MORPHOSIS

Morphing Locally and Globally Structures with Multiscale Intelligence by Mimicking Nature

 Coordinatore UNIVERSITA DEGLI STUDI ROMA TRE 

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 Nazionalità Coordinatore Italy [IT]
 Totale costo 1˙664˙600 €
 EC contributo 1˙664˙600 €
 Programma FP7-IDEAS-ERC
Specific programme: "Ideas" implementing the Seventh Framework Programme of the European Community for research, technological development and demonstration activities (2007 to 2013)
 Code Call ERC-2012-StG_20111012
 Funding Scheme ERC-SG
 Anno di inizio 2013
 Periodo (anno-mese-giorno) 2013-01-01   -   2017-12-31

 Partecipanti

# participant  country  role  EC contrib. [€] 
1    UNIVERSITA DEGLI STUDI ROMA TRE

 Organization address address: VIA OSTIENSE 161
city: ROMA
postcode: 154

contact info
Titolo: Dr.
Nome: Alessandro
Cognome: Albino Frezza
Email: send email
Telefono: 390657000000
Fax: 390657000000

IT (ROMA) hostInstitution 1˙664˙600.00
2    UNIVERSITA DEGLI STUDI ROMA TRE

 Organization address address: VIA OSTIENSE 161
city: ROMA
postcode: 154

contact info
Titolo: Prof.
Nome: Giulia
Cognome: Lanzara
Email: send email
Telefono: 393479000000

IT (ROMA) hostInstitution 1˙664˙600.00

Mappa


 Word cloud

Esplora la "nuvola delle parole (Word Cloud) per avere un'idea di massima del progetto.

structural    local    active    sensing    composite    then    fiber    memory    macro    network    flexible    wings    morphing    sensor    global    stable    carbon    shape    materials    distributed   

 Obiettivo del progetto (Objective)

'The objective of the proposed research is to engineer novel multifunctional morphing materials drawing inspiration from biological systems that are known to possess distributed sensing capabilities which in turn guide their local and global morphing. This will be achieved through the development of novel multi-scale technologies (nano- to macro) and materials that, once integrated, will allow distributed local/global sensing and morphing capabilities that can be exploited for structural as well as for eminently flexible applications. The distributed local/global morphing and sensing will be delivered by fabricating at the microscale a non-invasive, light-weight, flexible and highly expandable active network with enhanced actuation capabilities and a neurological sensor network. The networks are then expanded to the macro-scale prior being integrated in a flexible material or in an innovative multi-stable shape memory carbon-fiber composite. The sensor network has to monitor environmental and loading conditions. These data are then used to control the deformation of the active network which can deliver local (roughness changes as in dolphins skin for instance for drag reduction) or global morphing (e.g. for deformable textiles as in insect wings) in flexible materials. The multi-stable carbon-fiber composite can be used in conjunction with these two functions so as to achieve advanced morphing in structural applications (e.g., birds wings vs. aircrafts wings). The composite, with a shape memory resin as hosting matrix, due to its rigidity and sensitivity to temperature variations, can snap from one configuration to the other. The speed of the purposefully-introduced snapping-through process will be tuned with the help of the integrated active network. This research has the potential to pave the way toward the development of new multidisciplinary research fields and could revolutionarize the design and production of future structures in a variety of fields.'

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