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Effects of Temperature of In-flight Particles on Bonding and Microstructure in Warm-Sprayed Titanium Deposits

机译:飞行中颗粒温度对热喷涂钛沉积层结合和微观结构的影响

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摘要

Micron-sized titanium particles were deposited on steel substrates by the warm spraying, which is a modified high velocity oxy-fuel (HVOF) spraying technique. In the process, nitrogen gas is mixed with the HVOF flame jet to lower the temperature of injected powder particles. Detailed observations of splats formed on polished substrates by using scanning electron microscopy (SEM) and transmission electron microscopy (TEM) were conducted to investigate the effects of particle temperature on the bonding of splats with the substrate and the microstructure within the splats. At lower nitrogen flow rates, the particles observed were heavily deformed and exhibited diverse splat morphologies and microstructures. At higher nitrogen flow rates, most of the particles were impacted in the solid state and the oxidation of particles was remarkably less. The TEM observation revealed distinctively different microstructures within the splats as well as the splat/substrate interfaces depending on whether the particle was molten or solid before the impact.
机译:通过改进的高速氧-燃料(HVOF)喷涂技术,通过热喷涂将微米级的钛颗粒沉积在钢基材上。在此过程中,将氮气与HVOF火焰射流混合以降低注入的粉末颗粒的温度。通过使用扫描电子显微镜(SEM)和透射电子显微镜(TEM)对在抛光的基材上形成的小片进行了详细观察,以研究颗粒温度对小片与基材的键合以及小片内微结构的影响。在较低的氮气流速下,观察到的颗粒严重变形,并表现出多种飞溅形态和微观结构。在较高的氮气流速下,大多数颗粒处于固态状态,颗粒的氧化明显减少。 TEM观察显示,在冲击片和冲击片/基材界面之间,微片的微观结构明显不同,具体取决于冲击前颗粒是熔融还是固态。

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