Dual-Phase Steel

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Details

This study presents the microstructural characterization and evaluation of the mechanical properties of steel with different dual-phase microstructures, obtained by tempering ferritic-pearlitic LNE 500 steel. Its intercritical region and existing phases, as a function of temperature, were determined using the "THERMOCALC" software. With these results, samples were tempered from different temperatures to obtain varying volumetric fractions of ferrite and martensite. Microstructural characterization was performed using qualitative and quantitative metallography. The mechanical properties were determined by means of hardness, impact, and uniaxial tensile tests, which provided parameters such as yield strength, tensile strength, and total and uniform elongation, in addition to the work hardening exponent and the resistance coefficient of the treated steel. Results showed that heat treatments produced different microstructures. The greater presence of the martensitic phase contributes to improving the mechanical properties of hardened steel, such as hardness, impact energy absorbed, and mechanical strength without loss of ductility.

Autorentext

Absolwent fizyki na Federalnym Uniwersytecie w Itajubá (UNIFEI), 2009 r. W 2013 r. uko czy studia magisterskie, a w 2017 r. studia doktoranckie, równie na UNIFEI, w dziedzinie in ynierii materiäowej. Jest wyk adowc i badaczem z do wiadczeniem w zakresie materiäów metalowych w nast puj cych dziedzinach: charakterystyka mechaniczna i mikrostrukturalna, obróbka cieplna, metalografia i metalurgia proszkowa.

Weitere Informationen

  • Allgemeine Informationen
    • GTIN 09786200757692
    • Genre Mechanical Engineering
    • Sprache Englisch
    • Anzahl Seiten 76
    • Herausgeber Our Knowledge Publishing
    • Größe H220mm x B150mm x T5mm
    • Jahr 2025
    • EAN 9786200757692
    • Format Kartonierter Einband
    • ISBN 6200757690
    • Veröffentlichung 26.07.2025
    • Titel Dual-Phase Steel
    • Autor Alexandre Nogueira Ottoboni Dias
    • Untertitel Mechanical Properties & Microstructures
    • Gewicht 131g

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