B-initio modelling of phase stability and capacities of higher-entoil (Q84169): Difference between revisions
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(Created claim: summary (P836): High oil supplies (heas) are the new class of materials with and structures.All or more components in equal or near equal Atomic percent.The high territorial entia factors inhibiting the formation of multimetallic phaes in faour of multimetallic phaes in faour.Due to the unavoidable investigation of all communities.Thus phase stability and structures of heas are still not existing.The findings in this project will not only lead the commitment of...) |
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Revision as of 13:44, 26 March 2020
Project in Poland financed by DG Regio
Language | Label | Description | Also known as |
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English | B-initio modelling of phase stability and capacities of higher-entoil |
Project in Poland financed by DG Regio |
Statements
799,420.0 zloty
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799,420.0 zloty
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100.0 percent
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1 January 2017
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30 June 2019
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POLITECHNIKA WARSZAWSKA
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High entropy alloys (HEAs) are the new class of materials with a very unique microstructure and properties. They contain four or more components in equal or near equal atomic percent. The high configurational entropy associated to mixing several elements inhibit the formation of brittle intermetallic phases in favour of multicomponent random solid solutions. Due to the enormous number of combinations of components and their concentrations, the experimental investigation of all combinations is impossible. Thus phase stability and properties of HEAs are still not known very well and there is no existing unified theory to cover the atomistic and thermodynamic aspects of HEAs. The simulations performed within this project will not only improve the understanding of that new class of materials but they will enable the design of novel alloy compositions with unique properties for potential industrial applications. (Polish)
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High oil supplies (heas) are the new class of materials with and structures.All or more components in equal or near equal Atomic percent.The high territorial entia factors inhibiting the formation of multimetallic phaes in faour of multimetallic phaes in faour.Due to the unavoidable investigation of all communities.Thus phase stability and structures of heas are still not existing.The findings in this project will not only lead the commitment of that new class of material. (English)
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Identifiers
POIR.04.04.00-00-1BA2/16
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