Effect of density, microstructure, and strain rate on compression behavior of polymeric foams MC Saha, H Mahfuz, UK Chakravarty, M Uddin, ME Kabir, S Jeelani Materials Science and Engineering: A 406 (1-2), 328-336, 2005 | 297 | 2005 |
An investigation on the dynamic response of polymeric, metallic, and biomaterial foams UK Chakravarty Composite structures 92 (10), 2339-2344, 2010 | 52 | 2010 |
Aerodynamic control of micro air vehicle wings using electroactive membranes MR Hays, J Morton, B Dickinson, UK Chakravarty, WS Oates Journal of Intelligent Material Systems and Structures 24 (7), 862-878, 2013 | 48 | 2013 |
Strain rate effects on sandwich core materials: an experimental and analytical investigation U Chakravarty, H Mahfuz, M Saha, S Jeelani Acta materialia 51 (5), 1469-1479, 2003 | 46 | 2003 |
On the resonance frequencies of a membrane of a dielectric elastomer UK Chakravarty Mechanics Research Communications 55, 72-76, 2014 | 31 | 2014 |
Heat Transfer and Melt-Pool Evolution During Powder-Bed Fusion of Ti-6Al-4V Parts Under Various Laser Irradiation Conditions MS Rahman, PJ Schilling, PD Herrington, UK Chakravarty ASME International Mechanical Engineering Congress and Exposition 84515 …, 2020 | 29 | 2020 |
Experimental and finite element modal analysis of a pliant elastic membrane for micro air vehicles applications UK Chakravarty, R Albertani | 27 | 2012 |
On the modeling of composite beam cross-sections UK Chakravarty Composites Part B: Engineering 42 (4), 982-991, 2011 | 27 | 2011 |
Thermofluid properties of Ti-6Al-4V melt pool in powder-bed electron beam additive manufacturing MS Rahman, PJ Schilling, PD Herrington, UK Chakravarty Journal of Engineering Materials and Technology 141 (4), 041006, 2019 | 22 | 2019 |
A comparison of the thermo-fluid properties of Ti-6Al-4V melt pools formed by laser and electron-beam powder-bed fusion processes MS Rahman, PJ Schilling, PD Herrington, UK Chakravarty Journal of Engineering Materials and Technology 143 (2), 021003, 2021 | 21 | 2021 |
SectionBuilder: An innovative finite element tool for analysis and design of composite rotor blade cross-sections UK Chakravarty Composite Structures 92 (2), 284-294, 2010 | 21 | 2010 |
Thermal Behavior and Melt-Pool Dynamics of Cu-Cr-Zr Alloy in Powder-Bed Selective Laser Melting Process MS Rahman, PJ Schilling, PD Herrington, UK Chakravarty ASME International Mechanical Engineering Congress and Exposition 59360 …, 2019 | 17 | 2019 |
Vibration analysis of a composite helicopter rotor blade at hovering condition P Sarker, CR Theodore, UK Chakravarty ASME International Mechanical Engineering Congress and Exposition 50510 …, 2016 | 17 | 2016 |
A Comparative Study Between Selective Laser Melting and Electron Beam Additive Manufacturing Based on Thermal Modeling MS Rahman, PJ Schilling, PD Herrington, UK Chakravarty ASME International Mechanical Engineering Congress and Exposition 52002 …, 2018 | 16 | 2018 |
Modal analysis of a flexible membrane wing of micro air vehicles UK Chakravarty, R Albertani Journal of Aircraft 48 (6), 1960-1967, 2011 | 16 | 2011 |
Thermal Analysis of Electron Beam Additive Manufacturing Using Ti-6Al-4V Powder-Bed MS Rahman, PJ Schilling, PD Herrington, UK Chakravarty ASME International Mechanical Engineering Congress and Exposition 58349 …, 2017 | 14 | 2017 |
On the dynamic response of a hingeless helicopter rotor blade P Sarker, UK Chakravarty Aerospace Science and Technology 115, 106741, 2021 | 13 | 2021 |
Analytical and finite element modal analysis of a hyperelastic membrane for micro air vehicle wings UK Chakravarty Journal of Vibration and Acoustics 135 (5), 051004, 2013 | 13 | 2013 |
A generalization of the method of lines for the numerical solution of coupled, forced vibration of beams P Sarker, UK Chakravarty Mathematics and Computers in Simulation 170, 115-142, 2020 | 10 | 2020 |
Active Vibration Control of a Helicopter Rotor Blade by Using a Linear Quadratic Regulator MM Uddin, P Sarker, CR Theodore, UK Chakravarty ASME International Mechanical Engineering Congress and Exposition 52002 …, 2018 | 10 | 2018 |