Objetivo
The rapidly growing use of high-performance composites in high-end sectors such as aerospace, show that these materials are already commercially viable as long as production volumes are limited and applications not primarily cost-driven. In order to achieve a step-change in the application of high-performance composites in larger-volume applications, HIVOCOMP focuses on achieving radical advances in two materials systems that show unique promise for cost effective, higher-volume production of high performance carbon fibre reinforced parts. These are: 1) advanced polyurethane (PU) thermoset matrix materials offering increased mechanical performance and reduced cycle times compared to epoxy, and 2) thermoplastic PP- and PA6-based self-reinforced polymer composites incorporating continuous carbon fibre reinforcements with lower process times and far higher toughness than current thermoplastic and thermoset solutions. The project will analyse and develop these matrix materials, their combination with advanced textile preforms, and optimise material properties for advanced processing technologies, joining technologies (adhesives / welding) and the incorporation and self-diagnosis (sensing) materials. The focus on breakthrough material innovations are complemented by enabling work covering material testing, chemical and micro-mechanical modelling and simulation tool development, as well as LCA, cost and recycling analysis, and prototyping of typical applications, assuring that the proposed material innovations can be successfully translated into high-impact industrial applications. The project drives the material innovations with the road vehicle sector in mind, but has clearly identified spin-off applications in other sectors. The project foresees a step-wise implementation in future products introduced into larger-volume transport applications starting with validated demonstration parts in 2013, and so ensuring a large-scale societal impact of the innovations achieved.
Ámbito científico
- engineering and technologyenvironmental engineeringwaste managementwaste treatment processesrecycling
- engineering and technologymaterials engineeringcomposites
- engineering and technologymaterials engineeringtextiles
- social sciencessocial geographytransport
- natural sciencescomputer and information sciencessoftwaresoftware applicationssimulation software
Convocatoria de propuestas
FP7-NMP-2009-LARGE-3
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Régimen de financiación
CP-IP - Large-scale integrating projectCoordinador
3000 Leuven
Bélgica
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Participantes (15)
38440 Wolfsburg
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70372 Stuttgart
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06123 Perugia
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10043 Orbassano
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3078 Everberg
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80333 Muenchen
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92220 BAGNEUX
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17003 Girona
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1015 Lausanne
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LS2 9JT Leeds
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9700 Oudenaarde
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4910 RIED IM INNKREIS
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80686 Munchen
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48599 GRONAU
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08013 Barcelona
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