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Refractory Metals
Schwarzkopf Plansee PM 2000, Sheet Grain Class 6 ODS Iron Alloy Sheet  (discontinued **)
Categories: Metal; Ferrous Metal; Metal Matrix Composite

Material Notes: The PLANSEE sophisticated PM 2000 is a highly oxidation resistant and extremely creep resistant ferritic iron-chromium based alloy. Homogeneous dispersion strengthening with nano sized Y2O3 particles in combination with recrystallized coarse grained microstructure gives PM 2000 highest hot strength and creep strength up to 1350°C. Due to its high content of Aluminium and Chromium, PM2000 forms a dense and adherent Al2O3 scale when used at high temperatures under oxidizing atmospheres. This oxide scale is highly resistant to high-speed gas flows up to 1300°C.

Advantages of PM 2000:

  • creep resistance up to 1350 °C
  • high hot strength up to 1300°C
  • excellent oxidation and hot corrosion resistance
  • highly resistant against coking and carburization compared to NiCr alloys
  • due to its lower density, components made from PM 2000 are lighter than those made from Ni base materials
  • high stability against high-speed gas flows at temperatures up to 1300 °C
  • good machinability with normal tooling
Typical fields of application for PM 2000:
  • thermocouple sleeves for high temperatures
  • burner nozzles
  • charge carriers for parts for high temperature furnace construction
  • pull rod assemblies for high temperature testing
  • stirrers for the glass industry
  • honey comb structures for aerospace
  • components for the chemical plant construction
  • combustion parts for engines

Key Words: Material No. 1.4768; Abbreviated DIN Name CrAl 21 6
Vendors:
Available Properties
  • Density
  • Hardness, Vickers, HV 10
  • Tensile Strength, Ultimate, Longitudinal
  • Tensile Strength, Ultimate, Transverse
  • Tensile Strength, Ultimate, Transverse
  • Tensile Strength, Ultimate, Longitudinal
  • Tensile Strength, Ultimate, Transverse
  • Tensile Strength, Ultimate, Longitudinal
  • Tensile Strength, Ultimate, Longitudinal
  • Tensile Strength, Ultimate, Transverse
  • Tensile Strength, Ultimate, Transverse
  • Tensile Strength, Ultimate, Longitudinal
  • Tensile Strength, Yield, Longitudinal
  • Tensile Strength, Yield, Transverse
  • Tensile Strength, Yield, Transverse
  • Tensile Strength, Yield, Longitudinal
  • Tensile Strength, Yield, Longitudinal
  • Tensile Strength, Yield, Transverse
  • Tensile Strength, Yield, Longitudinal
  • Tensile Strength, Yield, Transverse
  • Elongation at Break, Longitudinal
  • Elongation at Break, Transverse
  • Elongation at Break, Transverse; A5
  • Elongation at Break, Transverse; A5
  • Elongation at Break, Longitudinal; A5
  • Elongation at Break, Longitudinal; A5
  • Elongation at Break, Longitudinal; A5
  • Elongation at Break, Transverse; A5
  • Elongation at Break, Longitudinal; A5
  • Elongation at Break, Transverse; A5
  • Reduction of Area, Transverse
  • Reduction of Area, Longitudinal
  • Reduction of Area, Transverse
  • Reduction of Area, Longitudinal
  • Reduction of Area, Transverse
  • Reduction of Area, Longitudinal
  • Modulus of Elasticity, Transverse
  • Modulus of Elasticity, Transverse
  • Modulus of Elasticity, Transverse
  • Modulus of Elasticity, Transverse
  • Modulus of Elasticity, Transverse
  • Modulus of Elasticity, Transverse
  • Modulus of Elasticity, Longitudinal, Sheet
  • Modulus of Elasticity, Transverse, Sheet
  • Flexural Strength, Three Point Bend; Sheet; 85° Bending Angle
  • Flexural Yield Strength, Three Point Bend; sheet; 0.2% Offset
  • Fracture Toughness
  • Impact, J/cm²; Notched DVKM Sample; Sheet
  • Electrical Resistivity
  • Magnetic Coercive Force, Hc
  • Curie Temperature
  • CTE, linear
  • CTE, linear, Longitudinal
  • CTE, linear, Longitudinal
  • CTE, linear, Longitudinal
  • CTE, linear, Longitudinal
  • CTE, linear, Transverse to Flow
  • CTE, linear, Transverse to Flow
  • CTE, linear, Transverse to Flow
  • CTE, linear, Transverse to Flow
  • CTE, linear, Transverse to Flow
  • CTE, linear, Transverse to Flow
  • CTE, linear, Transverse to Flow
  • CTE, linear, Transverse to Flow
  • Specific Heat Capacity
  • Specific Heat Capacity
  • Specific Heat Capacity
  • Specific Heat Capacity
  • Specific Heat Capacity
  • Specific Heat Capacity
  • Thermal Conductivity
  • Thermal Conductivity
  • Thermal Conductivity
  • Thermal Conductivity
  • Thermal Conductivity
  • Thermal Conductivity
  • Melting Point
  • Maximum Service Temperature, Air
  • Aluminum, Al
  • Chromium, Cr
  • Iron, Fe, As Remainder
  • Titanium, Ti
  • Y2O3
  
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Manufacturer Notes:
Schwarzkopf Technologies, a Plansee Affiliated Company

Category Notes
none

**
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