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  • H2020-EU.3.4.5.5. ITD Engines

H2020-EU.3.4.5.5. ITD Engines

  • H2020-CS2-CFP01-2014-01
    • JTI-CS2-2014-CFP01-ENG-01-01 Engine Mounting System (EMS) for Ground Test Demo
    • JTI-CS2-2014-CFP01-ENG-02-01 Development of an all-oxide Ceramic Matrix Composite (CMC) Engine Part
    • JTI-CS2-2014-CFP01-ENG-03-01 Characterisation of Thermo-mechanical Fatigue Behaviour
    • JTI-CS2-2014-CFP01-ENG-03-02 Advanced analytical tool for the understanding and the prediction of core noise for large civil aero engine with low emission core
    • JTI-CS2-2014-CFP01-ENG-03-03 VHBR Engine - Advanced bearing technology
    • JTI-CS2-2014-CFP01-ENG-03-04 Crack growth threshold analysis in TiAl alloys
    • JTI-CS2-2014-CFP01-ENG-04-01 Power Density improvement demonstrated on a certified engine
    • JTI-CS2-2014-CFP01-ENG-04-02 High Performance Turbocharger
    • JTI-CS2-2014-CFP01-ENG-04-03 Alternative Architecture Engine research
    • JTI-CS2-2014-CFP01-ENG-04-04 Engine Installation Optimization
  • H2020-CS2-CFP02-2015-01
    • JTI-CS2-2015-CFP02-ENG-01-02 Conventional and Smart Bearings for Ground Test Demo
    • JTI-CS2-2015-CFP02-ENG-01-03 More electric, advanced hydromechanics propeller control components
    • JTI-CS2-2015-CFP02-ENG-01-04 Engine Mounting System (EMS) for Ground Test Turboprop Engine Demonstrator
    • JTI-CS2-2015-CFP02-ENG-02-02 Integration of Laser Beam Melting Simulation in the tool landscape for process preparation of Additive Manufacturing (AM) for Aero Engine applications
    • JTI-CS2-2015-CFP02-ENG-02-03 Integration of a property simulation tool for integrated virtual design & manufacturing of forged discs/rotors for aero engine applications
    • JTI-CS2-2015-CFP02-ENG-03-01 Industry focused eco-design
    • JTI-CS2-2015-CFP02-ENG-03-02 Jet Noise Reduction Using Predictive Methods
    • JTI-CS2-2015-CFP02-ENG-03-03 Catalytic control of fuel properties for large VHBR engines
    • JTI-CS2-2015-CFP02-ENG-04-05 Powerplant Shaft Dynamic and associated damping system
  • H2020-CS2-CFP03-2016-01
    • JTI-CS2-2016-CFP03-ENG-01-06 Very high loaded planet bearings enabling technologies
    • JTI-CS2-2016-CFP03-ENG-01-07 Advanced mechatronics devices for electrical management system of Turboprop
    • JTI-CS2-2016-CFP03-ENG-01-08 Advanced Bearings for Turboprop engine
    • JTI-CS2-2016-CFP03-ENG-01-09 Integrated air-oil cooling system
    • JTI-CS2-2016-CFP03-ENG-03-09 Orbiting Journal Bearing Rig
    • JTI-CS2-2016-CFP03-ENG-03-10 Innovations in Titanium investment casting of lightweight structural components for aero engines
    • JTI-CS2-2016-CFP03-ENG-03-11 Aerodynamic rigs for VHBR IP Turbine
    • JTI-CS2-2016-CFP03-ENG-03-12 Development of intelligent oil system enablers for large VHBR engine oil lubrication and heat management systems
  • H2020-CS2-CFP04-2016-02
    • JTI-CS2-2016-CFP04-ENG-01-12 Development of the investment casting process and weldability for high temperature capable superalloys
    • JTI-CS2-2016-CFP04-ENG-01-13 High load gear and bearings materials
    • JTI-CS2-2016-CFP04-ENG-01-14 Experimental & Numerical analysis dedicated to FOD Management for Turboprop Air intake
    • JTI-CS2-2016-CFP04-ENG-02-05 Substitution of Chromium(VI)-based substances for corrosion protection of Aluminum- and Magnesium alloys
    • JTI-CS2-2016-CFP04-ENG-03-14 Fuel injector coking
    • JTI-CS2-2016-CFP04-ENG-04-06 Engine Control System
  • H2020-CS2-CFP06-2017-01
    • JTI-CS2-2017-CFP06-ENG-01-15 Bearing chamber in hot environment
    • JTI-CS2-2017-CFP06-ENG-01-17 Advanced turbine system performance improvement through dual-spool rig tests
    • JTI-CS2-2017-CFP06-ENG-01-18 Development of innovative methods and tooling for machining of slender shafts
    • JTI-CS2-2017-CFP06-ENG-01-21 Aerothermal characterization in the engine compartment
    • JTI-CS2-2017-CFP06-ENG-01-22 Advanced Instrumented Engine cradle of the Turboprop demonstrator
    • JTI-CS2-2017-CFP06-ENG-03-15 IP Turbine Rear Stages Aero/Noise Rigs
    • JTI-CS2-2017-CFP06-ENG-03-16 Development of non-intrusive engine emissions instrumentation capability
    • JTI-CS2-2017-CFP06-ENG-03-17 VHBR Engine – Journal Bearing Technology
    • JTI-CS2-2017-CFP06-ENG-03-18 Development of capability to understand & predict sub-idle & idle behaviour of geared VHBR engines
    • JTI-CS2-2017-CFP06-ENG-03-19 Intermediate Compressor Case Duct Aerodynamics
    • JTI-CS2-2017-CFP06-ENG-04-07 Advanced investigation of ultra compact RQL reverse flow combustor
  • H2020-CS2-CFP07-2017-02
    • JTI-CS2-2017-CfP07-ENG-01-23 Improvement of high speed low pressure turbine performance through reduction of secondary effects
    • JTI-CS2-2017-CfP07-ENG-01-24 Crowned spline surface treatment and modelling
    • JTI-CS2-2017-CfP07-ENG-01-25 Gearbox bearing design & testing
    • JTI-CS2-2017-CfP07-ENG-01-26 Innovative acoustic fan frame liners technologies for UHBR
    • JTI-CS2-2017-CfP07-ENG-01-27 Composite process modelling and net-shape, complex geometry RTM tool design
    • JTI-CS2-2017-CfP07-ENG-01-28 Innovative HPC Flow Treatment Technologies: Design & Experimental Validation Using Advanced Measurement Techniques
    • JTI-CS2-2017-CfP07-ENG-01-29 Characterization of the resistance of TiAl turbine blades to impact
    • JTI-CS2-2017-CfP07-ENG-01-30 Numerical and experimental study of high speed radial flow compressors
    • JTI-CS2-2017-CfP07-ENG-01-31 Unsteady pressure sensor for high pressure and hot environment
    • JTI-CS2-2017-CfP07-ENG-02-06 Experimental investigation of aerodynamic and heat transfer properties for a next generation turbine frame and nozzle
    • JTI-CS2-2017-CfP07-ENG-02-07 Aircraft design and noise assessment for a regional application
    • JTI-CS2-2017-CfP07-ENG-02-08 Optimization of TiAl CALPHAD databases of respective material systems
    • JTI-CS2-2017-CfP07-ENG-03-20 Emissions prediction for very large bypass ratio turbofans
    • JTI-CS2-2017-CfP07-ENG-03-21 Novel Bearings
    • JTI-CS2-2017-CfP07-ENG-03-22 Development and validation of a Powder HIP route for the manufacture of the UltraFan® Demonstrator IP Turbine casing from high temperature material allowing product enhancements at significantly lower costs and environmental footprint
  • H2020-CS2-CFP08-2018-01
    • JTI-CS2-2018-CfP08-ENG-01-32 Optimized UHPE flow path cooling design and testing using advanced manufacturing techniques
    • JTI-CS2-2018-CfP08-ENG-01-33 Prediction of High Frequency Vibrations in Aircraft Engines
    • JTI-CS2-2018-CfP08-ENG-01-34 Airflow characterization through rotating labyrinth seal
    • JTI-CS2-2018-CfP08-ENG-01-35 Oil flow 4 channels regulation valves
    • JTI-CS2-2018-CfP08-ENG-01-36 Optimizing impingement cooling
    • JTI-CS2-2018-CfP08-ENG-01-37 Aerodynamic upgrade of Surface Air Cooled Oil Cooler (SACOC)
    • JTI-CS2-2018-CfP08-ENG-02-09 Development and verification of microstructure, residual stress and deformation simulation capability for additive free-form deposition using multiple superalloys
    • JTI-CS2-2018-CfP08-ENG-03-23 Probabilistic simulation of defect probability in LWD – Wire fusion processes
    • JTI-CS2-2018-CfP08-ENG-03-24 VHCF material model for case hardened gear steels for application in an epicyclic power gearbox
  • H2020-CS2-CFP09-2018-02
    • JTI-CS2-2018-CfP09-ENG-01-39 Measurement of rotor vibration using tip-timing for high speed booster and evaluation of associated uncertainties
    • JTI-CS2-2018-CfP09-ENG-01-40 Turbulence modeling of heat exchangers and roughness impact
    • JTI-CS2-2018-CfP09-ENG-01-41 Ground vortex characterization method applicable for engine testing
    • JTI-CS2-2018-CfP09-ENG-01-42 Additive manufacturing boundary limits assessment for Eco Design process optimization [ECO]
  • H2020-CS2-CFP10-2019-01
    • JTI-CS2-2019-CfP10-ENG-01-43 Low NOx / Low soot injection system design for spinning combustion technology
    • JTI-CS2-2019-CfP10-ENG-04-08 Revalorisation of Recycled Carbon Fibers and CFRP preparation through Eco design [ECO]
  • H2020-IBA-CS2-GAMS-2017
    • CS2-GAM-2018-ENG Engines
  • H2020-IBA-CS2-GAMS-2019
    • CS2-GAM-2020-ENG Engine ITD GAM 2020
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