• Title of article

    Effects of Mo Addition on the Microstructure and Mechanical Properties of Cast Microalloyed Steel

  • Author/Authors

    Torkamani, H School of Metallurgy and Materials Engineering - College of Engineering - University of Tehran, Tehran , Rashvand, H School of Metallurgy and Materials Engineering - College of Engineering - University of Tehran, Tehran , Raygan, Sh School of Metallurgy and Materials Engineering - College of Engineering - University of Tehran, Tehran , Rassizadehghani, J School of Metallurgy and Materials Engineering - College of Engineering - University of Tehran, Tehran , Palizdar, Y. graduate , Garcia Mateo, C National Center for Metallurgical Research (CENIM-CSIC) - Avda Gregorio delAmo - Madrid, Spain , San Martin, D National Center for Metallurgical Research (CENIM-CSIC) - Avda Gregorio delAmo - Madrid, Spain

  • Pages
    10
  • From page
    76
  • To page
    85
  • Abstract
    In industry. the cost ofproduction is an important factor and it ispreferred to use conventional and low cost procedures for producing the parts. Heat treatment cycles and alloying additions are the key factors affecting the microstrocture and mechanical properties of the cast steels. In this study an attempt was made to evaluate the influence of minor Mo addition on the microstructure and mechanical properties of conventionally heat treated cast micro­ alloyed steels. The results of Jominy and dilatometry tests and also microstructural examinations revealed that Mo could effectively increase the hardenability of the investigated steel and change the microstructure features of the air­ cooled samples. Acicular microstrocture was the consequence of increasing the hardenability in Mo-added steel. Besides, it was found that Mo could greatly affect the isothermal bainitic transformation and higher fraction of martensite after cooling (from isothermal temperature) was due to the Mo addition. The results of impact test indicated that the microstructure obtained in air-cooled Mo-added steel led to better impact toughness (28J) in comparison with the base steel (23J). Moreover, Mo-added steel possessed higher hardness (29IHV), yield (524MPa) and tensile (II08MPa) strengths compared to the base one.
  • Keywords
    Mo Addition , Co1TVentional Heat Ireatment , Cast Microalloyed Steel , Mechanical Properties
  • Journal title
    Astroparticle Physics
  • Serial Year
    2017
  • Record number

    2480936