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[74180] Artykuł:

THE INFLUENCE OF CARBON ADDITION ON UPSETTING CHARACTERISTICS OF POROUS COMPONENTS PREPARED BY FE-BASED SINTERING TECHNOLOGY

Czasopismo: 26th International Conference on Metallurgy and Materials   Strony: 761-765
ISBN:  978-80-87294-79-6
Wydawca:  TANGER LTD, KELTICKOVA 62, SLEZSKA, OSTRAVA 710 00, CZECH REPUBLIC
Opublikowano: Czerwiec 2017
Miejsce wydania:  Ostrava
 
  Autorzy / Redaktorzy / Twórcy
Imię i nazwisko Wydział Katedra Do oświadczenia
nr 3
Grupa
przynależności
Dyscyplina
naukowa
Procent
udziału
Liczba
punktów
do oceny pracownika
Liczba
punktów wg
kryteriów ewaluacji
Wojciech Depczyński orcid logo WMiBMKatedra Technik Komputerowych i Uzbrojenia**Takzaliczony do "N"Inżynieria materiałowa10015.0015.00  

Grupa MNiSW:  Materiały z konferencji międzynarodowej (zarejestrowane w Web of Science)
Punkty MNiSW: 15
Klasyfikacja Web of Science: Proceedings Paper


Web of Science Logo Web of Science    
Keywords:

Metallic foam  sintering Fe foam  up-settings characteristics  SPACE HOLDER TECHNIQUE  MECHANICAL-PROPERTIES  STAINLESS-STEEL  METALLIC FOAMS  POROSITY  PARAMETERS 



Abstract:

The compression strength is well characterized by the ability to transfer compressive stresses through porous materials. It can be determined by examining the material on the endurance machine in a single -axis compression test. The test was made on a strength machine Zwick/Roell Z100. Cylindrical specimens, made from Fe powder (ASC 100.29 and DISTALOY SE) and Fe powder with carbon addiction, about dimensions H =14 [mm], d = 16 mm, have been subjected to compression. The initial force was 100 N, while the displacement was 1 [mm/min]. Direct compressive strength (R-m) was obtained by examining the maximum value of compressive force of data range for deformation stress function. The diversity in the microstructure and porous structures properties can lead to fluctuations in the results during the endurance tests. The divergence of the Young's modulus of the aluminum porous material can vary from 5 to 30 %, and a compressive strength from 5 to 15 %. The Young's modulus was calculated on the basis of the range of 0.25 - 0.75 stresses in the linear range by dividing the stress by the deformation.