Explore the words cloud of the DYNACOMP project. It provides you a very rough idea of what is the project "DYNACOMP" about.
The following table provides information about the project.
FUNDACION IMDEA MATERIALES
|Coordinator Country||Spain [ES]|
|Total cost||495˙745 €|
|EC max contribution||495˙745 € (100%)|
1. H2020-EU.1.3.1. (Fostering new skills by means of excellent initial training of researchers)
|Duration (year-month-day)||from 2016-09-01 to 2020-08-31|
Take a look of project's partnership.
|1||FUNDACION IMDEA MATERIALES||ES (GETAFE)||coordinator||495˙745.00|
|2||HEXCEL COMPOSITES LTD||UK (CAMBRIDGE)||participant||0.00|
|3||FUNDACION PARA EL CONOCIMIENTO MADRIMASD||ES (MADRID)||partner||0.00|
|4||MICRO MATERIALS LTD||UK (WREXHAM)||partner||0.00|
|5||UNIVERSIDAD POLITECNICA DE MADRID||ES (MADRID)||partner||0.00|
The main objective of the DYNACOM (Dynamic behaviour of composite materials for next generation aeroengines) training network is to set up a European Industrial Doctorate (EID) programme on the design of the next generation of structural composite materials for high strain rate applications. This will be achieved by the development of a consistent, physically based multiscale simulation strategy informed by the dynamic properties of the constituents (fibre, matrix and fiber/matrix interface) measured with a novel micromechanical testing methodology. Two of the major milestones of this EID are: (1) to offer early stage researchers (ESRs) a multidisciplinary and intersectorial training with the objective of establishing a new design paradigm in structural design of composite materials and (2) to provide the European industry with new tools towards a knowledge-base incorporation of composite materials into new components, without the need of inefficient and expensive traditional trial and error approaches. In this sense, the technological focus is put into the introduction of new composite components into the next generation of aeronautical engines, but the implications are numerous in other sectors where composite materials have been identified as a key enabling technology, such as in transport, energy generation and biomedical applications. To accomplish this, the programme brings together one research institution, two industrial partners, one academic institution and a non-profit organization. The joint academic and industrial training program offered by this EID will ensure that the innovative aspects of the research work find a quick industrial integration and will provide the early stage researchers with a truly interdisciplinary and intersectoral training, enhancing their employability and career perspectives.
|Publication of papers in scientific journals by the ESRs||Other||2019-03-25 10:35:44|
|Summer School on Micromechanics of Composite Materials||Other||2019-05-31 11:09:04|
|Website completion||Websites, patent fillings, videos etc.||2019-05-31 11:09:00|
|Data Management Plan (DMP) and updates||Open Research Data Pilot||2019-05-31 11:09:05|
|Recruitment completion of the ESRs||Documents, reports||2019-05-31 11:09:03|
|Participation of ESRs on scientific conferences||Other||2019-03-19 16:35:39|
|Public Engagement Plan (PEP) and updates||Documents, reports||2019-03-25 10:02:24|
Take a look to the deliverables list in detail: detailed list of DYNACOMP deliverables.
|year||authors and title||journal||last update|
Measuring strain rate sensitivity of aerospace epoxies by nanoimpact testing
published pages: , ISSN: , DOI:
|Poster at the Advanced Nano-mechanical Techniques for Academic and Industrial Research Conference||2018-07-18|
M.A. Riezzo, M. Simmons, C. GonzÃ¡lez, F. Sket
Dynamic characterization of interlaminar toughness in carbon fibre epoxy composite laminates
published pages: , ISSN: , DOI:
|Oral presentation at the 18th European conference en composite material (ECCM18)||2018-07-18|
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The information about "DYNACOMP" are provided by the European Opendata Portal: CORDIS opendata.
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