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EU-Förderung (5.940.666 €): Intelligente Bulk-MAterials für Smart TRanspOrt Branchen. Hor 01.12.2017 EU-Rahmenprogramm für Forschung und Innovation "Horizont"

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Intelligente Bulk-MAterials für Smart TRanspOrt Branchen.

MASTRO Project aim is to develop intelligent bulk materials for the transport sector based on the novel concepts like self-sensing, self-deicing, self-curing, self-healing and self-protection methodologies to increase consumer safety, component life-span and performance while reducing maintenance and manufacturing costs. The functionality of the developed components will be demonstrated under relevant conditions at prototype level for the aerospace, automotive and transport transport networks. These developments will be supported by theoretical material models to capture the self-responsive functionalities. The outputs of the Project will consist of numerous applications in these sectors. The matrices addressed consist of lightweight polymer composites like glass/carbon fibre reinforced polymers and thermoplastic materials (including melt-spinning for textiles used in the transport sector) together with asphalt and concrete formulations incorporating electrical carbon-based conductive nanomaterials. These self-responsive functionalities are based on two physical phenomena: piezoresistivity and Joule effect. The aim of self-responsiveness properties can be summarized as follows: Self-sensing: to confer to the intelligent components the ability to monitor/store data about its own condition in terms of vibrations, defects, fatigue, creep and strain. Self-deicing: to avoid the ice layer formation or the loss of performance due to cold weather. Self-curing: to increase quality and durability while reducing manufacturing cost of the polymer composites and cement concrete formulations by improving the curing process step. Self-healing: to aid the repair of polymer composites and asphalt concrete formulations by healing those materials without the need of an external and expensive maintenance operation. Self-protection: to minimize the failure occurrence in case of electrostatic charge accumulation or lightning impacts by discharging the voltage through the smart component


Geförderte Unternehmen:

Firmenname Förderungssumme
Acciona Construccion SA 814.430 €
Airholding SA 42.128 €
Alke Srl 386.188 €
Applynano Solutions SL 404.300 €
Arkema France SA 264.966 €
Axia Innovation GmbH 288.438 €
Bsria Ltd. 136.594 €
Centitvc - Centro de Nanotecnologiae Materiais Tecnicos Funcionais Einteligentes 0,00 €
Centre Technique Industriel de la Plasturgie et des Composites 466.240 €
Centro Di Ricerche Europeo Di Tecnologie Design E Materiali 387.500 €
Centro Tecnologico das Industrias Textil e do Vestuario de Portugal-Citeve 373.000 €
Diad Group Srl 556.716 €
Embraer Portugal SA 42.372 €
Pinout Solutions SL 190.782 €
Superior Graphite Deutschland GmbH 84.750 €
The University of Sheffield 539.076 €
Universidad de Alicante 360.313 €
Universita Degli Studi Di Salerno 602.875 €
Universita Del Salento 0,00 €

Quelle: https://cordis.europa.eu/project/id/760940

Diese Bekanntmachung wurde von Englisch nach Deutsch übersetzt. Die Bekanntmachung bezieht sich auf einen vergangenen Zeitpunkt, und spiegelt nicht notwendigerweise den heutigen Stand wider.