Application Of New Materials Including Bio Based Fibres In High Added Value Textile Products - Presentation Transcript
ПОЛЕЗНИ ПРАКТИКИ ЗА УСПЕХ В 7-ма РАМКОВА ПРОГРАМА Владимир Кожухаров , NMP-NCP Химикотехнологичен и Металургичен Университет (ХТМУ) - ЛАМАР Информационен ден : Нано-науки, нанотехнологии, материали и нови производствени технологии гр. Пловдив, 23 Февруари 2007
FP7 Decisions
21 DEC 06 - Work Programmes (5) adopted
22 DEC 06 - First calls (42) issued (11ч.)
http://cordis.europa.eu/en/home.htm
Specific Programmes Cooperation – Collaborative research People – Human Potential JRC (nuclear) Ideas – Frontier Research Capacities – Research Capacity JRC (non-nuclear) Euratom + FP7 (2007–2013) 1
Some statistics FP 6 budget (in billion €, total ≈ 27 )
FP7 budget (in billion €, total 50.521) Collaborative research (Collaborative projects; Networks of Excellence; Coordination/support actions)
FP7 – SP Cooperation 10 Themes (€ million) * Not including non-nuclear activities of the Joint Research Centre: €1 751 million 1 32 413 Total 1 400 10. Security 1 430 9. Space 623 8. Socioeconomic research 4 160 7. Transport 1 890 6. Environment 2 350 5. Energy 3 475 4. Nanotechnologies, materials and production 9 050 3. Information and communication technologies 1 935 2. Food, agriculture and fisheries, and biotechnology 6 100 1. Health
Funding Schemes
Collaborative projects
consortia with participants from different countries
new knowledge, technology, products or common resources for research
size, scope and internal organisation of projects can vary
Networks of Excellence
3. Coordination and support actions
Support to frontier research
5. Training and career development of researchers
6. Research for the benefit of specific groups (in particular SMEs)
Maximum Funding Rates
Research and technological activities:
up to 50% of eligible costs, except for:
Public bodies: up to 75%
Secondary and higher education establishments: up to 75%
Research organisations (non-profit): up to 75%
SMEs: up to 75%
Demonstration activities: up to 50%
Other activities: up to 100%, e.g. Management
Coordination and support actions: up to 100%
“ Contract ” becomes “Grant Agreement”
“ Contractor ” becomes “Beneficiary”
“ Instruments ” become “Funding Schemes”
“ Audit certificate ” becomes “Certificate on Financial Statement”
“ Pre-existing know-how ” becomes “ Background ”
“ K nowledge ” becomes “ Foreground ”
New Terminology Simplification of procedures
Instead: establishment of a participant guarantee fund to cover risks
No financial collective responsibility, unlike FP6 Similarities of GA with FP6 contract
Core part: GA parameters,
Annex I: DoW, Annex II: Gen . Conditions,
Annex III: Specific provisions for funding schemes
Annex IV, V & VI: Form A,B & C (electronically)
Annex VII: Form D terms of reference for the certificate of costs and Form E certificate on the methodology ( NEW ) .
Consortium Agreement mandatory.
Overall objective : To improve the competitiveness of EU industry (including SMEs) and ensure its transformation.
A Useful Practices 4Y Project 1 2 3 4 B A- Exact estimation for NMP- theme allocation Local resources & infrastructure for research Coordinator, consortium building and funding Proposal preparation and sending procedure Evaluation procedure C
main features
NMP addresses all industrial sectors
Stimulates strong participation of SMEs
Promotes a multi- disciplinary approach
Favours cooperation across the supply chain
Two stage proposal submission (except CSA)
Budget allocation by call (not by Activity/Area)
Yearly updated workprogramme
Theme 4: NMP- Exact estimation for NMP- theme allocation
Four activities:
Nanosciences and nanotechnologies
Materials
New production
Integration of technologies for industrial applications
Theme 4: NMP Exact estimation for NMP- theme allocation
WP - NMP
Activity 4.1: Nano S&T
4.1.1: Nanosciences and converging sciences
4.1.2: Nanotechnologies and converging technologies
4.1.3: Health, Safety and Environmental Impacts
Activity 4.2: Materials 4.2.1: Mastering nano-scale complexity in materials 4.2.2: Knowledge-based smart materials with tailored properties 4.2.3: Novel biomaterials and bioinspired materials 4.2.4: Advances in chemical technologies and materials processing 4.2.5: Using engineering to develop high performance materials
Activity 4.3: New Production
4.3.1: Development and validation of new industrial models and strategies
4.3.2: Adaptive production systems
4.3.3: Networked production
4.3.4: Rapid transfer and integration of new technologies into the design and operation of manufacturing processes
4.3.5: Exploitation of the convergence of technologies
WP - NMP Activity 4.4: Integration of technologies for industrial applications 4.4.1: Advanced wood-based composites and their production - LSIP 4.4.2: Application of new materials including bio-based fibres in high-added value textile products – SME-TP 4.4.3. Multifunctional materials for the future vehicles – LSIP 4.4.4: Development of nanotechnology-based systems for in-vivo diagnosis and therapy – LSIP
The tiny revolution BOTTOM-UP SYNTHESIS TOP - DOWN PROCESSING КЪДЕ ДА СЕ УЧАСТВА ? Photonic Holey Fiber Genome
Networking 2
BG local FP7 network (viko@uctm.edu)
EUROPEAN NCP contacts exists MES www.nsfb.net EC/FP7 NCP NCP NCP NCP NCP HES HES HES HES HES IND IND IND IND IND UNI SME ROR IND OTH OTH OTH ROR COOREERS NMP-NCP coordination action
Local resources and infrastructure for research Templates: > Project - Partner search form > WEB site, > CV > Org. Description, R&D activities, Expertise, > Lab,s Facilities ( reflecting for WP preparation)
NANO MATERIALS
PHYSICAL
CHEMICAL
S TRUCTURE IT - SOFC P ERFORMANCE 1 2 3 5 V ALIDATION EXPERT SYSTEMS 4 6 M ODELING S YNTHESIS P ROPERTIES
1 - SYNTHESIS ( METHODS ) Shock wave High pressure Solvothermal C V D Hydrothermal Fusion LASER Electron PLASMA Sputtering V. Evaporation Ion Solid State Reactions Gasflame Sol-Gel + Spray 1 atm. P (atm) 0 t , °C 1 2 3 x 1000 ENVIRONMENTAL ATTRACTIVE MIX Deposition of thin-film electrolyte and nano- structured electrodes by combustion CVD, sol-gel, slurry coating & templateing synthesis methods are actual at present. SOFC G (Gas) L (Liquid) S (Solid)
- E. CONDUCTIVITY, TRANSPORT BEHAVIOUR, DIELECTRIC etc.
- ELASTICITY, ADHESION,CRACK PROPAGATION etc.
- SURFACE TENSION & CAPILLARITY, TPB etc.
THECHNIQUES FOR PHYSICOCHEMICAL CHARACTERIZATION STANDARDS PHYSICAL & CHEMICAL
Coordinator, consortium building and funding Coordinator Consortium building Funding scheme University, SME, Research Organization , Other unit Small, Middle , Large Small or medium scale focussed projects < € 4 million Large scale integrating projects > € 4 million
IIM SHL/IAI ALUBIN ISRAEL MULTIPROTECT 30 partners 13 countries INM EURICE IPA EADS LLI FEM ELAS BUH GENTACASTI CRF UDINE CSM PLALAM CROMOSPHER NCSR HAI ISQ AVEIRO INASMET ICV TNO UNIMAN SEI TUS ICF UCTM
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