FiBreMoD (722626)

  https://cordis.europa.eu/project/id/722626

  Horizon 2020 (2014-2020)

  Fibre break models for designing novel composite microstructures and applications

  Innovative Training Networks (MSCA-ITN-2016)

  entrepreneurship  ·  composites

  2016-10-01 Start Date (YY-MM-DD)

  2020-09-30 End Date (YY-MM-DD)

  € 3,370,807 Total Cost


  Description

Limiting the climate change-induced temperature increase to less than 2°C will require strong reductions in greenhouse gas emissions. Lightweight materials and fibre-reinforced composites in particular, are a key enabling technology to achieve this goal. Current composite applications are however strongly overdesigned due to a lack of reliable design tools and predictive models for their mechanical properties. Developing, using and applying these models requires interdisciplinary researchers with a strong background in both modelling and experiments, but such researchers are scarce. The 9 beneficiaries and 3 partner organisations in FiBreMoD aim to train 13 such researchers to become multi-talented and interdisciplinary researchers that will be highly coveted in the field of composites. They will be intensively trained by leading experts with world-class facilities and will be supported by a strong industry participation and an extensive international network. The training programme places a strong emphasis on entrepreneurship and innovation skills not only by dedicated workshops but also by the involvement of the researchers in potential commercialisation. This approach will be key to improving the EU’s innovation capacity. Simultaneously, the researchers will advance state-of-the-art composite failure models to reach the required levels of accuracy and develop advanced and industry-friendly characterisation techniques for measuring the required input data. The goal will be to enable blind predictions, which means that parameter fitting or tuning of the models is no longer required. These new and unprecedented levels of understanding coupled with improved prediction accuracy will be exploited to (1) design novel microstructures for hybrid, hierarchical and discontinuous fibre composites and (2) increase the usefulness of models in practical composite applications. The developed models will be validated and used to design composite cylinders and automotive parts.


  Complicit Organisations

1 Israeli organisation participates in FiBreMoD.

Country Organisation (ID) VAT Number Role Activity Type Total Cost EC Contribution Net EC Contribution
United Kingdom IMPERIAL COLLEGE OF SCIENCE TECHNOLOGY AND MEDICINE (999993468) GB649926678 participant HES € 546,575 € 546,575 € 546,575
Israel WEIZMANN INSTITUTE OF SCIENCE (999979306) IL520016858 participant HES € 260,300 € 260,300 € 260,300
Belgium TOYOTA MOTOR EUROPE NV (996327644) BE0441571714 participant PRC € 250,560 € 250,560 € 250,560
United Kingdom Dia-Stron Limited (922832684) GB479794759 partner PRC € 0 € 0 € 0
France CHOMARAT TEXTILES INDUSTRIES (953947859) FR42501607865 participant PRC € 262,875 € 262,875 € 262,875
Belgium SIEMENS INDUSTRY SOFTWARE NV (999770950) BE0428295877 participant PRC € 250,560 € 250,560 € 250,560
United Kingdom UNIVERSITY OF SOUTHAMPTON (999975329) GB568630414 participant HES € 273,287 € 273,287 € 273,287
Germany BUNDESANSTALT FUER MATERIALFORSCHUNG UND -PRUEFUNG (999507692) DE136630222 participant REC € 249,216 € 249,216 € 249,216
Belgium KATHOLIEKE UNIVERSITEIT LEUVEN (999991334) BE0419052173 coordinator HES € 751,680 € 751,680 € 751,680
France ECOLE NATIONALE SUPERIEURE DES MINES DE PARIS (998584737) nan participant HES € 525,751 € 525,751 € 525,751
Netherlands ACRATS Training Services (923497910) NL854045569B01 partner PRC € 0 € 0 € 0
Netherlands 4RealSim B.V. (923555528) NL851345086B01 partner PRC € 0 € 0 € 0