Esme, UgurKulekci, Mustafa KemalUstun, DenizKahraman, FundaKazancoglu, Yigit2023-06-162023-06-1620150025-53002195-8572https://doi.org/10.3139/120.110763https://hdl.handle.net/20.500.14365/2471In the present study, Grey based fuzzy algorithm was used for the optimization of complex multiple performance characteristics of the ball burnishing process. Experiments have been planned according to Taguchi's L-16 orthogonal design matrix. Burnishing force, number of passes, feed rate and burnishing speed were selected as input parameters, whereas surface roughness and microhardness were selected as output responses. Using Grey relation analysis (GRA), Grey relational coefficient (GRC) and Grey relation grade (GRG) were obtained. Then, Grey-based fuzzy algorithm was applied to obtain Grey fuzzy reasoning grade (GFRG). Analysis of variance (ANOVA) was carried out to find the significance and contribution of parameters on multiple performance characteristics. Finally, a confirmation test was applied at the optimum level of GFRG to validate the results. The results also show the feasibility of the Grey-based fuzzy algorithm for continuous improvement in product quality in complex manufacturing processes.eninfo:eu-repo/semantics/closedAccessGrey relation analysisfuzzy logic algorithmoptimizationburnishing processSurface-RoughnessTaguchi MethodRelational AnalysisParametersLogicHardnessDesignAlloyWearPartGrey-Based Fuzzy Algorithm for the Optimization of the Ball Burnishing ProcessArticle10.3139/120.110763