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Elmet Technologies

Constellium Alumold® 500 Forged Aluminum
Categories: Metal; Nonferrous Metal; Aluminum Alloy; 5000 Series Aluminum Alloy

Material Notes: Forged thick blocks in Alumold® 500 have been developed to provide high and consistent strength across the thickness, good dimensional stability and excellent machinability, in order to respond to the high requirements of the applications in plastics transformation. Typical applications include compression or injection moulds for plastics.

Information provided by manufacturer

Key Words: IS 5505
Vendors: No vendors are listed for this material. Please click here if you are a supplier and would like information on how to add your listing to this material.
 
Physical PropertiesMetricEnglishComments
Density 2.82 g/cc0.102 lb/in³
 
Mechanical PropertiesMetricEnglishComments
Hardness, Brinell  150
@Thickness 450 - 700 mm
150
@Thickness 17.7 - 27.6 in
long-transverse direction
 160
@Thickness 400 - 450 mm
160
@Thickness 15.7 - 17.7 in
long-transverse direction
 165
@Thickness 300 - 400 mm
165
@Thickness 11.8 - 15.7 in
long-transverse direction
Tensile Strength  >= 410 MPa
@Thickness 450 - 700 mm
>= 59500 psi
@Thickness 17.7 - 27.6 in
long-transverse direction
 >= 430 MPa
@Thickness 400 - 450 mm
>= 62400 psi
@Thickness 15.7 - 17.7 in
long-transverse direction
 >= 450 MPa
@Thickness 300 - 400 mm
>= 65300 psi
@Thickness 11.8 - 15.7 in
long-transverse direction
 450 MPa
@Thickness 400 - 450 mm
65300 psi
@Thickness 15.7 - 17.7 in
long-transverse direction
 480 MPa
@Thickness 450 - 700 mm
69600 psi
@Thickness 17.7 - 27.6 in
long-transverse direction
 520 MPa
@Thickness 300 - 400 mm
75400 psi
@Thickness 11.8 - 15.7 in
long-transverse direction
Tensile Strength, Yield  >= 340 MPa
@Strain 0.2 %,
Thickness 450 - 700 mm
>= 49300 psi
@Strain 0.2 %,
Thickness 17.7 - 27.6 in
long-transverse direction
 >= 350 MPa
@Strain 0.2 %,
Thickness 400 - 450 mm
>= 50800 psi
@Strain 0.2 %,
Thickness 15.7 - 17.7 in
long-transverse direction
 >= 370 MPa
@Strain 0.2 %,
Thickness 300 - 400 mm
>= 53700 psi
@Strain 0.2 %,
Thickness 11.8 - 15.7 in
long-transverse direction
 420 MPa
@Strain 0.2 %,
Thickness 450 - 700 mm
60900 psi
@Strain 0.2 %,
Thickness 17.7 - 27.6 in
long-transverse direction
 460 MPa
@Strain 0.2 %,
Thickness 300 - 400 mm
66700 psi
@Strain 0.2 %,
Thickness 11.8 - 15.7 in
long-transverse direction
 460 MPa
@Strain 0.2 %,
Thickness 400 - 450 mm
66700 psi
@Strain 0.2 %,
Thickness 15.7 - 17.7 in
long-transverse direction
Elongation at Break  >= 3.0 %
@Thickness 300 - 400 mm
>= 3.0 %
@Thickness 11.8 - 15.7 in
long-transverse direction
 >= 3.0 %
@Thickness 400 - 450 mm
>= 3.0 %
@Thickness 15.7 - 17.7 in
long-transverse direction
 >= 3.0 %
@Thickness 450 - 700 mm
>= 3.0 %
@Thickness 17.7 - 27.6 in
long-transverse direction
 7.0 %
@Thickness 400 - 450 mm
7.0 %
@Thickness 15.7 - 17.7 in
long-transverse direction
 7.0 %
@Thickness 450 - 700 mm
7.0 %
@Thickness 17.7 - 27.6 in
long-transverse direction
 8.0 %
@Thickness 300 - 400 mm
8.0 %
@Thickness 11.8 - 15.7 in
long-transverse direction
Modulus of Elasticity 73.0 GPa10600 ksicompression
Tensile Modulus 72.0 GPa10400 ksi
Poissons Ratio 0.330.33
 
Thermal PropertiesMetricEnglishComments
CTE, linear 23.7 µm/m-°C
@Temperature 20.0 - 100 °C
13.2 µin/in-°F
@Temperature 68.0 - 212 °F
Specific Heat Capacity 0.857 J/g-°C0.205 BTU/lb-°F
Thermal Conductivity 153 W/m-K1060 BTU-in/hr-ft²-°F
 
Descriptive Properties
Thermal Diffusivity63 mm²/s

Some of the values displayed above may have been converted from their original units and/or rounded in order to display the information in a consistent format. Users requiring more precise data for scientific or engineering calculations can click on the property value to see the original value as well as raw conversions to equivalent units. We advise that you only use the original value or one of its raw conversions in your calculations to minimize rounding error. We also ask that you refer to MatWeb's terms of use regarding this information. Click here to view all the property values for this datasheet as they were originally entered into MatWeb.

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