期刊
SURFACE TOPOGRAPHY-METROLOGY AND PROPERTIES
卷 11, 期 2, 页码 -出版社
IOP Publishing Ltd
DOI: 10.1088/2051-672X/acdaaf
关键词
RSM; anodizing; surface roughness; coating thickness; XRD; SEM
In this study, the influences of anodic coating process parameters on the surface roughness and coating thickness of Aluminum 5754 alloy were investigated using Central composite design. The competence of the mathematical models and the importance of the regression coefficients were analyzed by ANOVA. The results showed that the maximum coating thickness of 29 μm was obtained at 16 V voltage and 30 min anodizing time on the surface prepared with 1200 grit size, while the lowest surface roughness value of 0.676 μm was obtained at 8 V voltage and 10 min anodizing time on the surface prepared with 1200 grit size.
Aluminum 5754 alloy appears as a candidate material for many engineering applications in terms of its lightness and strength values. The surface properties of this alloy need to be improved for applications where there is surface damage such as friction and wear. In this study, Central composite design was applied to investigate the influences of anodic coating process parameters (voltage, coating time and grit size) on the response (i.e. surface roughness and coating thickness). The competence of the mathematical models recognized, and the importance of the regression coefficients were studied by ANOVA. The initial surfaces of the samples were sanded with 400, 800 and 1200 grit size and surfaces with 3 different roughnesses were obtained. Al 5754 specimens were anodic coated at 8 V, 12 V and 16 V voltages and combinations of time parameters of 10, 20 and 30 min The ANOVA results show that the designed models by RSM for average coating thickness and surface roughness are statistically important at the confidence level of 95%, and 80%, respectively. Maximum anodic coated layer of 29 mu m was obtained at surface prepared with 1200 grit size, at 16 V of voltage and used for 30 min of anodizing time. The lowest roughness value of 0.676 mu m was obtained at the surface was prepared with 1200 grit size, 8 V of voltage and anodizing time of 10 min.
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