Experimental analysis and optimization on machining of coated carbon fiber and nanoclay reinforced aluminum hybrid composites
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[1] N. Senthilkumar,et al. SLIDING FRICTION WEAR BEHAVIOUR OF SEASHELL PARTICULATE REINFORCED POLYMER MATRIX COMPOSITE – MODELING AND OPTIMIZATION THROUGH RSM AND GREY WOLF OPTIMIZER , 2021, Transactions of the Canadian Society for Mechanical Engineering.
[2] D. S. Ebenezer Jacob Dhas,et al. Prediction of Dry Sliding Wear Response of AlMg1SiCu/Silicon Carbide/Molybdenum Disulphide Hybrid Composites Using Adaptive Neuro-Fuzzy Inference System (ANFIS) and Response Surface Methodology (RSM) , 2021, Arabian Journal for Science and Engineering.
[3] G. Anbuchezhiyan,et al. An investigation on microstructure and mechanical behaviour of copper-nickel coated carbon fibre reinforced aluminium composites , 2020, Materials Research Express.
[4] Sezer Morkavuk,et al. CRYOGENIC DRILLING OF CARBON FIBER-REINFORCED COMPOSITE (CFRP) , 2019, Surface Review and Letters.
[5] G. Eda,et al. Synergistic additive-mediated CVD growth and chemical modification of 2D materials. , 2019, Chemical Society reviews.
[6] R. Muraliraja,et al. A review on the production of metal matrix composites through stir casting – Furnace design, properties, challenges, and research opportunities , 2019, Journal of Manufacturing Processes.
[7] A. Premnath. Drilling studies on carbon fiber-reinforced nano-SiC particles composites using response surface methodology , 2019 .
[8] B Prabu,et al. Multi-response optimization of dry sliding wear parameters of AA6026 using hybrid gray relational analysis coupled with response surface method , 2019, Measurement and Control.
[9] A. Langella,et al. Circular cutting strategy for drilling of carbon fiber-reinforced plastics (CFRPs) , 2019, Materials and Manufacturing Processes.
[10] B. Murthy. Process parameters optimization to reduce the thrust force in CFRP composites drilling using RSM and Taguchi method , 2019 .
[11] M. Hamedi,et al. Experimental investigation on drilling of natural flax fiber-reinforced composites , 2018, Materials and Manufacturing Processes.
[12] Guangbin Yu,et al. Investigations on the axial cutting force during drilling of carbon fiber composite material , 2018 .
[13] B. K. Vinayagam,et al. Investigation of Drilling Parameters Using Grey Relational Analysis and Response Surface Methodology of Biaxial Glass Fibre Reinforced with Modified Epoxy Resin Composite , 2018, International Journal of Polymer Science.
[14] Angelos P. Markopoulos,et al. Prediction of Thrust Force and Cutting Torque in Drilling Based on the Response Surface Methodology , 2018, Machines.
[15] P. S. Samuel Ratna Kumar,et al. Evaluation of Mechanical Properties of MWCNT / Nanoclay Reinforced Aluminium alloy Metal Matrix Composite , 2018 .
[16] A. Wee,et al. An ultra-sensitive electrochemical sensor based on 2D g-C3N4/CuO nanocomposites for dopamine detection , 2018 .
[17] K. Palanikumar,et al. Investigation of drilling parameters on hybrid polymer composites using grey relational analysis, regression, fuzzy logic, and ANN models , 2018 .
[18] S. Gupta,et al. Investigations on Pb-Free 6000 Series Aluminum Alloy for Machining Applications , 2018 .
[19] K. Debnath,et al. Primary and Secondary Manufacturing of Polymer Matrix Composites , 2017 .
[20] Tahir Nadeem Malik,et al. Evaporation Rate-Based Water Cycle Algorithm for Short-Term Hydrothermal Scheduling , 2017 .
[21] A. Jyothirmayi,et al. Nanoclay-based self-healing, corrosion protection coatings on aluminum, A356.0 and AZ91 substrates , 2017, Journal of Coatings Technology and Research.
[22] T. Ko,et al. Some experimental investigations on drilling AA (6351)-SiC-B4C composite , 2017 .
[23] N. Senthilkumar,et al. Machinability evaluation of Al–4%Cu–7.5%SiC metal matrix composite by Taguchi–Grey relational analysis and NSGA-II , 2016 .
[24] Ming Chen,et al. Effect of drilling parameters and tool geometry on drilling performance in drilling carbon fiber–reinforced plastic/titanium alloy stacks , 2016 .
[25] Vishal S. Sharma,et al. Machining Parameters Optimization of Titanium Alloy using Response Surface Methodology and Particle Swarm Optimization under Minimum-Quantity Lubrication Environment , 2016 .
[26] A. Shakeri,et al. Evaluation of the Effect of Clay Nanoparticles on Mechanical Properties of Recycled Polyethylene , 2016 .
[27] Z. Shao,et al. Preparation and Research of Electroless Copper on Carbon Fibers , 2016 .
[28] Ali Sadollah,et al. Water cycle algorithm for solving constrained multi-objective optimization problems , 2015, Appl. Soft Comput..
[29] N. Senthilkumar,et al. Flank wear and surface roughness prediction in hard turning via artificial neural network and multiple regressions , 2015 .
[30] Lihua Zhu,et al. Dependence of electronic structure of g-C3N4 on the layer number of its nanosheets: A study by Raman spectroscopy coupled with first-principles calculations , 2014 .
[31] N. Senthilkumar,et al. Application of Response Surface Methodology and Firefly Algorithm for Optimizing Multiple Responses in Turning AISI 1045 Steel , 2014 .
[32] D. Brigante. New Composite Materials: Selection, Design, and Application , 2013 .
[33] Masoud Farahnakian,et al. Modeling and multi-constrained optimization in drilling process of carbon fiber reinforced epoxy composite , 2013 .
[34] P. Aristimuño,et al. EFFECTS OF ROTATIONAL SPEED, FEED RATE AND TOOL TYPE ON TEMPERATURES AND CUTTING FORCES WHEN DRILLING BOVINE CORTICAL BONE , 2013 .
[35] S. Das,et al. Influence of Drill Geometry on Surface Roughness in Drilling of Al/sic/gr Hybrid Metal Matrix Composite , 2013 .
[36] T. Rajmohan,et al. Application of the central composite design in optimization of machining parameters in drilling hybrid metal matrix composites , 2013 .
[37] Ardeshir Bahreininejad,et al. Water cycle algorithm - A novel metaheuristic optimization method for solving constrained engineering optimization problems , 2012 .
[38] K. Palanikumar,et al. Experimental investigation and optimisation in drilling of GFRP composites , 2011 .
[39] M R Razfar,et al. Modelling of the thrust force of the drilling operation on PA6–nanoclay nanocomposites using particle swarm optimization , 2011 .
[40] K. Palanikumar,et al. Experimental Investigation and Analysis of Thrust Force in Drilling Hybrid Metal Matrix Composites by Coated Carbide Drills , 2011, Materials and Manufacturing Processes.
[41] K. Palanikumar,et al. Delamination Analysis in Drilling of CFRP Composites Using Response Surface Methodology , 2009 .
[42] K. Palanikumar,et al. Multiple performance optimization in machining of GFRP composites by a PCD tool using non-dominated sorting genetic algorithm (NSGA-II) , 2009 .
[43] K. Palanikumar,et al. Influence of process parameters on electric discharge machining of WC/30%Co composites , 2008 .
[44] André I. Khuri,et al. Response Surface Methodology and Related Topics , 2007 .
[45] D. Cox. Response Surfaces, Mixtures, and Ridge Analyses, 2nd Edition by George E.P. Box, Norman R. Draper , 2007 .
[46] G. Box,et al. Response Surfaces, Mixtures and Ridge Analyses , 2007 .
[47] K. Palanikumar,et al. Optimization of machining parameters in turning GFRP composites using a carbide (K10) tool based on the taguchi method with fuzzy logics , 2006 .
[48] Mark J. Anderson,et al. RSM Simplified: Optimizing Processes Using Response Surface Methods for Design of Experiments, Second Edition , 2004 .
[49] V. Agarwala,et al. Electroless alloy/composite coatings: A review , 2003 .
[50] C. K. H. Dharan,et al. Drilling of Aramid and Carbon Fiber Polymer Composites , 2002 .
[51] Philip Koshy,et al. Machining of Ceramics and Composites , 1999 .
[52] Norman R. Draper,et al. Response Surface Methodology: Process and Product Optimization Using Designed Experiments , 1997 .
[53] Douglas C. Montgomery,et al. Response Surface Methodology: Process and Product Optimization Using Designed Experiments , 1995 .
[54] 著者名なし. プロテク (PROduction TECHnology) 研究会 , 1992 .
[55] M. Flemings,et al. Preparation and casting of metal-particulate non-metal composites , 1974 .
[56] Hari Babu Upputuri,et al. Optimization of drilling parameters on carbon fiber reinforced polymer composites using fuzzy logic , 2020 .
[57] Q. Yu. Application of nanomaterials in alkali-activated materials , 2019, Nanotechnology in Eco-efficient Construction.
[58] S. Ponnuvel,et al. A study on machinability evaluation of Al-Gr-B4C MMC using response surface methodology-based desirability analysis and artificial neural network technique , 2019, International Journal of Rapid Manufacturing.
[59] A. Paoletti,et al. Machinability Aspects of Metal Matrix Composites , 2012 .
[60] C. C. Tsao,et al. Drilling processes for composites , 2012 .
[61] Ryutaro Fukushima. CARBON FIBERS , 2002 .