Formation of TiN coatings by air plasma spraying

IF 0.4 Q4 PHYSICS, MULTIDISCIPLINARY
A. Kengesbekov, B. Rakhadilov, L. Zhurerova, G. Uazyrkhanova, Y. Kambarov
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Abstract

Titanium nitride (TiN) coatings were obtained on the surface of 12Kh18N10T steel by air plasma spraying (APS) of TiN powders using an arc plasmatron made by the authors. The plasmatron has a node of circular input and gas-dynamic focusing of the powder and the output apertures of the nozzle-anode are made in the form of rectangular narrowing-expanding channels (No.34334 RK: IPC H05H 1/42). A study of operation modes of a plasmatron for spraying of powder coatings was carried out. The structural-phase state, microhardness and wear resistance of TiN coatings were systematically investigated. The optimum APS operating mode for deposition of TiN powder was determined: current 250 A, voltage 68 V, argon gas flow 34 L/min, spraying distance 150 mm. To reduce the oxidation of TiN powder in the APS process, a method of creating a nitrogen environment at the outlet of the anode nozzle, nitrogen flow rate 2.3 bar was used. The results of structural analysis showed that TiN is the main phase of the coating. The mechanism of formation of TiN structures was characterized by analyzing SEM results of TiN coating surface morphology and TiN droplets sprayed on the surface of the sample. The results showed that the TiN(1) coating has better wear resistance than the TiN(2) and TiN(3) coatings. The cross-sectional and longitudinal microhardness of the TiN coating was investigated. The highest cross-sectional hardness of TiN coating is 1250 HV0.1, which is in accordance with mode 1.
空气等离子喷涂TiN涂层的形成
采用自行研制的电弧等离子管对12Kh18N10T钢表面的氮化钛粉末进行空气等离子喷涂,获得了氮化钛涂层。等离子管有一个圆形输入和粉末气体动态聚焦的节点,喷嘴阳极的输出孔径做成矩形狭窄扩展通道的形式(No.34334 RK:IPC H05H 1/42)。对等离子喷涂粉末涂料的工作方式进行了研究。系统地研究了TiN涂层的组织相态、显微硬度和耐磨性。确定了沉积TiN粉末的最佳APS操作模式:电流250A,电压68V,氩气流量34L/min,喷涂距离150mm。为了减少APS过程中TiN粉末氧化,采用了在阳极喷嘴出口处创造氮气环境的方法,氮气流速为2.3bar。结构分析结果表明,TiN是涂层的主要相。通过对TiN涂层表面形貌和喷涂在样品表面的TiN液滴的SEM结果进行分析,表征了TiN结构的形成机理。结果表明,TiN(1)涂层具有比TiN(2)和TiN(3)涂层更好的耐磨性。研究了TiN涂层的横截面和纵向显微硬度。TiN涂层的最高横截面硬度为1250HV0.1,这与模式1一致。
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