CHRZASZCZ | Optimization of APU Exhaust Muffler Thermal Barrier and Air Intakes construction Technologies

Summary
The aim of the Clean Sky 2 Topic JTI-CS2-2020-CfP11-LPA-01-92 “Optimization of APU Exhaust Muffler Thermal Barrier and Air Intakes construction Technologies” is to develop new materials construction concepts to be used for APU’s Air Intakes and Exhaust Muffler, that will meet specific functional requirements related, among others to weight reduction, noise attenuation, thermal and fire protection and end with a full scale components' design and manufactured ground demonstrators.

CHRZĄSZCZ Consortium is merging experience and capabilities of four different Companies – R&D Centre, University and two SMEs – in order to efficiently realize the Project tasks. To answer the call requirements, a Project path was proposed, comprehensively addressing different development phases, including material build-up proposal definition, testing, design and manufacturing stage as well as management activities. Within the proposal Consortium Partners described the approach addressing the call technical expectations by implementation of novel materials, which integration is going to be carefully designed providing required capabilities of the materials combination and made of it final products. Extensive use of composite structures including CFRP and carbo-ceramic composites as well as novel thermal insulation or ceramic foam use is proposed – the proposal also covers information about the materials and their proposed build-up.

Realisation of the Project shall result in TRL increase of new materials being beneficial in terms of weight decrease, manufacturing cost and time reduction, while the proposed design shall reduce the environmental impact by reducing the noise level.
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More information & hyperlinks
Web resources: https://cordis.europa.eu/project/id/101007816
Start date: 01-01-2021
End date: 30-06-2023
Total budget - Public funding: 1 044 462,00 Euro - 899 881,00 Euro
Cordis data

Original description

The aim of the Clean Sky 2 Topic JTI-CS2-2020-CfP11-LPA-01-92 “Optimization of APU Exhaust Muffler Thermal Barrier and Air Intakes construction Technologies” is to develop new materials construction concepts to be used for APU’s Air Intakes and Exhaust Muffler, that will meet specific functional requirements related, among others to weight reduction, noise attenuation, thermal and fire protection and end with a full scale components' design and manufactured ground demonstrators.

CHRZĄSZCZ Consortium is merging experience and capabilities of four different Companies – R&D Centre, University and two SMEs – in order to efficiently realize the Project tasks. To answer the call requirements, a Project path was proposed, comprehensively addressing different development phases, including material build-up proposal definition, testing, design and manufacturing stage as well as management activities. Within the proposal Consortium Partners described the approach addressing the call technical expectations by implementation of novel materials, which integration is going to be carefully designed providing required capabilities of the materials combination and made of it final products. Extensive use of composite structures including CFRP and carbo-ceramic composites as well as novel thermal insulation or ceramic foam use is proposed – the proposal also covers information about the materials and their proposed build-up.

Realisation of the Project shall result in TRL increase of new materials being beneficial in terms of weight decrease, manufacturing cost and time reduction, while the proposed design shall reduce the environmental impact by reducing the noise level.

Status

CLOSED

Call topic

JTI-CS2-2020-CfP11-LPA-01-92

Update Date

26-10-2022
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Horizon 2020
H2020-EU.3. SOCIETAL CHALLENGES
H2020-EU.3.4. SOCIETAL CHALLENGES - Smart, Green And Integrated Transport
H2020-EU.3.4.0. Cross-cutting call topics
H2020-CS2-CFP11-2020-01
JTI-CS2-2020-CfP11-LPA-01-92 Optimization of APU Exhaust Muffler Thermal Barrier and Air Intakes construction Technologies