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Light alloys for application as engine parts – comparison of properties of three materials

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
This paper discusses the mechanical properties, microstructure and crystallographic texture of light alloys made on the base of aluminium, magnesium and lithium. An acoustic emission (AE) technique was applied to detect the moment of twinning or slip activation during compression and channel – die tests to extend the comprehension on the nature of the plastic deformation processes occurring in the investigated alloys.
Rocznik
Strony
128--132
Opis fizyczny
Bibliogr. 8 poz., rys., tab.
Twórcy
  • Institute of Fundamental Technological Problems, PAS 02-106 Warszawa, ul. Pawińskiego 5B
autor
  • Institute of Metalurgy and Materials Engineerig, PAS 30-059 Kraków, ul. Reymonta 25
autor
  • Institute of Metalurgy and Materials Engineerig, PAS 30-059 Kraków, ul. Reymonta 25
autor
  • Institute of Metalurgy and Materials Engineerig, PAS 30-059 Kraków, ul. Reymonta 25
  • Institute of Fundamental Technological Problems, PAS 02-106 Warszawa, ul. Pawińskiego 5B
autor
  • Silesian University of Technology 44-100 Gliwice, ul. Konarskiego 18a
Bibliografia
  • 1. PUCHER P., BOTTCHER H., et al.: Mechanical properties and casting characteristics of the secondary aluminium alloy AlSi9Cu3(Fe) (A226). Materials Fabrication, Properties, Characterization and Modelling TMS, The Minerals, Metals & Materials Society, 2011, 237–244.
  • 2. LU L., LIU T., CHEN Y., WANG Z.: Deformation and fracture behavior of hot extruded Mg alloys AZ31. Mater Charact, 67, 2012, 93–100.
  • 3. CHINO Y., KIMURA K., MABUCHI M.: Twinning behavior and deformation mechanisms of extruded AZ31 Mg alloy. Mater Sci Eng A 486, 2008, 481–488.
  • 4. MU S., JONAS J.J., GOTTSTEIN G.: Variant selection of primary, secondary and tertiary twins in a deformed Mg alloy. Acta Mater 60, 2012, 2043–2053.
  • 5. KUDELA S., PAWELEK A., RANACHOWSKI Z., et al.: Effect of Al alloying on the Hall-Petch strengthening and AE in compressed Mg–Li–Al alloys before and after HPT processing. Kovove Materialy-Metallic Materials 49, 4, 2011, 271–277, DOI: 10.4149/km_2011_4_271.
  • 6. KUSNIERZ J., PAWELEK A., RANACHOWSKI Z., et al.: Mechanical And Acoustic Emission Behaviour Induced By Channel-Die Compression of Mg–Li Nanocrystalline Alloys Obtained By ECAP Technique. Reviews on Advanced Materials Science 18, 7, 2008, 583–589.
  • 7. RANACHOWSKI Z., PAWEŁEK A., JASIEŃSKI Z. et al: Durability and wear of engine parts – new methods of testing of alloys and composites, Scientific Journals Maritime University of Szczecin 35(107), 2013, 125–131.
  • 8. KUŚNIERZ J.: Microstructure and texture evolving under Equal Channel Angular (ECA) processing. Archives of Metallurgy 45, 2001, 375–379.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-5be43d4a-9a03-4ffb-b220-7098f3715b1f
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