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Cymat A35620SC 030SS Stabilized Aluminum Foam

Category Metal , Metal Foam, Mesh, or Honeycomb , Metal Matrix Composite , Nonferrous Metal , Aluminum Alloy , Other Engineering Material , Composite Core Material
Manufacturer Cymat
Trade Name
Port Ningbo port,China
Trade Terms FOB, CFR, CIF
Payment Terms L/C, T/T, Western Union
Download PDF Cymat A35620SC 030SS Stabilized Aluminum Foam.pdf
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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 ratioStrain 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 rangeHigh mechanical energy absorption in all directionsNot flammable or susceptible to environmental degradationAcoustic and thermal insulation propertiesElectromagnetic insulation propertiesRecyclableApplications: Energy absorption for vehicle crashworthinessEnergy absorption for blast protectionStructural stabilityCore for a castingInformation provided by Cymat.
Physical Properties Metric English Comments
Density 0.300 g/cc
0.0108 lb/in³
Cell Length 4.00 mm
0.157 in
Average Cell Size
Mechanical Properties Metric English Comments
Tensile Strength, Ultimate 2.00 MPa
290 psi
Through Plane Direction
2.50 MPa
363 psi
Foaming Direction
3.00 MPa
435 psi
In Plane Direction
Elongation at Break 0.20 %
0.20 %
Through Plane Direction
0.40 %
0.40 %
Foaming and In Plane Directions
Tensile Modulus 1.00 GPa
145 ksi
Through Plane Direction
1.10 GPa
160 ksi
Foaming Direction
1.20 GPa
174 ksi
In Plane Direction
Compressive Strength 1.10 MPa
160 psi
Lower Yield in the Through Plane Direction
2.40 MPa
348 psi
Upper Yield in the Through Plane Direction
3.00 MPa
435 psi
In the Foaming Direction
4.00 MPa
580 psi
In the In Plane Direction
Compressive Modulus 0.300 GPa
43.5 ksi
Loading, In the Through Plane Direction
0.460 GPa
66.7 ksi
Loading, In the Foaming Direction
0.575 GPa
83.4 ksi
Loading, In the In Plane Direction
0.675 GPa
97.9 ksi
Unloading, In the Through Plane Direction
1.00 GPa
145 ksi
Unloading, In the Foaming Direction
1.20 GPa
174 ksi
Unloading, In the In Plane Direction
Shear Modulus 1.00 GPa
145 ksi
Shear Strength 1.00 MPa
145 psi
Impact 0.30
0.30
MJ/m<sup>3</sup>, Volumetric Energy Absorption (compression) at 20% Strain in the Through Plane Direction
0.50
0.50
MJ/m<sup>3</sup>, Volumetric Energy Absorption (compression) at 20% Strain in the Foaming Direction
0.80
0.80
MJ/m<sup>3</sup>, Volumetric Energy Absorption (compression) at 20% Strain in the In Plane Direction
1.2
1.2
kJ/kg, Specific Energy Absorption (compression) at 20% Strain in the Through Plane Direction
1.4
1.4
MJ/m<sup>3</sup>, Volumetric Energy Absorption (compression) at 50% Strain in the Through Plane Direction
1.5
1.5
MJ/m<sup>3</sup>, Volumetric Energy Absorption (compression) at 50% Strain in the Foaming Direction
1.7
1.7
MJ/m<sup>3</sup>, Volumetric Energy Absorption (compression) at 50% Strain in the In Plane Direction
1.7
1.7
kJ/kg, Specific Energy Absorption (compression) at 20% Strain in the Foaming Direction
2.7
2.7
kJ/kg, Specific Energy Absorption (compression) at 20% Strain in the In Plane Direction
4.7
4.7
kJ/kg, Specific Energy Absorption (compression) at 50% Strain in the Through Plane Direction
5.0
5.0
kJ/kg, Specific Energy Absorption (compression) at 50% Strain in the Foaming Direction
5.7
5.7
kJ/kg, Specific Energy Absorption (compression) at 50% Strain in the In Plane Direction
Thermal Properties Metric English Comments
Thermal Conductivity 3.46 W/m-K
24.0 BTU-in/hr-ft²-°F
Maximum Service Temperature, Air 300 °C
572 °F
Minimum Service Temperature, Air -80.0 °C
-112 °F
Descriptive Properties Value Comments
Densification Strain 72 %
Shear Failure Strain 0.3 %
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