4.7 Article

Hot deformation behavior of the 1.15C-4.00Cr-3.00V-6.00W-5.00Mo powder metallurgy high speed steel

Journal

MATERIALS & DESIGN
Volume 54, Issue -, Pages 854-863

Publisher

ELSEVIER SCI LTD
DOI: 10.1016/j.matdes.2013.08.093

Keywords

Powder metallurgy high speed steel; Hot workings; Constitutive modeling; Hot workability; Advanced processing maps

Funding

  1. Natural Science Foundation of China [51101119]
  2. China Postdoctoral Science Foundation [2012T50818]

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The deformation behavior of the 1.15C-4.00Cr-3.00V-6.00W-5.00Mo powder metallurgy (PM) high speed steel in hot working process was investigated by the isothermal compression tests carried out at the temperature of 950-1150 degrees C and the strain rate of 0.001-1.0 s (1) with the height reduction of 60%. True stress-true strain curves are investigated; the hot deformation activation energy of the steel is determined to be 750 kJ/mol, and a constitutive equation is obtained. The processing maps were constructed, identification of the instability region and optimization of hot deformation parameters. It is found that the hot working process of the steel can be carried out safely in the domain of (T-d: 1000-1150 degrees C, (epsilon) over dot: 0.006-0.1 s (1)). To obtain the homogeneous microstructure with fine grains, the hot working process should be carried out at the condition of (Topi: 1050 degrees C, (epsilon) over dot(opi) : 0.1 s (1)). The flow instability is expected in the two domains at 1030-1150 degrees C/0.1-1.0 s (1) and 1000-1075 degrees C/0.001-0.006 s (1). Furthermore, the true strain takes a great effect on processing maps in which the efficiency of power dissipation g obviously changes with the increase of strain from 0.05 to 0.90. (C) 2013 Published by Elsevier Ltd.

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