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    Microstructural Characterization and the Effect of Phase Transformations on Toughness of the UNS S31803 Duplex Stainless Steel Aged Treated at 850 °C

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    Microstructural Characterization and the Effect of Phase Transformations on Toughness of the UNS S31803 Duplex Stainless Steel Aged Treated at 850 °C.pdf (406.2Kb)
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    Artigo de Periódico
    Date
    2002
    Author
    Zucato, Igor
    Moreira, Margarete C.
    Machado, Izabel Fernanda
    Lebrão, Susana Marraccini Giampietri
    Metadata
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    Abstract
    Duplex stainless steels, with ferritic-austenitic microstructure, have excellent mechanical properties and corrosion resistance. However, when duplex stainless steels are exposed to temperatures between 600 and 1000 °C, some phase transformations can occur such as chromium nitrides precipitation, chromium carbides precipitation and the sigma phase formation. The formation of such compounds leads to loss in both corrosion resistance and fracture toughness. The negative effects of the formation of chromium nitrides, carbides and the sigma phase are due to the chromium depletion in the matrix. The phase transformations cited above occur initially at ferritic-austenitic interfaces and at the grain boundaries. The aim of this work is to identify and characterize the phase transformations, which occur when aging heat treatments are carried out at temperatures at which the kinetics is the fastest for the reactions mentioned. At first, the samples were annealed at 1100 °C for 40 min. The aging heat treatments were then carried out at 850 °C for 6, 40 e 600 min. Microstructural characterization was done by using optical microscopy with different etchings, in order to identify each phase formed in the duplex stainless steel during aging heat treatments. The toughness was also evaluated by using Charpy impact test. Impact tests show that loss of toughness was related to phase transformations.
    1. Hydrogen Embrittlement in Metals and Alloys
    2. Mechanical Properties of Thin Film Coatings
    3. Nickel-Based Superalloys and High-Temperature Steels
    4. Hydrogen Embrittlement in Metals and Alloys
    5. Metals and Alloys
    6. Materials Science
    7. Physical Sciences
    8. Charpy impact test
    9. Duplex (building)
    10. Phase Stability
    11. Chromium nitride
    12. Microstructural Properties
    13. Stainless Steels
    14. Charpy impact test
    15. Materials science
    16. Metallurgy
    17. Austenite
    18. Chromium
    19. Carbide
    20. Microstructure
    21. Toughness
    22. Corrosion
    23. Duplex (building)
    24. Chromium nitride
    25. Precipitation
    26. Phase (matter)
    27. Fracture toughness
    28. Grain boundary
    29. Nitride
    30. Composite material
    31. Chemistry
    32. DNA
    33. Biochemistry
    34. Physics
    35. Organic chemistry
    36. Layer (electronics)
    37. Meteorology
    38. Acesso Aberto
    URI
    https://openalex.org/W2120800378
    https://doi.org/10.1590/s1516-14392002000300026
    https://www.scielo.br/j/mr/a/CxmGDpnH4DNLyR98h5wsg7G/?lang=en&format=pdf
    https://repositorio.maua.br/handle/MAUA/1747
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