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首页> 外文期刊>Journal of Thermal Spray Technology >Influence of Helium and Nitrogen Gases on the Properties of Cold Gas Dynamic Sprayed Pure Titanium Coatings
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Influence of Helium and Nitrogen Gases on the Properties of Cold Gas Dynamic Sprayed Pure Titanium Coatings

机译:氦气和氮气对冷气动力喷涂纯钛涂层性能的影响

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摘要

This study investigates the effect of propellant gas, helium, and nitrogen during cold spraying of titanium coatings. Coatings were characterized by SEM and were evaluated for their deposition efficiency (DE), microhardness, and porosity. In selected conditions, three particle velocities were investigated in which for each condition, the propelling gases’ temperature and pressure were attuned to attain similar particle velocities for each gas. Observations show that loosely bonded particles can be detached by high-pressure supersonic gas stream. Selected coatings were characterized by XPS to analyze the occurrence of oxidation and nitridation. Although generally accepted that coating characteristics can be affected by particle temperature, results show that for the same particle velocity, DE and coating density are also a function of substrate temperature. In addition, a thick and fully dense cold sprayed titanium coating was achieved with optimized spray parameters and nozzle using helium. The corresponding average particle velocity was 1173 m/s.
机译:这项研究调查了钛涂层冷喷涂过程中推进剂气体,氦气和氮气的影响。用SEM表征涂层,并评估其沉积效率(DE),显微硬度和孔隙率。在选定的条件下,研究了三种粒子速度,在每种条件下,对推进气体的温度和压力进行了调整,以使每种气体获得相似的粒子速度。观察结果表明,松散结合的颗粒可被高压超声气流剥离。通过XPS对选定的涂层进行表征,以分析氧化和氮化的发生。尽管通常认为涂层特性会受到颗粒温度的影响,但结果表明,对于相同的颗粒速度,DE和涂层密度也是基材温度的函数。此外,通过优化的喷涂参数和使用氦气的喷嘴,获得了厚而密实的冷喷涂钛涂层。相应的平均粒子速度为1173 m / s。

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