The nonlinear equations for coupled elastic flapping-twisting motion of a dragonfly in- spired smart flapping wing are used for a flapping wing actuated from the root by a PZT unimorph in the piezofan configuration. Excitation by the piezoelectric harmonic force generates only the flap bending motion, which in turn, induces the elastic twist motion due to interaction between flexural and torsional vibrations modes. An unsteady aerodynamic model is used to obtain the aerodynamic forces. Numerical simulations are performed using a wing whose size is the same as the dragonfly Sympetrum Frequens wing. It is found that the value of average lift reaches to its maximum when the smart flapping wing is excited at a frequency closer to the natural fr...
The material property, kinematics and computational fluid dynamics of the dragonfly Sympetrum flaveo...
Microaerial vehicles are an up-and-coming area of robotics which is fuelled by modern understanding ...
Flying insects are intelligent biological machines capable of exquisite manoeuvres in various enviro...
An energy method is used in order to derive the non-linear equations of motion of a smart flapping w...
An energy method is used in order to derive the non-linear equations of motion of a smart flapping w...
A dragonfly inspired flapping wing is investigated in this paper. The flapping wing is actuated from...
The interaction between large deflections, rotation effects and unsteady aerodynamics makes the dyna...
Piezo-composite membranes have advantages over motorized flapping where frequencies are high and cer...
Micro Air Vehicles (MAVs) are defined as a class of vehicles with their larger dimension not exceedi...
This study focused on reproducing the flapping mechanism observed in insect flight using piezoelect...
The computational fluid dynamic model of a live-sized dragonfly (Sympetrum flaveolum) hindwing is si...
ABSTRACT: This study introduces an insect-mimicking flapping-wing system, where the rotation, corrug...
Purpose – The purpose of the research activity is to identify the best configuration of piezoelectri...
An energy-based variational approach is used for structural dynamic modeling of the IPMC (Ionic Poly...
An energy-based variational approach is used for structural dynamic modeling of the IPMC (Ionic Poly...
The material property, kinematics and computational fluid dynamics of the dragonfly Sympetrum flaveo...
Microaerial vehicles are an up-and-coming area of robotics which is fuelled by modern understanding ...
Flying insects are intelligent biological machines capable of exquisite manoeuvres in various enviro...
An energy method is used in order to derive the non-linear equations of motion of a smart flapping w...
An energy method is used in order to derive the non-linear equations of motion of a smart flapping w...
A dragonfly inspired flapping wing is investigated in this paper. The flapping wing is actuated from...
The interaction between large deflections, rotation effects and unsteady aerodynamics makes the dyna...
Piezo-composite membranes have advantages over motorized flapping where frequencies are high and cer...
Micro Air Vehicles (MAVs) are defined as a class of vehicles with their larger dimension not exceedi...
This study focused on reproducing the flapping mechanism observed in insect flight using piezoelect...
The computational fluid dynamic model of a live-sized dragonfly (Sympetrum flaveolum) hindwing is si...
ABSTRACT: This study introduces an insect-mimicking flapping-wing system, where the rotation, corrug...
Purpose – The purpose of the research activity is to identify the best configuration of piezoelectri...
An energy-based variational approach is used for structural dynamic modeling of the IPMC (Ionic Poly...
An energy-based variational approach is used for structural dynamic modeling of the IPMC (Ionic Poly...
The material property, kinematics and computational fluid dynamics of the dragonfly Sympetrum flaveo...
Microaerial vehicles are an up-and-coming area of robotics which is fuelled by modern understanding ...
Flying insects are intelligent biological machines capable of exquisite manoeuvres in various enviro...