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Optimizating Spray Parameters of High Velocity Oxy Fuel (HVOF) for Cr_3C_2 - NiCr Coating

机译:用于CR_3C_2 - NICR涂层高速氧燃料(HVOF)的优化喷射参数

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Porosity, hardness, and adhesion mainly affect the performance of thermal spray coating and significantly depend on spray parameters. Therefore, determining value of the spray parameters and their effects on the coating properties are always taken into consideration. This paper studies optimization as well as evaluates influences of HVOF spray parameters which include powder feed rate (M), rotational speed of the details per minute (N) and step movement of the nozzle per revolution (S) to the adhesion, porosity, micro-hardness of Cr_3C_2 - 20(80Ni20Cr) coating on 40Cr steel shaft substrate. Taguchi experimental design L9 combined with analysis of variance (ANOVA) was used to determine optimum spray parameters and percentage of effect of each spray parameter on properties of the coating. From obtained results, the optimal spray parameters are m = 35 g.min~(-1), n = 130 rpm, S = 6 mm for the highest hardness coating of 658.2 HV; with m = 45g.min~(-1), n = 130rpm, S = 3 mm for the smallest porosity of 1.27%; with m = 35g.min~(-1), n = 130 rpm, S = 3 mm for the coating with a maximum adhesion of 44.07 MPa. The percent effects of the parameters m, n, S to adhesion, porosity and hardness were (2.8%, 33.6%, 63.6%), (0.1%, 1.3%, 98.6%), (32.7%, 43.3%, 24%), respectively. The percent effects of spray parameters on corresponding coating property allows adjustment of spray parameters to obtain the desired coating. Verified experiment results shows that the results are reliable. Taguchi method and ANOVA can find optimal parameters of the HVOF spray to acquire high-performance coating.
机译:孔隙率,硬度和粘附性主要影响热喷涂涂层的性能,并显着取决于喷雾参数。因此,始终考虑到喷射参数的确定值及其对涂层性能的影响。本文研究了优化,评估了HVOF喷雾参数的影响,包括粉末进料速率(m),每分钟细节的旋转速度(n)和喷嘴的步长移动到每旋转到粘附,孔隙率,微型-CR_3C_2 - 20(80NI20CR)涂层对40Cr钢轴基板的涂层。 Taguchi实验设计L9结合差异分析(ANOVA)来确定每个喷涂参数对涂层性质的最佳喷射参数和效果百分比。从得到的结果中,最佳喷射参数为M = 35 g.min〜(-1),n = 130rpm,S = 6mm,用于658.2HV的最高硬度涂层;用m = 45g..min〜(-1),n = 130rpm,s = 3 mm,最小孔隙度为1.27%;用M = 35g..min〜(-1),n = 130rpm,s = 3 mm,用于涂层,最大粘合为44.07mPa。参数M,N,S至粘附,孔隙度和硬度的百分比(2.8%,33.6%,63.6%),(0.1%,1.3%,98.6%),(32.7%,43.3%,24%) , 分别。喷雾参数对应涂层性能的百分比允许调节喷射参数以获得所需的涂层。已验证的实验结果表明,结果可靠。 Taguchi方法和Anova可以找到HVOF喷雾的最佳参数,以获得高性能涂层。

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