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A. International
1. OPENAIR FP7 "Optimization for low Environmental Noise impact AIRcraft" coordinated by
Snecma, France
- CAD modelling of internal ribs and actuator plate for the Composite Stator Blade;
- Manufacturing of Composite Stator Baldes using autoclave technology.
2. ManuCFBlade “Light weight carbon fiber compressor impeller/blade manufacturing study"
- CAD modelling of the impeller/blade mould;
- Laminate manufacture for test campaign;
- Impeller/blade manufacturing using CFRP and autoclave technology.
B. National:
1. National Research Program STAR/ROSA “ADvenced Composite Structure for Spacecraft
Applications", lead by INCDT COMOTI
- CAD modelling of the satellite box. Mould part modelling and assembly. Fabrication of such
parts;
- CAD modelling of vibration test rig for the satellite box;
- Manufacturing of satellite box using CFRP/Ta foils and autoclave technology;
- Assistance at Vibration tests (acceptance and qualification, both sinusoidal and random).
2. National Research Program STAR/ROSA "Advanced Composite metallic coated systems for
space packaging applications", lead by INCDT COMOTI
- CAD modelling of a 2Unit CubeSAT. Mould part modelling and assembly;
- CAD modelling of vibration test rig for the CubeSAT;
- Manufacturing of 2Unit CubeSATs using CFRP/Ta foils and autoclave technology;
- Assistance at Vibration tests (acceptance and qualification, both sinusoidal and random).
3. NUCLEU Programs;
3.1. Studies regarding development of self-Healing composite materials (FRP).
- Manufacturing of microcapsules containing healing agent;
- Design and development of SH fiber reinforced composites.
3.2. Studies regarding small and medium power wind turbines
- CAD modelling of wind turbine blades;
- CAD modelling of wind blade mould;
- Manufacturing of CFRP wind blades using autoclave.
3.3. Development of new composite structures throughout recycling of used FRC materials
- Concept and Design of new FRC structures;
- Mechanical and Chemical recycling method for used FRC;
- Manufacturing and Testing of new recycled FRC.
3.4. Research on the development of composite materials for blade machines
- Manufacturing of CFRP laminates using autoclave;
- Mechanical performances analysis of new FRC after extreme condition exposure.

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New Microsoft Word Document

  • 1. A. International 1. OPENAIR FP7 "Optimization for low Environmental Noise impact AIRcraft" coordinated by Snecma, France - CAD modelling of internal ribs and actuator plate for the Composite Stator Blade; - Manufacturing of Composite Stator Baldes using autoclave technology. 2. ManuCFBlade “Light weight carbon fiber compressor impeller/blade manufacturing study" - CAD modelling of the impeller/blade mould; - Laminate manufacture for test campaign; - Impeller/blade manufacturing using CFRP and autoclave technology. B. National: 1. National Research Program STAR/ROSA “ADvenced Composite Structure for Spacecraft Applications", lead by INCDT COMOTI - CAD modelling of the satellite box. Mould part modelling and assembly. Fabrication of such parts; - CAD modelling of vibration test rig for the satellite box; - Manufacturing of satellite box using CFRP/Ta foils and autoclave technology; - Assistance at Vibration tests (acceptance and qualification, both sinusoidal and random). 2. National Research Program STAR/ROSA "Advanced Composite metallic coated systems for space packaging applications", lead by INCDT COMOTI - CAD modelling of a 2Unit CubeSAT. Mould part modelling and assembly; - CAD modelling of vibration test rig for the CubeSAT; - Manufacturing of 2Unit CubeSATs using CFRP/Ta foils and autoclave technology; - Assistance at Vibration tests (acceptance and qualification, both sinusoidal and random). 3. NUCLEU Programs; 3.1. Studies regarding development of self-Healing composite materials (FRP). - Manufacturing of microcapsules containing healing agent; - Design and development of SH fiber reinforced composites. 3.2. Studies regarding small and medium power wind turbines - CAD modelling of wind turbine blades; - CAD modelling of wind blade mould; - Manufacturing of CFRP wind blades using autoclave. 3.3. Development of new composite structures throughout recycling of used FRC materials - Concept and Design of new FRC structures; - Mechanical and Chemical recycling method for used FRC; - Manufacturing and Testing of new recycled FRC. 3.4. Research on the development of composite materials for blade machines - Manufacturing of CFRP laminates using autoclave; - Mechanical performances analysis of new FRC after extreme condition exposure.