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Dr. Akhtar khan
Dr. Akhtar khan
Indian Institute of Information Technology Design & Manufacturing, Kurnool
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Title
Cited by
Cited by
Year
Influence of cutting speed and cooling method on the machinability of commercially pure titanium (CP-Ti) grade II
A Khan, K Maity
Journal of Manufacturing Processes 31, 650-661, 2018
672018
Applicability of DLC and WC/C low friction coatings on Al2O3/TiCN mixed ceramic cutting tools for dry machining of hardened 52100 steel
CS Kumar, H Majumder, A Khan, SK Patel
Ceramics International 46 (8), 11889-11897, 2020
532020
Comparative study of some machinability aspects in turning of pure titanium with untreated and cryogenically treated carbide inserts
A Khan, K Maity
Journal of Manufacturing Processes 28, 272-284, 2017
482017
Parametric optimization of some non-conventional machining processes using MOORA method
A Khan, KP Maity
International journal of engineering research in Africa 20, 19-40, 2016
462016
Application of MCDM-based TOPSIS method for the selection of optimal process parameter in turning of pure titanium
A Khan, K Maity
Benchmarking: An International Journal 24 (7), 2009-2021, 2017
452017
Application of MCDM-based TOPSIS method for the optimization of multi quality characteristics of modern manufacturing processes
A Khan, KP Maity
International Journal of Engineering Research in Africa 23, 33-51, 2016
392016
Comparative analysis of hybrid MCDM methods in material selection for dental applications
AS Bhaskar, A Khan
Expert Systems with Applications 209, 118268, 2022
332022
A novel MCDM approach for simultaneous optimization of some correlated machining parameters in turning of CP-titanium grade 2
A Khan, KP Maity
International Journal of Engineering Research in Africa 22, 94-111, 2016
332016
Application potential of combined fuzzy-TOPSIS approach in minimization of surface roughness, cutting force and tool wear during machining of CP-Ti grade II
A Khan, K Maity
Soft Computing 23, 6667-6678, 2019
212019
Experimental investigation of the PMEDM of nickel free austenitic stainless steel: a promising coronary stent material
DK Naik, A Khan, H Majumder, RK Garg
Silicon 11, 899-907, 2019
192019
Parametric modelling of multiple quality characteristics in turning of CP titanium grade-2 with cryo-treated inserts
A Khan, K Maity
International Journal of Materials and Product Technology 54 (4), 306-331, 2017
192017
An integrated fuzzy-MOORA method for the selection of optimal parametric combination in turing of commercially pure titanium
A Khan, K Maity, D Jhodkar
Optimization of manufacturing processes, 163-184, 2020
162020
A Comprehensive GRNN Model for the Prediction of Cutting Force, Surface Roughness and Tool Wear During Turning of CP-Ti Grade 2
A Khan, K Maity
Silicon 10 (5), 2181–2191, 2018
142018
3D finite element modeling for estimating key machinability aspects in turning of commercially pure titanium
A Khan, K Maity
Surface Review and Letters 26 (01), 1850136, 2019
122019
Statistical modelling and machinability assessment of commercially pure titanium (CP-Ti) grade II: An experimental investigation
A Khan, K Maity
Measurement 137, 664-672, 2019
92019
Machinability assessment OF shape memory alloy nitinol during WEDM operation: application potential OF taguchi based AHP–DFA technique
H Majumder, A Khan, DK Naik, CS Kumar
Surface Review and Letters 29 (01), 2250002, 2022
82022
Fuzzy-MOORA Based Optimization of Machining Parameters for Machinability Enhancement of Titanium
KG Durwesh Jhodkar , Akhtar Khan
Mathematical Modelling of Engineering Problems 8 (2), 189-198, 2021
7*2021
Estimation of optimal cutting conditions during machining of CP-Ti grade 2 in fuzzy–VIKOR context: A hybrid approach
A Khan, K Maity
Grey Systems: Theory and Application 10 (3), 293-310, 2020
72020
Optimization of machining parameters using taguchi approach during hard turning of alloy steel with uncoated carbide under dry cutting environment
A Das, A Khan, S Mohanty
international journal of lean thinking 6 (2), 1-15, 2015
62015
Comparative study of some machinability aspects in turning of pure titanium with untreated and cryogenically treated carbide inserts. J Manuf Process 28: 272–284
A Khan, K Maity
52017
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