This paper presents an original concept using a two resonant vibration modes combined motion to reproduce insect wings kinematics and generate lift. The key issue is to design the geometry and the elastic characteristics of artificial wings such that a combination of flapping and twisting motions in a quadrature phase shift could be obtained. This qualitatively implies to bring the frequencies of the two resonant modes closer. For this purpose, a polymeric prototype was micromachined with a wingspan of 3 cm, flexible wings and a single actuator. An optimal wings configuration was determined with a modeling and validated through experimental modal analyses to verify the proximity of the two modes frequencies. A dedicated lift force measureme...
In this paper, we illustrate and study the opportunities of resonant ring type structures as wing ac...
We report a comprehensive scaling law and novel lift generation mechanisms relevant to the aerodynam...
Flying insects impress by their versatility and have been a recurrent source of inspiration for engi...
International audienceThis paper presents an original concept using a two resonant vibration modes c...
This paper addresses the design of the elastic structure of artificial wings to optimize their dynam...
paper SMASIS2017-3770, V001T06A005, 10 pagesInternational audienceThis work is based on the original...
This work in the Nano-Air Vehicle field aims to design a small flying object directly inspired by th...
Cette recherche dans le domaine des nano-drones a pour ambition de concevoir un objet volant de tail...
The realization of a wing actuation mechanism for a flapping wing micro air vehicle requires a move ...
Flapping wings provide unmatched manoeuvrability for flying microrobots. Recent advances in modellin...
Over the last decades, there has been great interest in understanding the aerodynamics of flapping f...
A principle for designing and fabricating bio-inspired miniature artificial insect flapping wing usi...
Thesis (Ph.D.)--University of Washington, 2017-03A dynamic model of an insect wing is developed trea...
In this paper, we illustrate and study the opportunities of resonant ring type structures as wing ac...
This paper explores the design of a flapping mechanism inspired by the insect thorax. A two-degree-o...
In this paper, we illustrate and study the opportunities of resonant ring type structures as wing ac...
We report a comprehensive scaling law and novel lift generation mechanisms relevant to the aerodynam...
Flying insects impress by their versatility and have been a recurrent source of inspiration for engi...
International audienceThis paper presents an original concept using a two resonant vibration modes c...
This paper addresses the design of the elastic structure of artificial wings to optimize their dynam...
paper SMASIS2017-3770, V001T06A005, 10 pagesInternational audienceThis work is based on the original...
This work in the Nano-Air Vehicle field aims to design a small flying object directly inspired by th...
Cette recherche dans le domaine des nano-drones a pour ambition de concevoir un objet volant de tail...
The realization of a wing actuation mechanism for a flapping wing micro air vehicle requires a move ...
Flapping wings provide unmatched manoeuvrability for flying microrobots. Recent advances in modellin...
Over the last decades, there has been great interest in understanding the aerodynamics of flapping f...
A principle for designing and fabricating bio-inspired miniature artificial insect flapping wing usi...
Thesis (Ph.D.)--University of Washington, 2017-03A dynamic model of an insect wing is developed trea...
In this paper, we illustrate and study the opportunities of resonant ring type structures as wing ac...
This paper explores the design of a flapping mechanism inspired by the insect thorax. A two-degree-o...
In this paper, we illustrate and study the opportunities of resonant ring type structures as wing ac...
We report a comprehensive scaling law and novel lift generation mechanisms relevant to the aerodynam...
Flying insects impress by their versatility and have been a recurrent source of inspiration for engi...