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Optimization of Plasma Spraying for VW75 Rare Earth Magnesium Alloy Based on Orthogonal Experiments and Research on Its Performances

机译:基于正交试验的VW75稀土镁合金的血浆喷涂优化及其性能研究

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In this study, the effects of the six technological parameters of atmospheric plasma spraying (including spraying current, spraying distance, main gas flow, auxiliary gas flow, spraying speed, and powder feeding rate) on the microhardness, density, and rate of deposition of nanoparticle cluster-oxidized yttria partially stabilized zirconia (YSZ) powder-ceramic coating were investigated through an orthogonal experiment. The structures of the powder and coating were observed by a scanning electron microscope. The hardness measurements were carried out on the samples, and the cross-section experimental results were analyzed by combining the structure of the coating and range analysis method, thereby obtaining the optimized technological parameters. The results show that the coating was primarily composed of melted ZrO2, and the coating section was a characteristic of concave–convex occlusions. Mechanical bonding played the dominant role. Main gas flow was the primary influencing parameter of performances of the atmospheric plasma spraying ZrO2 coating, followed by spraying current, auxiliary gas flow, powder feed rate, spraying speed, and spraying distance, successively. The optimal technological parameters for atmospheric plasma spraying ZrO2 coating were 75 standard cubic foot per hour (SCFH) of main gas flow, 875 A of spraying current, 45 SCFH of auxiliary gas flow, 30 g/min of powder feed rate, 400 mm/s of spraying speed, and 85 mm of spraying distance. The bonding microhardness, density, and rate of deposition of the prepared coating were HV388, 5.25 g/cm3, and 31.58%, respectively. The electrode potential and corrosion resistance of the prepared coating increased remarkably compared with that of the substrate, whereas the corrosion current decreased significantly.
机译:在这项研究中,在微硬度,密度和沉积速率下,大气等离子体喷涂六种技术参数的影响(包括喷雾电流,喷雾距离,主要气体流动,辅助气体流动,喷雾速度)通过正交实验研究了纳米粒子簇氧化的氧化钇(YSZ)粉末陶瓷涂层。通过扫描电子显微镜观察粉末和涂层的结构。在样品上进行硬度测量,通过组合涂层和范围分析方法的结构来分析横截面实验结果,从而获得优化的技术参数。结果表明,涂​​层主要由熔化的ZrO2组成,涂层部分是凹凸闭塞的特征。机械粘合起到了主导作用。主要气体流动是大气等离子体喷涂ZrO2涂层性能的主要影响参数,然后通过连续喷涂电流,辅助气体流动,粉末进料速率,喷涂速度和喷涂距离。大气压等离子体喷涂ZrO2涂层的最佳技术参数是每小时75个标准立方英尺(SCFH)主气流量,875A的喷涂电流,45 scFH辅助气体流量,30g / min粉末进料速率,400 mm / S喷涂速度和85毫米的喷射距离。制备的涂层的粘合微硬度,密度和沉积速率分别为HV388,5.25g / cm 3和31.58%。制备涂层的电极电位和耐腐蚀性与基板的相比显着增加,而腐蚀电流显着降低。

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