MICROFORM | FORMING OF MICROPERFORATED OUTER SKIN OF HLFC WINGS ASSISTED BY FEM SIMULATON

Summary
One of the main challenges on Hybrid Laminar Flow Control (HLFC) wing design, is to integrate the HLFC systems (vacuum chambers, pipes…etc.) inside the small space of the leading Edge, together with de-icing and high lift systems. Clean Sky 2 aims to reduce HLFC complexity by using variable pitch microperforations along the outer skin in order to control suctions without necessity of internal chambering. Variable microperforation entails a new challenge that must be investigated before deciding on the most suitable skin forming technology and material for new generation of HLFC demo structures, which will contribute to reduce 10% both fuel consumption and pollutant emissions in future aircrafts.

To achieve this goal, MICROFORM project will develop i) a suitable forming process for the real-scale manufacturing of leading edge HLFC wing outer skins and ii) supporting simulation tools to minimize initial process development costs of large structures composed by both constant and variable microperforation patterns meeting requested quality criteria and dimensional tolerances.

The achievement of these objectives will result in the following Key Exploitable Results:

− Material property data of microperforated Ti Gr 2 and Ti Gr 5.
− New knowledge about possibilities and limitations to form titanium microperforated sheets with variable patterns.
− Hot and stretch forming process parameters and conditions for aimed materials and geometries.
− Hot and stretch forming simulation tool.
− New knowledge about possibilities and limitations to reduce manufacturing costs of large forming tools.

The implementation of MICROFORM is carried out by a multidisciplinary consortium, formed by research and industrial entities who are experts in the development of simulation tools (LORTEK, HZG) and forming technologies (SOFITEC, FORMTECH) to manufacture small and large-scale demonstrators of microperforated titanium sheets for leading
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Web resources: https://cordis.europa.eu/project/id/886409
Start date: 01-05-2020
End date: 30-06-2023
Total budget - Public funding: 1 605 200,00 Euro - 1 299 601,00 Euro
Cordis data

Original description

One of the main challenges on Hybrid Laminar Flow Control (HLFC) wing design, is to integrate the HLFC systems (vacuum chambers, pipes…etc.) inside the small space of the leading Edge, together with de-icing and high lift systems. Clean Sky 2 aims to reduce HLFC complexity by using variable pitch microperforations along the outer skin in order to control suctions without necessity of internal chambering. Variable microperforation entails a new challenge that must be investigated before deciding on the most suitable skin forming technology and material for new generation of HLFC demo structures, which will contribute to reduce 10% both fuel consumption and pollutant emissions in future aircrafts.

To achieve this goal, MICROFORM project will develop i) a suitable forming process for the real-scale manufacturing of leading edge HLFC wing outer skins and ii) supporting simulation tools to minimize initial process development costs of large structures composed by both constant and variable microperforation patterns meeting requested quality criteria and dimensional tolerances.

The achievement of these objectives will result in the following Key Exploitable Results:

− Material property data of microperforated Ti Gr 2 and Ti Gr 5.
− New knowledge about possibilities and limitations to form titanium microperforated sheets with variable patterns.
− Hot and stretch forming process parameters and conditions for aimed materials and geometries.
− Hot and stretch forming simulation tool.
− New knowledge about possibilities and limitations to reduce manufacturing costs of large forming tools.

The implementation of MICROFORM is carried out by a multidisciplinary consortium, formed by research and industrial entities who are experts in the development of simulation tools (LORTEK, HZG) and forming technologies (SOFITEC, FORMTECH) to manufacture small and large-scale demonstrators of microperforated titanium sheets for leading

Status

CLOSED

Call topic

JTI-CS2-2019-CfP10-LPA-01-83

Update Date

27-10-2022
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