Investigation of microstructure, natural frequencies and vibration modes of dragonfly wing H Rajabi, M Moghadami, A Darvizeh Journal of Bionic Engineering 8 (2), 165-173, 2011 | 79 | 2011 |
Three dimensional static and dynamic analysis of thick functionally graded plates by the meshless local Petrov–Galerkin (MLPG) method AR Mojdehi, A Darvizeh, A Basti, H Rajabi Engineering Analysis with Boundary Elements 35 (11), 1168-1180, 2011 | 78 | 2011 |
Effect of microstructure on the mechanical and damping behaviour of dragonfly wing veins H Rajabi, A Shafiei, A Darvizeh, JH Dirks, E Appel, SN Gorb Royal Society open science 3 (2), 160006, 2016 | 68 | 2016 |
Numerical investigation of insect wing fracture behaviour H Rajabi, A Darvizeh, A Shafiei, D Taylor, JH Dirks Journal of biomechanics 48 (1), 89-94, 2015 | 67 | 2015 |
Resilin microjoints: a smart design strategy to avoid failure in dragonfly wings H Rajabi, A Shafiei, A Darvizeh, SN Gorb Scientific Reports 6 (1), 39039, 2016 | 62 | 2016 |
Dragonfly wing nodus: A one-way hinge contributing to the asymmetric wing deformation H Rajabi, N Ghoroubi, K Stamm, E Appel, SN Gorb Acta Biomaterialia 60, 330-338, 2017 | 57 | 2017 |
A comparative study of the effects of constructional elements on the mechanical behaviour of dragonfly wings H Rajabi, M Rezasefat, A Darvizeh, JH Dirks, SH Eshghi, A Shafiei, ... Applied Physics A 122, 1-13, 2016 | 53 | 2016 |
A comparative study of the effects of vein-joints on the mechanical behaviour of insect wings: I. Single joints H Rajabi, N Ghoroubi, A Darvizeh, JH Dirks, E Appel, SN Gorb Bioinspiration & biomimetics 10 (5), 056003, 2015 | 51 | 2015 |
Effects of multiple vein microjoints on the mechanical behaviour of dragonfly wings: numerical modelling H Rajabi, N Ghoroubi, A Darvizeh, E Appel, SN Gorb Royal Society open science 3 (3), 150610, 2016 | 48 | 2016 |
Stiffness distribution in insect cuticle: a continuous or a discontinuous profile? H Rajabi, M Jafarpour, A Darvizeh, JH Dirks, SN Gorb Journal of the Royal Society Interface 14 (132), 20170310, 2017 | 46 | 2017 |
Free vibration analysis of dragonfly wings using finite element method M Darvizeh, A Darvizeh, H Rajabi, A Rezaei The International Journal of Multiphysics 3 (1), 101-110, 2009 | 45 | 2009 |
Biomechanical strategies underlying the robust body armour of an aposematic weevil LY Wang, H Rajabi, N Ghoroubi, CP Lin, SN Gorb Frontiers in Physiology 9, 413423, 2018 | 43 | 2018 |
How does a slender tibia resist buckling? Effect of material, structural and geometric characteristics on buckling behaviour of the hindleg tibia in stick insect postembryonic … M Schmitt, TH Büscher, SN Gorb, H Rajabi Journal of Experimental Biology 221 (4), jeb173047, 2018 | 41 | 2018 |
Insect wing damage: causes, consequences and compensatory mechanisms H Rajabi, JH Dirks, SN Gorb Journal of Experimental Biology 223 (9), jeb215194, 2020 | 36 | 2020 |
How do dragonfly wings work? A brief guide to functional roles of wing structural components H Rajabi, SN Gorb International journal of odonatology 23 (1), 23-30, 2020 | 36 | 2020 |
A simple, high-resolution, non-destructive method for determining the spatial gradient of the elastic modulus of insect cuticle S Eshghi, M Jafarpour, A Darvizeh, SN Gorb, H Rajabi Journal of The Royal Society Interface 15 (145), 20180312, 2018 | 36 | 2018 |
Cuticle sclerotization determines the difference between the elastic moduli of locust tibiae C Li, SN Gorb, H Rajabi Acta Biomaterialia 103, 189-195, 2020 | 34 | 2020 |
Endocuticle sclerotisation increases the mechanical stability of cuticle LY Wang, M Jafarpour, CP Lin, E Appel, SN Gorb, H Rajabi Soft Matter 15 (41), 8272-8278, 2019 | 34 | 2019 |
Basal complex and basal venation of Odonata wings: structural diversity and potential role in the wing deformation H Rajabi, N Ghoroubi, M Malaki, A Darvizeh, SN Gorb PloS one 11 (8), e0160610, 2016 | 31 | 2016 |
Experimental investigations of the functional morphology of dragonfly wings H Rajabi, A Darvizeh Chinese Physics B 22 (8), 88702-088702, 2013 | 30 | 2013 |