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Structure and properties of metastable metal-matrix composites produced by 'bottom-up' processing of core-shell powders

Project goals

Model metastable metal-matrix composites (m-MMCs) will be prepared by bottom-up technique of spark-plasma-sintering of core-shell Cu@Ag, W@Ag and W@Cu@Ag powders, which enable to preserve the spherical form of the reinforcing particles as well as their nature as pure metals. m-MMCs with soft and hard spherical particles, as well as those reinforced by core-shell particles W@Cu, all with defined size and distribution, will be characterized by advanced multiscale techniques and deformed in various way including severe plastic deformation. Obtained results together with theoretical modeling enable to elucidate the relationship between microstructure and mechanical properties, and mechanisms of plastic deformation on submicroscopic level.

Keywords

metal-matrix compositescore-shell powdersspark-plasma-sinteringmicrostructureplastic deformationexperimentsevere plastic deformationtheoretical modeling

Public support

  • Provider

    Czech Science Foundation

  • Programme

    Standard projects

  • Call for proposals

    SGA0202300001

  • Main participants

    Fyzikální ústav AV ČR, v. v. i.

  • Contest type

    VS - Public tender

  • Contract ID

    23-05139S

Alternative language

  • Project name in Czech

    Struktura a vlastnosti metastabilních kompozitů s kovovou matricí produkovaných z "core-shell" prášků

  • Annotation in Czech

    Modelové metastabilní kompozity s kovovou matricí (m-MMCs) budou připraveny slinováním prášků v plazmatu (SPS). SPS tzv. core-shell prášků Cu@Ag, W@Ag a W@Cu@Ag, kde Cu resp. W tvoří jádro a Ag obal, zachová kulový tvar částic a jejich nemíšení s matricí vzniklou z povlaku. m-MMCs s měkkými resp. tvrdými kulovými částicemi i m-MMC zpevněné core-shell částicemi W@Cu budou charakterizovány pomocí pokročilých technik a deformovány v tahu, protlačováním i intenzivní plastickou deformací. Získané výsledky spolu s teoretickým modelováním nám umožní určit vztah mezi mikrostrukturou a mechanickými vlastnostmi a stanovit detailní mechanismus plastické deformace takových m-MMCs.

Scientific branches

  • R&D category

    ZV - Basic research

  • OECD FORD - main branch

    20102 - Construction engineering, Municipal and structural engineering

  • OECD FORD - secondary branch

  • OECD FORD - another secondary branch

  • GB - Agricultural machines and construction
    JM - Structural engineering

Solution timeline

  • Realization period - beginning

    Jan 1, 2023

  • Realization period - end

    Dec 31, 2025

  • Project status

    K - Ending multi-year project

  • Latest support payment

    Feb 29, 2024

Data delivery to CEP

  • Confidentiality

    S - Úplné a pravdivé údaje o projektu nepodléhají ochraně podle zvláštních právních předpisů

  • Data delivery code

    CEP25-GA0-GA-R

  • Data delivery date

    Feb 21, 2025

Finance

  • Total approved costs

    9,552 thou. CZK

  • Public financial support

    9,077 thou. CZK

  • Other public sources

    475 thou. CZK

  • Non public and foreign sources

    0 thou. CZK

Basic information

Recognised costs

9 552 CZK thou.

Public support

9 077 CZK thou.

95%


Provider

Czech Science Foundation

OECD FORD

Construction engineering, Municipal and structural engineering

Solution period

01. 01. 2023 - 31. 12. 2025