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Ensinger PEI
Ovako X20NiCrAlMoV6-5-2-1* Hybrid Steel 60, 397A Steel, Aging, at 250°C
Categories: Metal; Ferrous Metal; Alloy Steel

Material Notes: General Information: Hybrid Steel® is a low carbon steel containing a number of carefully controlled alloying elements, most importantly nickel, chromium, aluminium, molybdenum and vanadium. These enable it to develop its full properties after aging at elevated temperature (500–620°C). The chromium and aluminium content also improves corrosion resistance. The variant 297A is offered under the name Hybrid Steel 55 and the variant 397A is offered under the name Hybrid Steel 60.
Hybrid Steel 55 - Engineering steel.
Hybrid Steel 60 - Bearing steel.
Maximum hardness after aging: Hybrid Steel 55, 55HRC. Hybrid Steel 60, 60HRC.

Hybrid Steel offers superior mechanical and fatigue strength compared to conventional steel grades at elevated temperatures.

  • Excellent elevated temperature strength
  • Flexible hardness, achieved by an aging treatment in the temperature range 500–620°C
  • Extremely good dimensional stability when aging is applied
  • High uniformity of properties also for large components
  • Good weldability, no preheating necessary
  • Corrosion resistance comparable to AISI 440C
The density for these grades is 7582 kg/m3.

Information provided by Ovako

Key Words: X20NiCrAlMoV6-5-2-1, X30NiCrAlMoV6-5-2-1 , Ovako297A, Ovako397A
Vendors:
Available Properties
  • Density
  • Tensile Strength, All formats
  • Tensile Strength, Yield, All formats
  • Elongation at Break, All formats
  • Reduction of Area, All formats
  • Modulus of Elasticity
  • Poissons Ratio
  • Shear Modulus
  • Electrical Resistivity
  • CTE, linear
  • Specific Heat Capacity
  • Thermal Conductivity, Ambient temperature
  • Transformation Temperature, MS
  • Transformation Temperature, AC1
  • Transformation Temperature, AC3
  • Aluminum, Al
  • Carbon, C
  • Chromium, Cr
  • Iron, Fe, As Balance
  • Manganese, Mn
  • Molybdenum, Mo
  • Nickel, Ni
  • Phosphorus, P
  • Silicon, Si
  • Sulfur, S
  • Vanadium, V
  
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