@ARTICLE{Manivannan_Chandru_Multiobjective_2021, author={Manivannan, Chandru and Velappan, Selladurai and Chenrayan, Venkatesh}, volume={vol. 66}, number={No 2}, journal={Archives of Metallurgy and Materials}, pages={627-635}, howpublished={online}, year={2021}, publisher={Institute of Metallurgy and Materials Science of Polish Academy of Sciences}, publisher={Committee of Materials Engineering and Metallurgy of Polish Academy of Sciences}, abstract={The present research employs the statistical tool of Response surface methodology (RSM) to evaluate the machining characteristics of carbon nanotubes (CNTs) coated high-speed steel (HSS) tools. The methodology used for depositing carbon nanotubes was Plasma-Enhanced Chemical Vapor Deposition (PECVD). Cutting speed, thickness of cut, and feed rate were chosen as machining factors, and cutting forces, cutting tooltip temperature, tool wear, and surface roughness were included as machining responses. Three-level of cutting conditions were followed. The face-centered, Central Composite Design (CCD) was followed to conduct twenty number of experiments. The speed of cutting and rate of feed have been identified as the most influential variables over the responses considered, followed by the thickness of cut. The model reveals the optimized level of cutting parameters to achieve the required objectives. The confirmation experiments were also carried out to validate the acceptable degree of variations between the experimental results and the predicted one.}, type={Article}, title={Multiobjective Performance Investigation of CNT Coated HSS Tool Under the Response Surface Methodology Platform}, URL={http://ochroma.man.poznan.pl/Content/118822/PDF/AMM-2021-2-36-Manivannan.pdf}, doi={10.24425/amm.2021.135900}, keywords={Carbon nanotube, RSM, cutting forces, cutting tooltip temperature, tool wear}, }