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Optimization of dressing parameters of grinding wheel for 9CrSi tool steel using the taguchi method with grey relational analysis

This study aims to optimize the dressing parameters of grinding wheel for 9CrSi tool steel to minimize roughness average and flatness tolerance using Taguchi method and Grey Relational Analysis (GRA). These objectives are minimized by optimizing four four-level and two two-level dressing parameters...

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Bibliographic Details
Published in:IOP conference series. Materials Science and Engineering 2019-10, Vol.635 (1), p.12030
Main Authors: Anh Tung, Luu, Pi, Vu Ngoc, Lien, Vu Thi, Thi Hong, Tran, Hung, Le Xuan, Tien Long, Banh
Format: Article
Language:English
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Summary:This study aims to optimize the dressing parameters of grinding wheel for 9CrSi tool steel to minimize roughness average and flatness tolerance using Taguchi method and Grey Relational Analysis (GRA). These objectives are minimized by optimizing four four-level and two two-level dressing parameters in sixteen experiments based on an orthogonal array L16(44Ă—22). Taguchi method and GRA are combined to solve the multi-objective optimization problem and determine optimal dressing parameter level combination. Results show that, the optimal dressing parameters to obtain the minimal roughness average and flatness tolerance are coarse dressing depth of 0.025 mm, coarse dressing times of 3 times, fine dressing depth of 0.005 mm, fine dressing times of 2 times, non-feeding dressing of 3 times and dressing feed rate of 1.6 m/min, respectively. Experiments with the optimized dressing parameters have been done to verify the predict model. Results of the roughness average and flatness tolerance from the experiments match with those values of the models and satisfy practical requirements.
ISSN:1757-8981
1757-899X
DOI:10.1088/1757-899X/635/1/012030