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- W4323110253 abstract "Surface integrity has become an important basis for evaluating quality of the manufacturing components. The rapid tool wear leads to manufacturing costs incensement and surface integrity deterioration. To eliminate irreparable surface damage due to tool wear, more stringent tool failure criteria than ISO standards need to be applied. This work investigated the progressive mapping of surface integrity mapping based on tool wear state and novel tool failure criterion of multi-objective surface quality optimization during turning Ti-6Al-4V. Firstly, the progressive mapping of surface integrity in the whole tool life cycle under different cutting parameters was established. Then, based on the high-quality surface as the driving goal, the tool failure criterion of multi-objective surface quality optimization was proposed by response surface methodology analysis. Experimental results indicated that tool wear was a major determinant of surface integrity, which surface topography, microstructure and mechanical properties presented a gradual change as a result of increased tool wear. According to tool failure criterion, the optimization solution with the desirability value of 0.530 were v = 170.2 m/min, f = 0.118 mm/rev and VB = 0.188 mm. The predicted results were in good agreement with the verification experiment. This work provided basic support for high quality and low manufacturing costs." @default.
- W4323110253 created "2023-03-05" @default.
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- W4323110253 date "2023-06-01" @default.
- W4323110253 modified "2023-10-12" @default.
- W4323110253 title "Progressive mapping surface integrity and multi-objective optimizing surface quality of machining Ti-6Al-4V based novel tool failure criterion" @default.
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- W4323110253 doi "https://doi.org/10.1016/j.cirpj.2023.01.013" @default.
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