Récupérer l'énergie mécanique ambiante est une alternative prometteuse afin d'assurer l'autonomie énergétique d'appareils nomades. Le développement des générateurs électrostatiques souples reste toutefois à ce jour anecdotique du fait des hautes tensions de polarisation employées, de la nécessité de grandes déformations mécaniques mais aussi de l'utilisation de matériaux peu conventionnels et mal caractérisés. Le but de cette thèse est d'apporter des avancées scientifiques et des solutions aux verrous technologiques précités. Tout d'abord, une caractérisation rigoureuse des propriétés électriques et mécaniques de deux matériaux communément utilisés pour ces applications (acrylate VHB 4910 et silicone Polypower) nous a donné accès aux propri...
Dielectric elastomer transducers are in essence deformable elastic capacitors. Coating an electrical...
The performance of energy harvesting generators based on dielectric elastomers is investigated in th...
4nonenoneBortot, Eliana; Denzer, Ralf Philipp; Andreas Menzel; Gei, MassimilianoBortot, Eliana; Denz...
Scavenging mechanical ambient energy is a promising solution to ensure the autonomy of wearable tran...
International audienceDielectric elastomer generators offer great potential for soft applications in...
International audienceDielectric generators require an external circuit with a high bias voltage sou...
A Dielectric Elastomer Generator (DEG) is an electromechanical transducer, basically a highly deform...
Dielectric elastomers are smart materials that can be used to conceive solid-state electromechanical...
Les élastomères diélectriques sont de plus en plus utilisés pour la réalisation des transducteurs da...
International audienceHarvesting human kinetic energy to produce electricity is an attractive altern...
Electroactive polymers known as dielectric elastomers have shown considerable promise for transducer...
open4noThis paper introduces a fabrication method and the experimental characterization of a soft po...
Dielectric elastomer (DE) actuators exploit electrically induced deformations of insulating rubbery ...
4siA predicting model for soft dielectric elastomer generators (DEGs) must consider a realistic mode...
Soft dielectric elastomers can quickly achieve large deformations when they are subjected to electro...
Dielectric elastomer transducers are in essence deformable elastic capacitors. Coating an electrical...
The performance of energy harvesting generators based on dielectric elastomers is investigated in th...
4nonenoneBortot, Eliana; Denzer, Ralf Philipp; Andreas Menzel; Gei, MassimilianoBortot, Eliana; Denz...
Scavenging mechanical ambient energy is a promising solution to ensure the autonomy of wearable tran...
International audienceDielectric elastomer generators offer great potential for soft applications in...
International audienceDielectric generators require an external circuit with a high bias voltage sou...
A Dielectric Elastomer Generator (DEG) is an electromechanical transducer, basically a highly deform...
Dielectric elastomers are smart materials that can be used to conceive solid-state electromechanical...
Les élastomères diélectriques sont de plus en plus utilisés pour la réalisation des transducteurs da...
International audienceHarvesting human kinetic energy to produce electricity is an attractive altern...
Electroactive polymers known as dielectric elastomers have shown considerable promise for transducer...
open4noThis paper introduces a fabrication method and the experimental characterization of a soft po...
Dielectric elastomer (DE) actuators exploit electrically induced deformations of insulating rubbery ...
4siA predicting model for soft dielectric elastomer generators (DEGs) must consider a realistic mode...
Soft dielectric elastomers can quickly achieve large deformations when they are subjected to electro...
Dielectric elastomer transducers are in essence deformable elastic capacitors. Coating an electrical...
The performance of energy harvesting generators based on dielectric elastomers is investigated in th...
4nonenoneBortot, Eliana; Denzer, Ralf Philipp; Andreas Menzel; Gei, MassimilianoBortot, Eliana; Denz...