21 Papers
76 Citations
K. Khan is an academic researcher from National Institute of Technology, Durgapur. The author has contributed to research in topics: Beam (structure) & Vibration. The author has an hindex of 7, co-authored 17 publications. Previous affiliations of K. Khan include Indian Institute of Technology Delhi.
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Papers
Nanocolumnar Crystalline Vanadium Oxide-Molybdenum Oxide Antireflective Smart Thin Films with Superior Nanomechanical Properties
Arjun Dey,Manish Kumar Nayak,Manish Kumar Nayak,A. Carmel Mary Esther,Maurya Sandeep Pradeepkumar,Maurya Sandeep Pradeepkumar,Deeksha Porwal,A. K. Gupta,Parthasarathi Bera,Harish C. Barshilia,Anoop Kumar Mukhopadhyay,Ajoy Kumar Pandey,K. Khan,Manjima Bhattacharya,D. Raghavendra Kumar,N. Sridhara,Anand Kumar Sharma +16 more
TL;DR: The combination of the nanoindentation technique and the finite element modeling (FEM) was employed to investigate yield stress and von Mises stress distribution of the VO-MO thin films.
A new constitutive model for bimodular laminated structures: Application to free vibrations of conical/cylindrical panels
B.P. Patel,K. Khan,Y. Nath +2 more
TL;DR: In this article, a constitutive model is proposed for analysis of bimodular composite laminated structures, where the material properties are assigned according to the nature of fiber direction and transverse to fiber direction normal strains.
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Vibration analysis of bimodulus laminated cylindrical panels
K. Khan,B.P. Patel,Y. Nath +2 more
TL;DR: In this article, a detailed parametric study is carried out to study the influences of thickness ratio, aspect ratio, lamination scheme, edge conditions and bimodularity ratio on the free vibration characteristics of bimulus angle-and cross-ply composite laminated cylindrical panels.
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Free and forced vibration characteristics of bimodular composite laminated circular cylindrical shells
K. Khan,B.P. Patel,Y. Nath +2 more
TL;DR: In this article, the free and forced vibration characteristics of bimodular cross-ply laminated clamped clamped circular cylindrical shells are studied using Bert's and a recently proposed model considering first order shear deformation theory.
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Frequency response of bimodular cross-ply laminated cylindrical panels
K. Khan,B.P. Patel,Y. Nath +2 more
TL;DR: In this article, an approach based on Galerkin method in time domain is proposed for the steady-state response of bimodular material structures that eliminates the numerical instability, which is due to the sudden change in the restoring force from positive/negative half cycle to negative/positive half cycle.
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