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Publikacje
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[79280] Artykuł:

Fabrication and characteristics of sintered copper-silica composites

Czasopismo: IOP Conference Series: Materials Science and Engineering   Tom: 461, Strony: 1-7
ISSN:  1757-899X
Opublikowano: 2019
Liczba arkuszy wydawniczych:  0.50
 
  Autorzy / Redaktorzy / Twórcy
Imię i nazwisko Wydział Katedra Do oświadczenia
nr 3
Grupa
przynależności
Dyscyplina
naukowa
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udziału
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do oceny pracownika
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punktów wg
kryteriów ewaluacji
Joanna Borowiecka-Jamrozek orcid logo WMiBMKatedra Technik Komputerowych i Uzbrojenia**Takzaliczony do "N"Inżynieria mechaniczna502.501.67  
Marcin Kargul orcid logo WMiBMKatedra Technik Komputerowych i Uzbrojenia**Niespoza "N" jednostkiInżynieria mechaniczna251.25.00  
Marek Konieczny orcid logo WMiBMKatedra Technik Komputerowych i Uzbrojenia**Niezaliczony do "N"Inżynieria mechaniczna251.251.67  

Grupa MNiSW:  Publikacje w czasopismach spoza listy 2019
Punkty MNiSW: 5


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Abstract:

The paper presents the results of research on the production of a sintered Cu-SiO2 composites fabricated by powder metallurgy. The starting materials for obtaining the composites were commercial powders: Cu and SiO2. SiO2 particles were introduced into a copper matrix in the amount of 2.5 %, 5 %, 7.5 % and 10 % by weight. Finished powders mixtures were subjected to single pressing with a hydraulic press at a compaction pressure of 620 MPa and then subjected to sintering process at 900 °C in an atmosphere of dissociated ammonia. The sintering time was 60 minutes. The sintered compacts were subjected to the following tests: hardness, measurement of density, electrical conductivity and abrasion resistance. The highest density was obtained for a composite containing 2.5 % SiO2 which was 7.94 g/cm3. The highest hardness was obtained for a composite containing 10 % SiO2 which amounted to 50 HB. For the composite containing 2.5 % SiO2 the highest electrical conductivity was obtained which was 47 MS/m. The highest abrasive wear resistance was obtained for a composite containing 10 % SiO2. Both density and electrical conductivity decreased along with the increase of SiO2 content in composites.