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首页> 外文期刊>Journal of Thermal Spray Technology >Comparison of Oxidation and Microstructure of Warm-Sprayed and Cold-Sprayed Titanium Coatings
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Comparison of Oxidation and Microstructure of Warm-Sprayed and Cold-Sprayed Titanium Coatings

机译:热喷涂和冷喷涂钛涂层的氧化和微观结构比较

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Thick titanium coatings were prepared by the warm spraying (WS) and cold spraying (CS) processes to investigate the oxidation and microstructure of the coating layers. Prior to the coating formations, the temperature and velocity of in-flight titanium powder particles were numerically calculated. Significant oxidation occurred in the WS process using higher gas temperature conditions with low nitrogen flow rate, which is mixed to the flame jet of a high velocity oxy-fuel (HVOF) spray gun in order to control the temperature of the propellant gas. Oxidation, however, decreased strikingly as the nitrogen flow rate increased. In the CS process using nitrogen or helium as a propellant gas, little oxidation was observed. Even when scanning electron microscopy or an x-ray diffraction method did not detect oxides in the coating layers produced by WS using a high nitrogen flow rate or by CS using helium, the inert gas fusion method revealed minor increases of oxygen content from 0.01 to 0.2 wt.%. Most of the cross-sections of the coating layers prepared by conventional mechanical polishing looked dense. However, the cross-sections prepared by an ion-milling method revealed the actual microstructures containing small pores and unbounded interfaces between deposited particles.
机译:通过热喷涂(WS)和冷喷涂(CS)工艺制备了厚厚的钛涂层,以研究涂层的氧化和微观结构。在涂层形成之前,数值计算飞行中钛粉颗粒的温度和速度。在WS工艺中,使用较高的氮气温度和较低的气体温度条件会发生明显的氧化,然后将其混合到高速氧燃料(HVOF)喷枪的火焰喷嘴中,以控制推进剂气体的温度。但是,随着氮气流量的增加,氧化作用显着下降。在使用氮气或氦气作为推进剂气体的CS工艺中,几乎观察不到氧化。即使在扫描电子显微镜或X射线衍射方法未检测到由高氮气流量的WS或由氦气的CS产生的涂层中的氧化物时,惰性气体熔融法也显示出氧含量从0.01升高到0.2很小重量%。通过常规机械抛光制备的涂层的大多数横截面看起来是致密的。然而,通过离子铣削方法制备的横截面揭示了实际的微观结构,该微观结构包含小孔和沉积颗粒之间的无界界面。

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