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Jayanta Kumar Nath
Jayanta Kumar Nath
Professor, SOA Deemed to be University
Verified email at soa.ac.in
Title
Cited by
Cited by
Year
Efficient modeling of smart piezoelectric composite laminates: a review
S Kapuria, P Kumari, JK Nath
Acta Mechanica 214 (1), 31-48, 2010
1172010
On the accuracy of recent global–local theories for bending and vibration of laminated plates
S Kapuria, JK Nath
Composite Structures 95, 163-172, 2013
382013
Improved efficient zigzag and third order theories for circular cylindrical shells under thermal loading
PC Dumir, JK Nath, P Kumari, S Kapuria
Journal of Thermal Stresses 31 (4), 343-367, 2008
332008
Static and free vibration analysis of multilayered functionally graded shells and plates using an efficient zigzag theory
JK Nath, T Das
Mechanics of Advanced Materials and Structures 26 (9), 770-788, 2019
182019
Coupled efficient layerwise and smeared third order theories for vibration of smart piezolaminated cylindrical shells
JK Nath, S Kapuria
Composite Structures 94 (5), 1886-1899, 2012
182012
Coupled global-local and zigzag-local laminate theories for dynamic analysis of piezoelectric laminated plates
S Kapuria, JK Nath
Journal of sound and vibration 332 (2), 306-325, 2013
152013
Analytical piezoelasticity solution for vibration of piezoelectric laminated angle-ply circular cylindrical panels
S Kapuria, P Kumari, JK Nath
Journal of sound and vibration 324 (3-5), 832-849, 2009
142009
2D exact solutions for flat hybrid piezoelectric and magnetoelastic angle-ply panels under harmonic load
P Kumari, JK Nath, PC Dumir, S Kapuria
Smart materials and structures 16 (5), 1651, 2007
112007
Assessment of improved zigzag and smeared theories for smart cross-ply composite cylindrical shells including transverse normal extensibility under thermoelectric loading
JK Nath, S Kapuria
Archive of Applied Mechanics 82, 859-877, 2012
102012
An improved third order theory and assessment of efficient zigzag theory for angle-ply flat hybrid panels
P Kumari, JK Nath, S Kapuria, PC Dumir
Composite structures 83 (2), 226-236, 2008
102008
Efficient laminate theory for predicting transverse shear stresses in piezoelectric composite plates
S Kapuria, JK Nath
AIAA journal 47 (12), 3022-3030, 2009
82009
Improved smeared and zigzag third-order theories for piezoelectric angle-ply laminated cylindrical shells under electrothermomechanical loads
JK Nath, S Kapuria
Journal of Mechanics of Materials and Structures 4 (6), 1157-1184, 2009
72009
Global–local and zigzag-local theories for direct transverse shear stress computation in piezolaminated plates under thermal loading
JK Nath, S Kapuria
International Journal of Mechanical Sciences 75, 158-169, 2013
52013
Zigzag theory for piezoelectric-layer-integrated functionally graded material plates
T Das, JK Nath
AIAA Journal 59 (4), 1406-1421, 2021
42021
Enhanced zigzag theory for static analysis of composite plates: Zigzag theory for composite plates
JK Nath, BB Mishra
Archive of Applied Mechanics 88 (9), 1595-1615, 2018
42018
Improved global-local theory for laminated plates under thermal load with actual temperature profile
S Kapuria, JK Nath
Journal of Thermal Stresses 35 (1-3), 169-191, 2012
42012
Two‐dimensional benchmark solution for buckling and vibration of simply supported hybrid piezoelectric angle‐ply flat panels
PC Dumir, S Kapuria, P Kumari, JK Nath
ZAMM‐Journal of Applied Mathematics and Mechanics/Zeitschrift für Angewandte …, 2008
42008
Utilization of methanol and ethanol for 3, 3′-bis (indolyl) methane synthesis through activation of peroxymonosulfate over a copper catalyst
A Devi, MM Bharali, S Biswas, TJ Bora, JK Nath, S Lee, YB Park, L Saikia, ...
Green Chemistry 25 (9), 3443-3448, 2023
22023
Transverse shear stress relaxed zigzag theory for cylindrical bending of laminated composite and piezoelectric panels
BB Mishra, JK Nath, T Biswal, T Das
Applied Mathematical Modelling 71, 584-600, 2019
22019
Efficient global zigzag theory for elastic laminated plates
P Kumari, JK Nath, S Kapuria, PC Dumir
Journal of reinforced plastics and composites 28 (9), 1025-1047, 2009
22009
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