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Magnesium
Magnesium Elektron - Service & Innovation in Magnesium
Magnesium Elektron Elektron® WE54 Magnesium Casting Alloy, UNS M18410
Categories: Metal; Nonferrous Metal; Magnesium Alloy

Material Notes: ELEKTRON WE54 is a high strength fully heat treatable magnesium based casting alloy for use at temperatures up to 300°C. The alloy develops high strength properties at elevated temperatures, without containing either silver or thorium.

Applications: The excellent retention of properties at elevated temperatures and improved corrosion resistance will be of interest to designers of power systems, transmissions, missiles, high performance cars and other high technology applications. Prolonged use of this alloy (ie in excess of 1000 hours) at temperatures in the range 100°C–250°C may result in the loss of ductility. An alternative alloy is ELEKTRON WE43.

Information provided by Magnesium Elektron.

Key Words: AECMA MG-C96001; AMS 4426; ASTM B80 WE54A-T6; BS2970 MAG14-TF; UNS M18410; ISO 16220: MC95310
Vendors:
Available Properties
  • Specific Gravity
  • Bulk Density, Value supplied by MatWeb
  • Hardness, Brinell
  • Hardness, Vickers
  • Tensile Strength at Break, Min Design Specification per ISO 16220
  • Tensile Strength at Break
  • Tensile Strength at Break
  • Tensile Strength at Break
  • Tensile Strength at Break
  • Tensile Strength at Break
  • Tensile Strength at Break
  • Tensile Strength at Break, samples from USA
  • Tensile Strength at Break, samples from Germany
  • Tensile Strength at Break, samples from Canada
  • Tensile Strength at Break, samples from UK
  • Tensile Strength, Yield, Min Design Specification per ISO 16220
  • Tensile Strength, Yield
  • Tensile Strength, Yield
  • Tensile Strength, Yield
  • Tensile Strength, Yield
  • Tensile Strength, Yield
  • Tensile Strength, Yield
  • Tensile Strength, Yield, samples from USA
  • Tensile Strength, Yield, samples from UK
  • Tensile Strength, Yield, samples from Canada
  • Tensile Strength, Yield, samples from Germany
  • Elongation at Break, Min Design Specification per ISO 16220
  • Elongation at Break
  • Elongation at Break
  • Elongation at Break
  • Elongation at Break
  • Elongation at Break
  • Elongation at Break
  • Elongation at Break, samples from Canada
  • Elongation at Break, samples from Germany
  • Elongation at Break, samples from USA
  • Elongation at Break, samples from UK
  • Creep Strength, 0.2% creep
  • Creep Strength, 0.2% creep
  • Creep Strength, 0.2% creep
  • Creep Strength, 0.2% creep
  • Modulus of Elasticity
  • Compressive Yield Strength
  • Compressive Strength
  • Poissons Ratio
  • Fatigue Strength, Rotating bend
  • Fatigue Strength, Rotating bend
  • Fatigue Strength, Rotating bend
  • Fatigue Strength, Rotating bend
  • Fatigue Strength, Rotating bend
  • Fatigue Strength, Rotating bend
  • Fatigue Strength, Rotating bend
  • Fatigue Strength, Unnotched Rotating Bend
  • Fatigue Strength, Rotating bend
  • Fatigue Strength, Rotating bend
  • Fatigue Strength, Rotating bend
  • Fracture Toughness, KIC
  • Shear Strength
  • Electrical Resistivity
  • CTE, linear
  • Specific Heat Capacity
  • Thermal Conductivity
  • Melting Point
  • Solidus
  • Liquidus
  • Shrinkage, Pattern Makers Shrinkage Factor
  • Magnesium, Mg, As Balance
  • Neodymium, Nd
  • Rare Earths, mainly Yb, Er, Dy, and Gd.
  • Yttrium, Y
  • Zirconium, Zr
  
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