Over the last decades, there has been great interest in understanding the aerodynamics of flapping flight and development of flapping wing Micro Air Vehicles (FWMAVs). The camber deformation and twisting has been demonstrated quantitatively in a number of insects, but making artificial wings that mimic those features is a challenge. This paper reports the development and characterization of artificial wings that can reproduce camber and twisting deformations. By replacing the elastic material at the wing root vein, the root vein would bend upward and inward generating an angle of attack, camber, and twisting deformations while the wing was flapping due to the aerodynamic forces acting on the wing. The flapping wing apparatus was employed to...
The goal of the current research is to develop a hover capable, fully autonomous, flapping wing micr...
This paper addresses the design of the elastic structure of artificial wings to optimize their dynam...
Flapping wing micro air vehicles (MAVs) take inspiration from natural fliers, such as insects and hu...
Over the last decades, there has been great interest in understanding the aerodynamics of flapping f...
The unmatched performance of insect flight is a motivation for bio-inspired designs of synthetic win...
Flexible deformation of the insect wing has been proven to be beneficial to lift generation and powe...
The development of flapping-wing micro air vehicles (MAVs) demands a systematic exploration of the a...
A flexible flapping wing with a rectangular planform was designed to investigate the influence of fl...
Flying insects are intelligent biological machines capable of exquisite manoeuvres in various enviro...
Flapping flight has gained much attention in the past decade driven by the desire to understand capa...
Despite significant interest for over a decade in developing micro air vehicles (MAVs) that mimic th...
This paper presents a multidisciplinary experimental endeavor in correlating flapping micro air vehi...
This paper explores the design of a flapping mechanism inspired by the insect thorax. A two-degree-o...
Understanding the effect of flexibility on the aerodynamic characteristics of the wing is one of the...
The realization of a wing actuation mechanism for a flapping wing micro air vehicle requires a move ...
The goal of the current research is to develop a hover capable, fully autonomous, flapping wing micr...
This paper addresses the design of the elastic structure of artificial wings to optimize their dynam...
Flapping wing micro air vehicles (MAVs) take inspiration from natural fliers, such as insects and hu...
Over the last decades, there has been great interest in understanding the aerodynamics of flapping f...
The unmatched performance of insect flight is a motivation for bio-inspired designs of synthetic win...
Flexible deformation of the insect wing has been proven to be beneficial to lift generation and powe...
The development of flapping-wing micro air vehicles (MAVs) demands a systematic exploration of the a...
A flexible flapping wing with a rectangular planform was designed to investigate the influence of fl...
Flying insects are intelligent biological machines capable of exquisite manoeuvres in various enviro...
Flapping flight has gained much attention in the past decade driven by the desire to understand capa...
Despite significant interest for over a decade in developing micro air vehicles (MAVs) that mimic th...
This paper presents a multidisciplinary experimental endeavor in correlating flapping micro air vehi...
This paper explores the design of a flapping mechanism inspired by the insect thorax. A two-degree-o...
Understanding the effect of flexibility on the aerodynamic characteristics of the wing is one of the...
The realization of a wing actuation mechanism for a flapping wing micro air vehicle requires a move ...
The goal of the current research is to develop a hover capable, fully autonomous, flapping wing micr...
This paper addresses the design of the elastic structure of artificial wings to optimize their dynam...
Flapping wing micro air vehicles (MAVs) take inspiration from natural fliers, such as insects and hu...