Dr. Bijoy Kumar Nanda
My Social Links

Dr. Bijoy Kumar Nanda

Professor
National Institute of Technology, India


Highest Degree
Ph.D. in Mechanical Engineering from Sambalpur University, India

Share this Profile



Advertisement
Event

Biography

Dr. Bijoy Kumar Nanda is currently working as Professor at National Institute of Technology, India. He has completed his Ph.D. in Mechanical Engineering from National Institute of Technology, India. He has guided 4 PhD students, 33 M. Tech. thesis and 41 Under Graduate Project. He also completed 3 funded research projects. Previously he was appointed as Lecturer and Assistant Professor at National Institute of Technology, Rourkela, and Vice Chancellor at VSSUT, Burla (Govt. of Odisha Technical University). He is member of International Institute of Acoustics and Vibration, and fellow of Institution of Engineers (India). He is Editor-in-Chief for Space Research Journals and reviewed number of papers in journals. Dr. Bijoy received honors includes awarded with a Certificate by the Institution of Engineers (India), Orissa State Centre, and awarded with the Sankarsan Jena Memorial Award (GOLD MEDAL) by the Institution of Engineers (India) and many others. He has published 63 research articles in national and international journals, and 19 national and international conference papers contributed as author/co-author.

Area of Interest:

Engineering
100%
Mechanical Engineering
62%
Civil Engineering
90%
Aeronautics
75%
Electric Engineering
55%

Research Publications in Numbers

Books
0
Chapters
0
Articles
63
Abstracts
19

Selected Publications

  1. Sahoo, S.K., J.R. Mohanty, B.K. Nanda, S. Nayak and S.K. Khuntiaet al. 2022. Fabrication and characterization of acrylic acid treated rattan fiber reinforced polyethylene terephthalate composites for packaging industries. J. Nat. Fibers, 19: 5768-5781.
    CrossRef  |  Direct Link  |  
  2. Bonda, A.G.Y., B.K. Nanda and S. Jonnalagadda, 2020. Vibration signature based stability studies in internal turning with a wavelet denoising preprocessor. Measurement, Vol. 154. 10.1016/j.measurement.2020.107520.
    CrossRef  |  Direct Link  |  
  3. Nayak, S., J.R. Mohanty, P.R. Samal and B.K. Nanda, 2018. Polyvinyl chloride reinforced with areca sheath fiber composites-An experimental study. J. Nat. Fibers, 10.1080/15440478.2018.1534186.
    CrossRef  |  Direct Link  |  
  4. Swain, A., T. Roy and B.K. Nanda, 2017. Vibration damping characteristics of carbon nanotubes-based thin hybrid composite spherical shell structures. Mech. Adv. Mater. Struct., 24: 95-113.
    CrossRef  |  Direct Link  |  
  5. Bhattacharjee, A. and B.K. Nanda, 2017. Damping study of composites using wavelet analysis. J. Vibr. Control, 24: 5141-5151.
    CrossRef  |  Direct Link  |  
  6. Thomas, B., P. Inamdar, T. Roy and B.K. Nanda, 2013. Finite element modeling and free vibration analysis of functionally graded nanocomposite beams reinforced by randomly oriented carbon nanotubes. Int. J. Theor. Appl. Res. Mech. Eng., 2: 97-102.
    Direct Link  |  
  7. Swain, A., T. Roy and B.K. Nanda, 2013. Vibration behaviour of single walled carbon nanotube using finite element. Int. J. Theor. Appl. Res. Mech. Eng., 2: 129-133.
    Direct Link  |  
  8. Singh, B. and B.K. Nanda, 2013. Dynamic analysis of damping mechanism in welded multilayered mild steel beams. Aerospace Sci. Technol., 29: 58-73.
    CrossRef  |  Direct Link  |  
  9. Singh, B. and B.K. Nanda, 2013. Dynamic analysis of damping in layered and welded beams. Eng. Struct., 48: 10-20.
    CrossRef  |  Direct Link  |  
  10. Thatoi, D.N., R.C. Mohanty, A.K. Acharya and B.K. Nanda, 2012. Damping improvement in layered and jointed beams by finite element analysis. Adv. Mater. Res., 505: 501-505.
    Direct Link  |  
  11. Singh, B., K.K. Agrawal and B.K. Nanda, 2012. Vibration attenuation in layered and welded beams with unequal thickness. Int. J. Civil Environ. Eng., 6: 364-373.
    Direct Link  |  
  12. Singh, B. and B.K. Nanda, 2012. Study of damping in layered and welded aluminium cantilever beams of unequal thickness with interlayer slip. Aust. J. Mech. Eng., 9: 61-73.
    Direct Link  |  
  13. Singh, B. and B.K. Nanda, 2012. Slip damping mechanism in welded structures using response surface methodology. Exp. Mech., 52: 771-791.
    CrossRef  |  Direct Link  |  
  14. Singh, B. and B.K. Nanda, 2012. Investigation into the effect of surface roughness on the damping of tack-welded structures using response surface methodology approach. J. Vibr. Control, 19: 547-559.
    CrossRef  |  Direct Link  |  
  15. Singh, B. and B.K. Nanda, 2012. Identification of damping mechanism in layered and welded structures. Int. J. Mech. Sci., 63: 37-47.
    CrossRef  |  Direct Link  |  
  16. Singh, B. and B.K. Nanda, 2012. Estimation of damping in layered welded structures with unequal thickness. Shock Vibr., 19: 1463-1475.
    CrossRef  |  Direct Link  |  
  17. Singh, B. and B.K. Nanda, 2012. Effect of interlayer slip on the damping of layered and welded aluminium beams. J. Aerospace Eng., 226: 898-911.
    CrossRef  |  Direct Link  |  
  18. Singh, B. and B.K. Nanda, 2012. Dynamic mechanism in welded structures. Int. J. Adv. Comput. Sci., 2: 441-448.
  19. Singh, B. and B.K. Nanda, 2012. Dynamic analysis of multilayered welded aluminum cantilever beams. Applied Acoust., 73: 1174-1184.
    CrossRef  |  Direct Link  |  
  20. Singh, B. and B.K. Nanda, 2012. Analysis of damping in layered welded structures using response surface methodology approach. Int. J. Struct. Eng., 3: 170-188.
    CrossRef  |  Direct Link  |  
  21. Mohanty, R.C. and B.K. Nanda, 2012. Finite element analysis of slip damping in riveted built-up beams. Int. J. Struct. Eng., 3: 205-266.
    Direct Link  |  
  22. Mohanty, R.C. and B.K. Nanda, 2012. Determination of slip damping in jointed riveted beams. Aust. J. Mech. Eng., 9: 23-34.
    Direct Link  |  
  23. Singh, B. and B.K. Nanda, 2011. Damping mechanism in welded structures. Int. J. Eng. Nat. Sci., 4: 115-120.
    Direct Link  |  
  24. Pradhan, Arundhati and B.K. Nanda, 2011. Investigation of damping mechanism in layered and bolted beams with unequal thickness ratio and uniform pressure distribution at the interfaces. Int. J. Appl. Eng. Res., 6: 711-718.
  25. Nanda, B.K., 2011. Damping of layered cantilever beams of various materials with uniform intensity of pressure distribution at the interfaces. Int. J. Struct. Eng., 2: 315-333.
    Direct Link  |  
  26. Nanda, B.K., 2011. Damping capacity of various materials with non-uniform intensity of pressure distribution at the interfaces of a layered and jointed structure. Int. J. Des. Eng., 4: 244-268.
    Direct Link  |  
  27. Mohanty, R.C. and B.K. Nanda, 2011. Effect of thickness ratio on the slip damping of jointed aluminium cantilever beams. Int. J. Des. Eng., 4: 269-290.
    Direct Link  |  
  28. Mohanty, R.C. and B.K. Nanda, 2011. Effect of micro-slip on the damping capacity of jointed riveted structures with unequal thickness. J. Vib. Control, 17: 235-244.
    CrossRef  |  Direct Link  |  
  29. Singh, B. and B.K. Nanda, 2010. Mechanism of damping in welded structures using finite element approach. Int. J. Infrom. Math. Sci., 6: 138-142.
    Direct Link  |  
  30. Singh, B. and B.K. Nanda, 2010. Effect of welding on the slip damping of layered and jointed structures. J. Eng. Mech., 136: 928-932.
    CrossRef  |  Direct Link  |  
  31. Singh, B. and B.K. Nanda, 2010. Damping mechanism in welded structures. Int. J. Eng. Applied Sci., 6: 397-402.
  32. Mohanty, R.C. and B.K. Nanda, 2010. Investigation into the dynamics of layered and jointed cantilever beams. Proc. Inst. Mech. Eng. Part C: J. Mech. Eng. Sci., 224: 2129-2139.
    CrossRef  |  Direct Link  |  
  33. Singh, B. and B.K. Nanda, 2009. Study of damping in layered and jointed welded structures. Int. J. Des. Eng., 2: 169-190.
    CrossRef  |  Direct Link  |  
  34. Mohanty, R.C. and B.K. Nanda, 2009. Damping in layered and jointed riveted structures with equal thickness. Proc. Inst. Mech. Eng. Part C: J. Mech. Eng. Sci., 223: 319-328.
    CrossRef  |  Direct Link  |  
  35. Nanda, B.K., 2008. Effect of bolt diameter and washer on structural damping of layered and jointed copper structures. Aust. J. Mech. Eng., 5: 9-26.
    Direct Link  |  
  36. Nanda, B.K., 2006. Study of the effect of bolt diameter and washer on damping in layered and jointed structures. J. Sound Vibr., 290: 1290-1314.
    CrossRef  |  Direct Link  |  
  37. Nanda, B.K., 2006. Damping capacity of layered and jointed copper structures. J. Vibr. Control, 12: 577-600.
    CrossRef  |  Direct Link  |  
  38. Nanda, B.K. and A.K. Behera, 2005. Study on structural damping of aluminium using multi-layered and jointed construction. Struct. Eng. Mechan. Int. J., 20: 631-653.
  39. Nanda, B.K. and A.K. Behera, 2000. Damping in layered and jointed structures. Shock Vib. Digest, 32: 55-55.
  40. Nanda, B.K. and A.K. Behera, 2000. Damping in layered and jointed structures. Int. J. Acoust. Vibr., 5: 89-95.
  41. Nanda, B.K. and A.K. Behera, 1999. Study on damping in layered and jointed structures with uniform pressure distribution at the interfaces. J. Sound Vibr., 226: 607-624.
    CrossRef  |  Direct Link  |  
  42. Nanda, B.K., A.K. and Behera, 1996. Experimental study on the effect of spacing of connecting bolts on damping in layered and jointed structures. J. Inst. Eng. (India) Mech. Eng. Div., 77: 120-124.
  43. Behera, A.K. and B.K. Nanda, 1986. Dynamic characteristics of structures bonded with viscoelastic unconstrained layers. Trans. CSME., 10: 175-182.