H2020Doctoral network2015–2018

MICACT · MICroACTuators

Horizon 2020 — Marie Skłodowska-Curie Actions

Duration
2015-01-01 → 2018-12-31
EU contribution
€3,300,161
Participants
21
Scheme
MSCA-ITN-ETN

Lines connect the coordinator with its partners.

Results in brief

MICroACTuators

The EC MSCA-ETN project Microactuators (MICACT) project http://www.micact.eu is training a new generation of multidisciplinary engineers and material scientists focus on miniaturized low cost soft devices for applications like medicine, biomedicine, environmental monitoring, IoT devices and other technologies which already have impact and will even more influence our everyday life in near future. Electroactive polymers (EAP) are materials that can change shape or stiffness in response to electrical stimuli, and can sense mechanical and/or environmental stimuli. These polymeric materials are mechanically flexible (can be stretched to twice their initial size). Their properties include low density, a high grade of processability, scalability, microfabrication readiness and, in most cases, low cost. A new broad range of applications opens with micro EAPs for which large strains and forces are necessary. The network will provide ESRs multidisciplinary training in materials science, microfabrication technology, control theory, applications and industry experience. It also provides the soft skills and network of contacts in academia and industry to launch their R&D careers. The main objectives of the research programme was: To provide ESRs with a deep understanding of miniaturized polymer actuators, modelling methods, fabrication techniques, characterization tools, and novel device architectures; To improve polymer actuator and sensor architectures to improve the performance and lifetime of miniaturized transducers, including self-sensing and self-commutation. To develop novel microactuators and architectures for miniaturized soft robotics, including energy harvesters. To investigate materials that allow reliable low voltage operation and have a long lifetime, for further successful use in industrial applications. To develop lumped-parameter electromechanical, physics- and electrochemistry-based models to allow for accelerated design and optimization for a range of applications. To achieve the overall objective and the sub-objectives, this research programme has been divided into 4 Work Packages (WP’s): dielectric materials, ionic materials, microfabrication technologies and prototyping of devices. MICACT should stress out the extensive training about soft skills for our fellows. The network provided them training in commercialization, scientific writing, presentation skills, startup building, business accelerators and gender issues. On a technical level, the ESRs have demonstrated a great deal of innovation, with results that push forward the state of the art in microfabrication technology, material science and control theory of soft transducers, and have been widely recognized in our scientific community for example in journals like RSC Advances, Advanced Functional Materials, Journal of Visualized Experiments, etc. All the fellows have attended four training schools: one on dielectric EAPs, and one on ionic EAPs, one for microfabrication and one for applications with talks both by leading experts in the field, as well as sessions on transverse and soft skills. As an outcome of the training schools fellows have state-of-the art knowhow about several EAP material properties, knowhow about fabrication and characterization methods, as well as basic knowledge of key modelling strategies for control. The network is training the 15 early stage researchers in areas of miniaturized polymeric materials and devices. The 21 institutions host and actively participate in the fellow's training. . We have organized several outreach events for wider public mainly targeted to young people to encourage them to choose their career path in high-tech and science. Our fellows have presented their work to the scientific community in more than 30 presentations at conferences and workshops. MICACT Coordinator: prof Alvo Aabloo, IMS lab, Institute of Technology, University of Tartu, Estonia Project Webpage: http://www.micact.eu Project video: http://www.youtube.com/watch?v=PQKM5Igdqxo&t=107s

Data: CORDIS, © European Union

Project objective

Electroactive polymers (EAP) consist of materials capable of changing dimensions and/or shape in response to electrical stimuli. Most EAPs are also capable of generating electrical energy in response to applied mechanical forces. These polymeric materials exhibit properties well beyond what conventional metal or plastic-based actuators can offer, including very high mechanical flexibility (can be stretched to twice their initial size), low density, a high grade of processability, scalability, microfabrication readiness and, in most cases, low cost. Micro-EAPs enable a new broad range of applications for which large strains and forces are desirable, and for which built-in intelligence is necessary.The main objective of the project will be the improvement of the career perspectives (in academia and in industry) of young researchers by training them at the forefront of research in the field of smart soft systems made of EAP microactuators for advanced miniaturized devices. The overall objective for the scientific programme is research and development of EAP materials and their integration for industrial applications. Special attention will be devoted to the development of microactuators. The field of smart materials is growing extremely fast. Materials whose stiffness and shape can be controlled, and that are capable of sensing their shape allow new classes of compliant complex systems. Through the MICACT programme, we hope to ensure that European researchers keep their leading role in this blossoming field, and to help them transition to industrial positions.

Original text from CORDIS.

Participants

  • TARTU ULIKOOL · TartuCoordinatorEstonia
  • ARQUIMEA AEROSPACE DEFENCE AND SECURITY SL · TORREJON DE ARDOZSpain
  • ARTIS a business of AVON polymer products Ltd · MelkshamUnited Kingdom
  • BRAIN VISION SYSTEMS SAS · PARIS 13France
  • CENTRE NATIONAL DE LA RECHERCHE SCIENTIFIQUE CNRS · ParisFrance
  • CY CERGY PARIS UNIVERSITE · Cergy-PontoiseFrance
  • Consiglio Nazionale di Ricerca · RomeItaly
  • ECOLE POLYTECHNIQUE FEDERALE DE LAUSANNE · LausanneSwitzerland
  • ESTROTECH OU · TARTUEstonia
  • IVTECH SRL · MassarosaItaly
  • LINKOPINGS UNIVERSITET · LinkopingSweden
  • QUEEN MARY UNIVERSITY OF LONDON · LONDONUnited Kingdom
  • Single Buoy Mooring Inc · MonacoMonaco
  • Suzhou Institute of Nano-Tech and Nano-Bionics,CAS · SuzhouChina
  • TECHNISCHE UNIVERSITAT DARMSTADT · DarmstadtGermany
  • TECHNISCHE UNIVERSITEIT DELFT · DelftNetherlands
  • THE UNIVERSITY OF AUCKLAND · AucklandNew Zealand
  • UNIVERSIDAD POLITECNICA DE CARTAGENA · CartagenaSpain
  • UNIVERSITE PARIS CITE · ParisFrance
  • UNIVERSITY OF WOLLONGONG · WOLLONGONG NSWAustralia
  • University British Columbia · VancouverCanada

Links

Data: CORDIS, © European Union