Functional heterophase materials for structural electronics (Q84181): Difference between revisions

From EU Knowledge Graph
Jump to navigation Jump to search
(‎Changed label, description and/or aliases in 2 languages: Changing unique label-description pair)
(‎Removed claim: financed by (P890): Directorate-General for Regional and Urban Policy (Q8361), Removing unnecessary financed by statement)
Property / financed by
 
Property / financed by: Directorate-General for Regional and Urban Policy / rank
Normal rank
 

Revision as of 06:31, 29 October 2020

Project Q84181 in Poland
Language Label Description Also known as
English
Functional heterophase materials for structural electronics
Project Q84181 in Poland

    Statements

    0 references
    1,987,060.0 zloty
    0 references
    476,894.40 Euro
    13 January 2020
    0 references
    1,987,060.0 zloty
    0 references
    476,894.40 Euro
    13 January 2020
    0 references
    100.0 percent
    0 references
    1 October 2016
    0 references
    31 March 2020
    0 references
    POLITECHNIKA WARSZAWSKA
    0 references
    The main objective of this project is to design, fabricate and characterise a group of composite materials with tailored physical properties for additive manufacturing (3D printing) of structural electronics. A vast range of investigations will be conducted on fabrication of polymer composites with metal, carbon, ceramic, semiconductor, and other type of functional phases – including, but not limited to nanomaterials – with emphasis on rheology, dispersion and homogenization, electrical properties (resistivity, dielectric properties, noises), mechanical and environmental factors and other functional properties (optical, magnetic, piezo, thermal, etc.). Research will be conducted taking into account final application of elaborated materials in Fussed Deposition Modeling, Direct Write, Selective Laser Sintering and PolyJet or Aerosol Jet Printing. Series of demonstrators will be prepared with the use of obtained materials. At this time none of scientific teams has faced such challenge. (Polish)
    0 references
    The main objective of this project is to design, fabricate and characterise a group of composite materials with tailored physical properties for additive manufacturing (3D printing) of structural electronics. A vast range of investigations will be conducted on fabrication of polymer composites with metal, carbon, ceramic, semiconductor, and other type of functional phases – including, but not limited to nanomaterials – with emphasis on Rheology, dispersion and homogenisation, electrical properties (resistivity, dielectric properties, noises), mechanical and environmental factors and other functional properties (optical, magnetic, piezo, thermal, etc.). Research will be conducted taking into account final application of elaborated materials in fussed Deposition Modeling, Direct Write, Selective Laser Sintering and PolyJet or Aerosol Jet Printing. Series of demonstrators will be prepared with the use of obtained materials. At this time none of scientific teams has faced such challenge. (English)
    14 October 2020
    0 references

    Identifiers

    POIR.04.04.00-00-1CE9/16
    0 references