Community Research and Development Information Service - CORDIS

Horizon 2020 project information and now also report summaries are available on CORDIS. All H2020 projects can be downloaded from the EU Open Data Portal .

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Results 1 - 10 of 744
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Advanced tools for computational design of engineering materials
ID: 320815
Start date: 2013-02-01, End date: 2018-01-31
The overall goal of the project is to contribute to the consolidation of the nascent and revolutionary philosophy of “Materials by Design” by resorting to the enormous power provided by the nowadays-available computational techniques. Limitations of current procedures for dev...
Programme: FP7-IDEAS-ERC
Record Number: 106930
Last updated on: 2017-11-20
Mid-Term Report Summary - COMP-DES-MAT (Advanced tools for computational design of engineering materials)
The overall goal of the COMP-DES-MAT project is to contribute to the consolidation of the nascent and revolutionary philosophy of “Materials by Design” by resorting to the enormous power provided by the nowadays-available computational techniques. Limitations of current...
Programme: FP7-IDEAS-ERC
Record Number: 178619
Last updated on: 2016-04-28
Novel Energy Materials: Engineering Science and Integrated Systems (NEMESIS)
ID: 320963
Start date: 2013-02-01, End date: 2018-12-31
The aim of NEMESIS is to establish a world leading research center in ferroelectric and piezoelectric materials for energy harvesting and energy generation. I will deliver cutting edge multi-disciplinary research encompassing materials, physics, chemistry and electrical engin...
Programme: FP7-IDEAS-ERC
Record Number: 106466
Last updated on: 2017-11-20
Mid-Term Report Summary - NEMESIS (Novel Energy Materials: Engineering Science and Integrated Systems (NEMESIS))
The NEMESIS project examines Novel Energy Materials: Engineering Science and Integrated Systems. The aim of NEMESIS is to create new piezoelectric and ferroelectric energy harvesting systems capable of converting mechanical vibrations into electrical energy, thermal...
Programme: FP7-IDEAS-ERC
Record Number: 178534
Last updated on: 2016-04-28
Novel combustion principle with inherent capture of CO2 
using combined manganese oxides that release oxygen
ID: 291235
Start date: 2012-03-01, End date: 2017-02-28
Conventional CO2 capture processes have significant cost and energy penalties associated with gas separation. Chemical-looping combustion (CLC), an entirely new combustion principle avoids this difficulty by inherent CO2 capture, using metal oxides for oxygen transfer from ai...
Programme: FP7-IDEAS-ERC
Record Number: 102606
Last updated on: 2016-03-18
Final Report Summary - NOCO2 (Novel combustion principle with inherent capture of CO2 using combined manganese oxides that release oxygen)
Conventional CO2 capture processes have large costs associated with gas separation. Chemical-looping combustion (CLC), a new combustion principle, avoids this entirely by using metal oxides to carry oxygen from air to the fuel. In this project, novel manganese based oxygen...
Programme: FP7-IDEAS-ERC
Record Number: 202681
Last updated on: 2017-08-16
Multiscale Analysis and Design for Process Intensification and Innovation
ID: 290793
Start date: 2012-05-01, End date: 2017-04-30
The current pressures on the major industrial players have necessitated a more urgent push for increased productivity, process efficiency, and waste reduction; i.e. process intensification. Future sizable improvements in these entrenched industrial processes will require eith...
Programme: FP7-IDEAS-ERC
Record Number: 101488
Last updated on: 2017-11-20
Final Report Summary - MADPII (Multiscale Analysis and Design for Process Intensification and Innovation)
Chemical processes, which require an intensive exchange of energy and/or interaction between two phases are typically carried out in fluidized bed reactors. In these reactors, the mobile phase (normally a gas) enters from the bottom, passes through and interacts with the bed...
Programme: FP7-IDEAS-ERC
Record Number: 202666
Last updated on: 2017-08-16
The Metallurgical Nutcracker: Probing at the Nanoscale the Structure and Properties of Hard Second Phases in Alloys and Composites
ID: 291085
Start date: 2012-05-01, End date: 2017-04-30
Our ambition is to probe the strength of “second” phases in multiphase metal alloys and composites, meaning of hard particles added to strengthen a metal, or alternatively of brittle inclusions that weaken it. Such phases are ubiquitous in structural metals; yet not much is k...
Programme: FP7-IDEAS-ERC
Record Number: 102187
Last updated on: 2016-03-18
Final Report Summary - PHASENANOCRACKER (The Metallurgical Nutcracker: Probing at the Nanoscale the Structure and Properties of Hard Second Phases in Alloys and Composites)
Many metallic materials (cast iron, tool steel and aluminium casting alloys are examples) combine a ductile matrix of a metal such as aluminium or iron, with a significant volume fraction of hard "second" phases, which are often non-metallic carbides, oxides or silicon. These...
Programme: FP7-IDEAS-ERC
Record Number: 208527
Last updated on: 2017-11-16
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List retrieved on: 2017-11-23
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