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Cymat A35620SC 030SS Stabilized Aluminum Foam
Categories: Metal; Metal Foam, Mesh, or Honeycomb; Metal Matrix Composite; Nonferrous Metal; Aluminum Alloy; Other Engineering Material; Composite Core Material

Material Notes: Description: Cymat A35620SC 030SS stabilized aluminum foam (SAF) is a closed cell aluminum foam formed from A356 aluminum alloy with a density of 0.3 g/cm3. The mechanical properties of SAF make it ideal for many varied applications. These properties include:
  • High strength and stiffness to-weight ratio
  • Strain rate insensitive (the speed of loading does not affect the strength)
  • Notch insensitive (holes do not affect material strength)
  • Constant properties over time, temperature and moisture range
  • High mechanical energy absorption in all directions
  • Not flammable or susceptible to environmental degradation
  • Acoustic and thermal insulation properties
  • Electromagnetic insulation properties
  • Recyclable

Applications:

  • Energy absorption for vehicle crashworthiness
  • Energy absorption for blast protection
  • Structural stability
  • Core for a casting

Information provided by Cymat.

Key Words: SAF
Vendors:
Available Properties
  • Density
  • Cell Length, Average Cell Size
  • Tensile Strength, Ultimate, Through Plane Direction
  • Tensile Strength, Ultimate, Foaming Direction
  • Tensile Strength, Ultimate, In Plane Direction
  • Elongation at Break, Through Plane Direction
  • Elongation at Break, Foaming and In Plane Directions
  • Tensile Modulus, Through Plane Direction
  • Tensile Modulus, Foaming Direction
  • Tensile Modulus, In Plane Direction
  • Compressive Yield Strength, Through Plane Direction
  • Compressive Strength, In the Foaming Direction
  • Compressive Strength, In the In Plane Direction
  • Compressive Modulus, Loading, In the Through Plane Direction
  • Compressive Modulus, Loading, In the Foaming Direction
  • Compressive Modulus, Loading, In the In Plane Direction
  • Compressive Modulus, Unloading, In the Through Plane Direction
  • Compressive Modulus, Unloading, In the Foaming Direction
  • Compressive Modulus, Unloading, In the In Plane Direction
  • Shear Modulus
  • Shear Strength
  • Impact, MJ/m3, Volumetric Energy Absorption (compression) at 20% Strain in the Through Plane Direction
  • Impact, MJ/m3, Volumetric Energy Absorption (compression) at 20% Strain in the Foaming Direction
  • Impact, MJ/m3, Volumetric Energy Absorption (compression) at 20% Strain in the In Plane Direction
  • Impact, kJ/kg, Specific Energy Absorption (compression) at 20% Strain in the Through Plane Direction
  • Impact, MJ/m3, Volumetric Energy Absorption (compression) at 50% Strain in the Through Plane Direction
  • Impact, MJ/m3, Volumetric Energy Absorption (compression) at 50% Strain in the Foaming Direction
  • Impact, MJ/m3, Volumetric Energy Absorption (compression) at 50% Strain in the In Plane Direction
  • Impact, kJ/kg, Specific Energy Absorption (compression) at 20% Strain in the Foaming Direction
  • Impact, kJ/kg, Specific Energy Absorption (compression) at 20% Strain in the In Plane Direction
  • Impact, kJ/kg, Specific Energy Absorption (compression) at 50% Strain in the Through Plane Direction
  • Impact, kJ/kg, Specific Energy Absorption (compression) at 50% Strain in the Foaming Direction
  • Impact, kJ/kg, Specific Energy Absorption (compression) at 50% Strain in the In Plane Direction
  • Thermal Conductivity
  • Maximum Service Temperature, Air
  • Minimum Service Temperature, Air
  
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