Profile Project

Information updated to: 31/08/2016

Project

Sviluppo di processi innovativi di formatura plastica a caldo di componenti aeronautici in lega di titanio per ottenere un basso rapporto Buy/Fly.

Code PON01_00538
Field/s Environment and Ecology, Transport and Logistics
Description Modern aerospace industry shall comply with two demanding requirements: reducing operational consumption (and subsequently the associated pollution, according to international regulations) together with production costs coming from materials and labor.Current trend of aerospace engineering is oriented to meet both requirements increasing the rate of polymer matrix composites which implies association with structures made of titanium alloys. Final outcome is also the global increase in the use of titanium, whose amount goes beyond 18% of total weight of the aircraft .Currently utilized technologies for fabrication of titanium components imply high yield losses in machining of this very expensive material (10 times higher than aluminum alloys). In fact current BUY:FLY Ratio is not less than 20 where BUY is the weight of the raw material procured, and FLY is the final weight of the a generic titanium component.Aiming to reduce the production costs of titanium components this research proposal is oriented to study and finalize two innovative processes for hot forming: · Forging in closed dies, semi finished form, in the temperature range where the Beta phase of titanium is stable; with the additional benefit of using a wrought titanium feedstock that is more efficiently produced.· HSF hot stretch forming on a multi-axis geometry mandrel and four axis machine with independent axis for a higher process precision, and more complex components.With that being said the final goal is the identification of the process parameters to realize mock-ups of aerospace components made of titanium alloys having a geometry very close to the actual one, minimizing machining operations to reduce the BUY:FLY Ratio to 10 for forging and 8 for hot stretch forming (HSF) Such results will be pursued following two different approaches for the two hot plastic deformation methods identified:· As far as the innovative forging process, the purpose is to revise completely the currently standardized process, inclusive of the preparation of innovative blanks. In fact, instead of using the precision hot forging in closed dies (unusual technology in Italy) from ingots, leading to the above listed BUY:FLY ratios close to 20, the goal is to study the development of blanks gotten from a low cost powder compaction in metallic billets having a geometry close to that of the final mock-up. · HSF process aims to realize aeronautical mock-ups affected by high slenderness: thickness of 3-6mm C shaped or L shaped and a length of 1-2 m realized forming extruded bars of appropriate section over a mandrel. Such result shall be obtained designing and realizing in Italy an innovative 4 independent moving axis machine able to stretch and twist on innovative mandrels made of ceramics the above mentioned extruded titanium bars. Current HSF capability is limited to a single plane, and no twist capability. The ability of multi-axis forming will enable HSF to make a whole new category of long, slender multi-axis shapes that are currently produced from die forging, with a 20:1 buy:fly ratio, or machined from solid block with a 50:1 buy:fly ratio.
Total cost 4,787,575.00 euro
Public contribution
Total public contribution
4,016,002.20 euro

NOP R&C contribution
2,964,042.20 euro

PAC contribution
0.00 euro

Contribution from other funds
1,051,960.00 euro
Distribution Advancement of distribution in %
Total amount distributed
2,548,790.63 euro

NOP R&C distributed amount
2,233,202.63 euro

PAC distributed amount
0.00 euro

Amount distributed with other funds
315,588.00 euro

Legend

Field/s – Indicates the field or fields in which the project has the most relevance. A project may have more than one field. For some projects it is not assigned. The field are the following 8: "Health and wellbeing", "Food", "Energy", "Environment and Ecology", "Transport and Logistics", "Cultural goods and activities", "Social Innovation" and "Smart Cities".

Description – Descriptive summary of project.

Total cost – Total cost of project.

Public contribution – Three elements are reported:

  • Total commitment – total amount admitted to financing, may include more than contribution to be valued on NOP R&C, also on other funds.
  • NOP R&C admitted contribution
  • PAC admitted contribution
  • Contribution with other funds

Distribution – The following elements are reported:

  • Total distributed amount – takes into account the distributed amount considering both NOP R&C distribution and other funds if provided for
  • NOP R&C distributed amount – amount distributed to financing of project to be valued on NOP R&C
  • PAC distributed amount – amount distributed to financing of project to be valued on PAC
  • Amount distributed with other funds – amount distributed to financing of project with other funds

The distributions refer to the date of last update indicated at top.

Type of beneficiary Public commitment for beneficiary
University 2
Research Organisation 1
Micro business 1
Total Beneficiaries 4

Università degli studi di Palermo

Tax File Number: 80023730825
Unique Project Code: B71C11000260005
Location of financial commitments: Sicilia
Type: University

Presentation date 09/04/2010
Approval date 14/10/2011
Start of activity Expected date
01/07/2011
Effective date
01/07/2011
End of activity Expected date
31/03/2015
Effective date
-
Total cost 672,619.00 euro
Public contribution Total
571,726.15 euro
Eligible of NOP R&C
571,726.15 euro
Distribution Total
571,726.15 euro
Amount of NOP R&C
571,726.15 euro

Date of last distribution of NOP R&C
-

Centro Sviluppo Materiali

Tax File Number: 00477510580
Unique Project Code: B51C11000310005
Location of financial commitments: Campania, Extra convergenza
Type: Research Organisation

Presentation date 09/04/2010
Approval date 14/10/2011
Start of activity Expected date
01/07/2011
Effective date
01/07/2011
End of activity Expected date
31/03/2015
Effective date
-
Total cost 1,978,556.00 euro
Public contribution Total
1,681,772.60 euro
Eligible of NOP R&C
836,872.60 euro
Distribution Total
839,280.83 euro
Amount of NOP R&C
585,810.83 euro

Date of last distribution of NOP R&C
-

UNIVERSITÀ DEGLI STUDI DI NAPOLI FEDERICO II

Tax File Number: 00876220633
Unique Project Code: B51C11000300005
Location of financial commitments: Non disponibile
Type: University

Presentation date 09/04/2010
Approval date 14/10/2011
Start of activity Expected date
01/07/2011
Effective date
01/07/2011
End of activity Expected date
31/03/2015
Effective date
-
Total cost 1,509,089.00 euro
Public contribution Total
1,282,725.65 euro
Eligible of NOP R&C
1,075,665.65 euro
Distribution Total
1,137,783.65 euro
Amount of NOP R&C
1,075,665.65 euro

Date of last distribution of NOP R&C
-

O.M.P.M.

Tax File Number: 00758220651
Unique Project Code: B41C11000190005
Location of financial commitments: Campania
Type: Micro business

Presentation date 09/04/2010
Approval date 14/10/2011
Start of activity Expected date
01/07/2011
Effective date
01/07/2011
End of activity Expected date
31/03/2015
Effective date
-
Total cost 627,311.00 euro
Public contribution Total
479,777.80 euro
Eligible of NOP R&C
479,777.80 euro
Distribution Total
-
Amount of NOP R&C
-

Date of last distribution of NOP R&C
-
Axis - Operational objective I - Scientific and technological fields, generators of industry transformation processes and creators of new sectors (Go to )
Action Strategic scientific and technological areas
Action line Industrial Research (Go to)
Instrument of implementation Invitation to presentation of Industrial Research projects (DD 1/Ric 18/01/10)
NSF - objective Strengthen and evaluate the whole chain of research and cooperation networks between the research system and businesses, to contribute to competitiveness and economic growth; sustain maximum distribution and use of new technologies and advanced services; heighten level of scientific and technical knowledge and skills in the production system and in institutions
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