Analysis and modeling the size effect on vibration of functionally graded nanobeams based on nonlocal Timoshenko beam theory O Rahmani, O Pedram International Journal of Engineering Science 77, 55-70, 2014 | 376 | 2014 |
Finite element modeling of low-velocity impact on laminated composite plates and cylindrical shells SMR Khalili, M Soroush, A Davar, O Rahmani Composite Structures 93 (5), 1363-1375, 2011 | 133 | 2011 |
Free vibration response of composite sandwich cylindrical shell with flexible core O Rahmani, SMR Khalili, K Malekzadeh Composite Structures 92 (5), 1269-1281, 2010 | 108 | 2010 |
Buckling analysis of functionally graded nanobeams based on a nonlocal third-order shear deformation theory O Rahmani, AA Jandaghian Applied Physics A 119, 1019-1032, 2015 | 93 | 2015 |
Free vibration of shallow and deep curved FG nanobeam via nonlocal Timoshenko curved beam model SAH Hosseini, O Rahmani Applied Physics A 122, 1-11, 2016 | 81 | 2016 |
Free vibration analysis of sandwich structures with a flexible functionally graded syntactic core O Rahmani, SMR Khalili, K Malekzadeh, H Hadavinia Composite Structures 91 (2), 229-235, 2009 | 78 | 2009 |
Free vibration analysis of magneto-electro-thermo-elastic nanobeams resting on a Pasternak foundation AA Jandaghian, O Rahmani Smart Materials and Structures 25 (3), 035023, 2016 | 69 | 2016 |
Assessment of various nonlocal higher order theories for the bending and buckling behavior of functionally graded nanobeams O Rahmani, V Refaeinejad, SAH Hosseini Steel Compos. Struct 23 (3), 339-350, 2017 | 66 | 2017 |
Exact solution for axial and transverse dynamic response of functionally graded nanobeam under moving constant load based on nonlocal elasticity theory SAH Hosseini, O Rahmani Meccanica 52 (6), 1441-1457, 2017 | 56 | 2017 |
Thermomechanical vibration of curved functionally graded nanobeam based on nonlocal elasticity SAH Hosseini, O Rahmani Journal of Thermal Stresses 39 (10), 1252-1267, 2016 | 53 | 2016 |
A high-order theory for the analysis of circular cylindrical composite sandwich shells with transversely compliant core subjected to external loads O Rahmani, SMR Khalili, OT Thomsen Composite Structures 94 (7), 2129-2142, 2012 | 50 | 2012 |
Dynamic Green Function Solution of Beams Under a Moving Load with Di erent Boundary Conditions A Davar, O Rahmani, B Mehri Scientia iranica 16 (3), 2009 | 49 | 2009 |
Vibration analysis of functionally graded piezoelectric nanoscale plates by nonlocal elasticity theory: An analytical solution AA Jandaghian, O Rahmani Superlattices and Microstructures 100, 57-75, 2016 | 46 | 2016 |
Active vibration control of nanotube structures under a moving nanoparticle based on the nonlocal continuum theories M Pourseifi, O Rahmani, SAH Hoseini Meccanica 50 (5), 1351-1369, 2015 | 42 | 2015 |
Torsional vibration of cracked nanobeam based on nonlocal stress theory with various boundary conditions: an analytical study O Rahmani, SAH Hosseini, MH Noroozi Moghaddam, ... International Journal of Applied Mechanics 7 (03), 1550036, 2015 | 40 | 2015 |
Free vibration of deep curved FG nano-beam based on modified couple stress theory O Rahmani, SAH Hosseini, I Ghoytasi, H Golmohammadi Steel and Composite Structures 26 (5), 607-20, 2018 | 38 | 2018 |
Buckling and free vibration of shallow curved micro/nano-beam based on strain gradient theory under thermal loading with temperature-dependent properties O Rahmani, SAH Hosseini, I Ghoytasi, H Golmohammadi Applied Physics A 123, 1-21, 2017 | 37 | 2017 |
Surface effects on buckling of double nanobeam system based on nonlocal Timoshenko model SAH Hosseini, O Rahmani International Journal of Structural Stability and Dynamics 16 (10), 1550077, 2016 | 36 | 2016 |
On nonlinear forced vibration of nano cantilever-based biosensor via couple stress theory SJ Behrouz, O Rahmani, SA Hosseini Mechanical Systems and Signal Processing 128, 19-36, 2019 | 35 | 2019 |
Size-dependent free vibration analysis of functionally graded piezoelectric plate subjected to thermo-electro-mechanical loading AA Jandaghian, O Rahmani Journal of Intelligent Material Systems and Structures 28 (20), 3039-3053, 2017 | 35 | 2017 |