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Evaluation of 3- and 5-axis sculptured surface machining in CAM environment through design of experiments.

, , , and . Int. J. Comput. Integr. Manuf., 28 (3): 278-296 (2015)

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A virus-evolutionary multi-objective intelligent tool path optimization methodology for 5-axis sculptured surface CNC machining., , , and . Eng. Comput., 33 (3): 375-391 (2017)Optimization of fused deposition modeling process using a virus-evolutionary genetic algorithm., and . Comput. Ind., (2021)Prediction of Surface Texture Characteristics in Turning of FRPs Using ANN., , , , and . EANN (1), volume 383 of Communications in Computer and Information Science, page 144-153. Springer, (2013)Prediction of the collapse modes of PVC cylindrical shells under compressive axial loads using Artificial Neural Networks., , and . AIAI, volume 247 of IFIP, page 251-258. Springer, (2007)Modeling of Abrasive Water Jet Machining using Taguchi Method and Artificial Neural Networks., , , and . IJCCI (NCTA), page 377-380. SciTePress, (2011)Globally optimal tool paths for sculptured surfaces with emphasis to machining error and cutting posture smoothness., , , and . Int. J. Prod. Res., 57 (17): 5478-5498 (2019)Multi-objective optimization of engineering properties for laser-sintered durable thermoplastic/polyamide specimens by applying a virus-evolutionary genetic algorithm., and . Comput. Ind., (2021)Evaluation of 3- and 5-axis sculptured surface machining in CAM environment through design of experiments., , , and . Int. J. Comput. Integr. Manuf., 28 (3): 278-296 (2015)An integrated framework for optimizing sculptured surface CNC tool paths based on direct software object evaluation and viral intelligence., , , and . J. Intell. Manuf., 30 (4): 1581-1599 (2019)Artificial neural network models for the prediction of surface roughness in electrical discharge machining., , and . J. Intell. Manuf., 19 (3): 283-292 (2008)