1Three-dimensional finite element analysis to predict the effects of SMAW process parameters on temperature distributions and weldment zones in butt and one-sided fillet welds, (2006), M. M. Mahapatra, G. L. Datta, B. Pradhan, Proc. Instn. Mech Engrs, Part B: J. of Engineering Manufacture, 220, 837-845.
2Three- dimensional finite element analysis to predict the effects of SAW process parameters on temperatures and angular distortions in single pass butt joints with top and bottom reinforcements, (2006), M. M. Mahapatra, G. L. Datta, B. Pradhan, N. R. Mandal, Int. J. of Pressure Vessels and Piping, 83,721-729.
3Modeling the effects of constraints and SAW process parameters on angular distortions in one-sided fillet welds, (2007), M. M. Mahapatra, G. L. Datta, B. Pradhan, N. R. Mandal, Proc. Instn. Mech Engrs, Part B: J. of Engineering Manufacture, 221, 397-407.
4Modelling of angular distortion of double-pass butt-welded plate, (2008), M. M. Mahapatra, G. L. Datta, B. Pradhan, N. R. Mandal, Proc. Instn. Mech Engrs, Part B: J. of Engineering Manufacture,222, 391-401.
5Corrosion resistance of pulsed laser-treated Ti–6Al–4V implant in simulated biofluids,(2008), N. Zaveri, M. M. Mahapatra, A. Deceuster, Y. Peng, L. Li, A. Zhou, Electrochimica Acta, 53, 5022–5032
6Prediction of pulsed-laser powder deposits’ shape profiles using back propagation artificial neural network, (2008), M. M. Mahapatra, L. Li, Proc. Instn. Mech Engrs, Part B: J. of Engineering Manufacture,222, 1567–1576.
7Numerical and experimental study on prediction of thermal history and residual deformation and stresses of double sided fillet welding, (2010), P. Biswas, M. M. Mahapatra, N. R. Mandal, Proc. Instn. Mech Engrs, Part B: J. of Engineering Manufacture, 224(1), 125-134.
8Thermo-mechanical and experimental analysis of double pass line heating, (2011), P. Biswas, N. R. Mandal, O. P. Sha, M. M. Mahapatra, J. of Marine Science and Application,10, 190-198.
9Modeling and optimizing the effects of process parameters on galvanized steel sheet resistance spot welds, (2011), L. Boriwal, M. M. Mahapatra, P. Biswas, Proc. Instn. Mech Engrs, Part B: J. of Engineering Manufacture, 226, 664-674.
10Prediction of the weld pool geometry of TIG arc welding by using fuzzy logic controller, (2011), H. K. Narang, U. P. Singh, M. M. Mahapatra, P. K. Jha, Int. J. Engineering Science and Technology, 3(9),77-85.
11A study on fluidity and hot-tearing of A206, A518 and A713 cast alloys, A. K Birru, (2011), M. M. Mahapatra, D. B. Karunakar, and P. Kumar, Indian Foundry Journal, 57 (1), 38-45.
12A Study on hot tearing susceptibility of Al–Cu, Al–Mg, and Al–Zn alloys, (2012), A. K. Birru, D. B. Karunakar, M. M. Mahapatra, Trans. Indian Institute of Metals, 265(1), 97–105.
13Fluidity of A713 cast alloy with and without scrap addition using double spiral fluidity test: a comparison, (2012), A. K. Birru, D. B. Karunakar, M. M. Mahapatra, Int. J. Mech. and Aerospace Engineering, 6, 92-96.
14Fuzzy logic based prediction of saw weldment shape profiles,(2012), H. K. Narang, M. M. Mahapatra, P. K Jha, P. Biswas, J. of Marine Science and Application, 11, 387-391.
15Modelling and predicting the effects of submerged arc weldment process parameters on weldment characteristics and shape profiles, (2012), H. K. Narang, M. M. Mahapatra, P. K. Jha, I. Mukherjee, Proc. Instn. Mech Engrs, Part B: J. of Engineering Manufacture, 226 (7),1230-1240.
16Prediction and optimization of TIG weldment macrostructure zones using response surface methodology, (2012), H. K. Narang, U. P. Singh, M. M. Mahapatra, P. K. Jha, J. of Manufacturing Science and Production, 12(3-4), 171-180.
17Effect of tool shoulder and pin probe profiles on friction stirred aluminum welds – A comparative study, (2012), H. K. Mohanty, M. M. Mahapatra, P. Kumar, P. Biswas, N. R. Mandal, J. of Marine Science and Application, 11, 200-207.
18Study on the effect of tool profiles on temperature distribution and material flow characteristics in friction stir welding, (2012), H. K. Mohanty, M. M. Mahapatra, P. Kumar, P. Biswas, N. R. Mandal, Proc. Instn. Mech Engrs, Part B: J. of Engineering Manufacture, 226(9), 1527–1535.
19Modeling the effects of tool probe geometries and process parameters on friction stirred aluminium welds, (2012), H. K. Mohanty, D. Venkateswarlu, M. M. Mahapatra, P. Kumar, N. R. Mandal, J. Mech. Engineering and Automation, 2(4),74-79.
20Modeling the effects of tool shoulder and probe profile geometries on friction stirred aluminum welds using response surface methodology,(2012), H. K. Mohanty, M. M. Mahapatra, P. Kumar, P. Biswas, N. R. Mandal, J. of Marine Science and Application, 11, 493-503.
21Fabrication and characterizations of mechanical properties of Al-4.5%Cu/10TiC composite by in-situ method, (2012), A. Kumar, M. M. Mahapatra, P. K. Jha, J. of Minerals and Materials Characterization and Engineering, 11, 1075-1080.
22The key attributes of synthesizing ceramic particulate reinforced Al based matrix composites through stir casting process, a review,(2013), S.Y. Belete, P. K. Jha, M. M. Mahapatra, Materials and Manufacturing Processes, 28(9), 969-979.
23Influence of reinforcement type on microstructure, hardness, and tensile properties of an aluminum alloy metal matrix composite, (2013), S. Y. Belete, M. M. Mahapatra, P. K. Jha, J. of Minerals and Materials Characterization and Engineering, 1(4), 124-130.
24A study on friction stir welding of 12mm thick aluminum alloy plates,(2013), A. K. Deepati, P. Biswas, S. Tikader, M. M. Mahapatra, N. R. Mandal, J. of Marine Science and Application, 12, 493-499.
25Effect of sliding distance, applied load, and weight percentage of reinforcement on the abrasive wear properties of in situ synthesized Al–12%Si/TiC composites,(2013) S. Y. Belete, P. K. Jha, M. M. Mahapatra, Tribology Transactions, 56(4), 546-554.
26Experimental study and modeling of friction stir welding process to produce optimized AA2219 butt welds for aerospace application,(2013) S. Balaji, M. M. Mahapatra, Proc. Instn. Mech Engrs, Part B: J. Engineering Manufacture,227(1), 132-143.
27Predicting the effects of tool geometries on friction stirred aluminum welds using artificial neural networks and fuzzy logic techniques, (2013), H.K Mohanty, M. M Mahapatra, P. Kumar, P. Biswas, and N. R. Mandal, Int. J. of Manufacturing Research, 8(3), 296-312.
28On modeling the abrasive wear characteristics of in situ Al–12%Si/TiC composites,(2013), S. Y Belete, M. M. Mahapatra, P. K. Jha, Materials & Design, 50, 277–284.
29Tool designs effects for FSW of AA7039,(2013), D. Venkateswarlu, N. R. Mandal, M. M. Mahapatra, S. P. Harsha, Welding Journal, 92, 41s-47s.
30Modelling the abrasive wear characteristics of in-situ synthesized Al-4.5%Cu/TiC composites,(2013), A. Kumar, M. M. Mahapatra, P. K. Jha, Wear, 306, 170–178.
31On friction stir butt welding of Al+12Si/10wt%TiC in-situ composite,( 2014), S. Y. Belete, M. M. Mahapatra, P. K. Jha, N. R. Mandal, Materials & Design, 54,1019–1027.
32Effect of machining parameters on cutting force and surface roughness of in-situ Al-4.5%Cu/TiC metal matrix composites,(2014), A. Kumar, M. M. Mahapatra, P. K. Jha, Measurement, 48, 325–332.
33Abrasive wear behavior of in situ TiC reinforced with Al-4.5%Cu matrix,(2014), A. Kumar, P. K. Jha, M. M. Mahapatra, Journal of Materials Engineering and Performance, 23,743–752.
34Optimization and prediction of angular distortion and weldment characteristics of TIG square butt joints, (2014), H. K. Narang, M. M Mahapatra, PK Jha, P Biswas, Journal of Materials Engineering and Performance, 23,1750–1758.
35Influence of tool geometries and process variables on friction stir butt welding of Al-4.5%Cu/TiC in-Situ metal matrix composites, (2014), A Kumar, M. M Mahapatra, P. K. Jha, NR Mandal, D Venkateswarlu, Materials & Design, 59, 406–414.
36Deposition of nanocrystalline coatings by modified LVOF thermal spray method,(2014), N Rana, M. M. Mahapatra, R. Jayaganthan, S. Prakash, Journal of Alloys and Compounds, 615, 779–783.
37On the estimation of error in measuring the residual stress by strain gauge rosette, (2014), A. Giri, C. Pandey, M. M. Mahapatra, K. Sharma, and P. K. Singh, Measurement, doi: http:// dx. doi.org/10.1016/j.measurement.2014.12.047.
38High-temperature oxidation and hot corrosion studies on NiCrAlY coatings deposited by flame-spray technique, (2015), N. Rana, M. M. Mahapatra, R. Jayaganthan, S. Prakash, Journal of Thermal Spray Technology, DOI: 10.1007/s11666-015-0237-z.
39Processing and optimization of dissimilar friction stir welding of AA 2219 and AA 7039 alloys,(2015), D. Venkateswarlu, P. Nageswara Rao, M. M. Mahapatra, S. P. Harsha, and N. R. Mandal, Journal of Materials Engineering and Performance, DOI: 10.1007/s11665-015-1779-4.
40Effect of heat Treatment on microstructure and hot impact toughness of P91 welded pipes, (2016), C. Pandey and M. M. Mahapatra, Journal of Materials Engineering and Performance, 25(6), 2195-2210.
41Effect of groove design and post-weld heat treatment on microstructure and mechanical properties of P91 steel weld, (2016), C. Pandey and M. M. Mahapatra, Journal of Materials Engineering and Performance, doi: DOI: 10.1007/s11665-016-2127-z.
42Evolution of phases in P91 steel in various heat treatment condition and their effect on microstructure stability and mechanical properties, (2016), C. Pandey, A. Giri, M. M. Mahapatra, Materials Science & Engineering A, 2016, 664, 58-74.
43Effect of long term ageing on the microstructure and mechanical properties of creep strength enhanced ferritic P91 steel, (2016), C. Pandey, A. Giri, M. M. Mahapatra,, Trans. of Indian Institute of Metals, DOI 10.1007/s12666-015-0826-z.
44Effect of normalizing temperature on microstructural stability and mechanical properties of creep strength enhanced ferritic P91 steel, (2016), C. Pandey, A. Giri, M. M. Mahapatra, Materials Science & Engineering A, 657, 173–184.
45On the prediction of effect of direction of welding on bead geometry and residual deformation of double-sided fillet welds,(2016), C. Pandey, A. Giri, M. M. Mahapatra, International Journal of Steel Structures, 16(2), 1-13.
46Evolution of phases during tempering of P91 steel at 760 oC for varying tempering time and their effect on microstructure and mechanical properties (2016), C. Pandey and M. M. Mahapatra, Proceedings of the Institution of Mechanical Engineers, Part E: Journal of Process Mechanical Engineering (Accepted for publication).