power up to several kilowatts. The effects of the main processing parameters including plasma arc power, operating gas flow and spray distance on particle velocity during spraying, and the microstructure and property of the coating are investigated. The microstructure of the Al_2O_3 coating is examined using optical microscopy and X-ray diffraction analysis. The property of the coating is characterized by dry rubber wheel abrasive wear test. The velocity of in-flight particle is measured using a velocity/ temperature measurement system for spray particle based on thermal radiation from the particle. The dependency of the microstructure and property of the coating on spray particle conditions are examined by comparing the particle velocity, and microstructure and abrasive wear weight loss of subsequent coating deposited by low power plasma spray with those of the coating by conventional plasma spray at a power one order higher. X-ray diffraction analysis of the coating revealed that Al_2O_3 particles during low power plasma spraying reach to sufficiently melting state prior to impact on the substrate with a velocity comparable to that in conventional plasma spraying. The experiment results have shown that processing parameters have significant influence on the particle conditions and performance of deposited Al_2O_3 coating. The coating of comparable microstructure and properties to that deposited by conventional plasma spray can be produced under a power one order lower. From the present study, it can be suggested that a comparable coating can be produced despite plasma power level if the comparable particle velocity and molten state are achieved.
机译:使用具有新型中空阴极的低功率等离子炬通过轴向粉末注射在高达几千瓦的等离子功率下沉积Al_2O_3涂层。研究了等离子弧功率,工作气体流量和喷涂距离等主要工艺参数对喷涂过程中颗粒速度的影响,以及涂层的微观结构和性能。使用光学显微镜和X射线衍射分析检查了Al_2O_3涂层的微观结构。涂层的性能通过干胶轮磨料磨损测试来表征。使用基于粒子的热辐射的喷雾粒子速度/温度测量系统来测量飞行中粒子的速度。通过比较颗粒速度,低功率等离子喷涂沉积的后续涂层与常规功率下等离子喷涂的涂层的微观结构和磨料的失重,可以检查涂层的微观结构和性能对喷涂颗粒条件的依赖性。高一阶涂层的X射线衍射分析表明,在低功率等离子喷涂过程中,Al_2O_3颗粒在以与传统等离子喷涂相当的速度撞击基材之前,已达到足够的熔融状态。实验结果表明,工艺参数对Al_2O_3涂层的颗粒条件和性能有重要影响。可以在低一级的功率下生产与传统等离子喷涂可比的微观结构和性能的涂层。从本研究中可以暗示,如果达到可比的粒子速度和熔融态,则尽管等离子功率水平也可产生可比的涂层。

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