Coordinatore | AALBORG UNIVERSITET
Organization address
address: FREDRIK BAJERS VEJ 5 contact info |
Nazionalità Coordinatore | Denmark [DK] |
Sito del progetto | http://www.nanotough.aau.dk |
Totale costo | 7˙189˙307 € |
EC contributo | 5˙089˙000 € |
Programma | FP7-NMP
Specific Programme "Cooperation": Nanosciences, Nanotechnologies, Materials and new Production Technologies |
Code Call | FP7-NMP-2007-LARGE-1 |
Funding Scheme | CP-IP |
Anno di inizio | 2008 |
Periodo (anno-mese-giorno) | 2008-10-01 - 2011-09-30 |
# | ||||
---|---|---|---|---|
1 |
AALBORG UNIVERSITET
Organization address
address: FREDRIK BAJERS VEJ 5 contact info |
DK (AALBORG) | coordinator | 1˙139˙004.00 |
2 |
DANMARKS TEKNISKE UNIVERSITET
Organization address
address: Anker Engelundsvej 1, Building 101A contact info |
DK (KONGENS LYNGBY) | participant | 844˙796.00 |
3 |
TEKNOLOGISK INSTITUT
Organization address
address: GREGERSENSVEJ 1 contact info |
DK (TAASTRUP) | participant | 707˙119.00 |
4 |
"FPK, SA"
Organization address
address: POL UGALDEGUREN II P 10 II . contact info |
ES (ZAMUDIO) | participant | 564˙120.00 |
5 |
INSTITUTUL NATIONAL DE CERCETARE DEZVOLTARE PENTRU CHIMIE SI PETROCHIMIE - ICECHIM BUCURESTI
Organization address
address: Splaiul Independentei 202 sect 6 contact info |
RO (BUCURESTI) | participant | 454˙483.00 |
6 |
ASSOCIATION POUR LA RECHERCHE ET LE DEVELOPPEMENT DES METHODES ET PROCESSUS INDUSTRIELS - ARMINES
Organization address
address: Boulevard Saint-Michel 60 contact info |
FR (PARIS) | participant | 354˙936.00 |
7 |
CENTRO RICERCHE FIAT SCPA
Organization address
address: Strada Torino 50 contact info |
IT (ORBASSANO) | participant | 348˙799.00 |
8 |
UNIVERSITAET HAMBURG
Organization address
address: EDMUND-SIEMERS-ALLEE 1 contact info |
DE (HAMBURG) | participant | 206˙880.00 |
9 |
AVIOSPACE SRL
Organization address
address: VIA PIER CARLO BOGGIO 59/91 contact info |
IT (TORINO) | participant | 181˙683.00 |
10 |
UNIVERSITA DEGLI STUDI DI GENOVA
Organization address
address: VIA BALBI 5 contact info |
IT (GENOVA) | participant | 165˙080.00 |
11 |
LAVIOSA CHIMICA MINERARIA SPA
Organization address
address: Via Leonardo da Vinci 21 contact info |
IT (LIVORNO) | participant | 122˙100.00 |
Esplora la "nuvola delle parole (Word Cloud) per avere un'idea di massima del progetto.
'Motivation: Nanocomposites are emerging new materials that promise improved properties. Their applicability, however, is presently limited by the cost of manufacture and product reproducibility. Literature shows that on the bench scale, dramatic improvement in polyolefin mechanical properties can be obtained by intercalation and exfoliation of nanoparticles in the matrix. However, when materials produced using conventional equipment are tested, their performance does not meet expectations nor live up to the claims (eg. the impact strength too low). Project Goals: To remove technical barriers to producing high performance polymer nanocomposites on the industrial scale, fundamental insight into the dispersion of particles within the matrix is needed. The goal of this project is to gain this insight through a series of carefully designed studies, using the most advanced experimental techniques, theoretical modeling, carried out by very experienced and skilled partners working together in a targeted and interdisciplinary fashion. The basic objective is to obtain a deeper understanding of the interfacial structure of nanocomposites within a polyolefin matrix. This knowledge will enable realization of the great performance potential of these materials through development of novel multiphase and hybrid nanocomposites. This knowledge will facilitate commercialization of polymer nanocomposite materials with superior properties that will lead to development of new products. To meet this objective, we aim to improve the stiffness of polyolefin nanocomposites while not only maintaining but also improving the toughness of the matrix considerably. The technological objective is to optimize and, through novel interface design, to develop new cost efficient hybrid (nanofiller–fiber) nanocomposites as an alternative to heavily filled polymers and expensive engineering polymers and fulfil industry requirements for high performance materials in high tech applications.'
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