MatWeb - Material Property Data Advertise with MatWeb!     Register Now
Data sheets for over 180,000 metals, plastics, ceramics, and composites.
MatWeb - Material Property Data HOME  •   SEARCH  •   TOOLS  •   SUPPLIERS  •   FOLDERS  •   ABOUT US  •   FAQ  •   LOG IN    
Recently Viewed Materials (most recent at top)  

Login to see your most recently viewed materials here.

Or if you don't have an account with us yet, then click here to register.

  Searches:   Advanced  | Category  | Property  | Metals  | Trade Name  | Manufacturer  | Recently Viewed Materials
  

Ensinger PEI

(Viewing data as-entered. Click here to return)
Constellium Fibral® Cast Aluminum Sliced Plate
Categories: Metal; Nonferrous Metal; Aluminum Alloy; 5000 Series Aluminum Alloy; Aluminum Casting Alloy

Material Notes: Fibral® has been specifically developed for low–pressure processing (thermoforming, RTM) of plastics and their composites. The material can also be used for prototype injection moulds. The material properties are enhanced by its stringent casting process which considerably reduces porosity throughout the thickness of the plate.

Information provided by manufacturer

Key Words: EN AW-5083; AlMg4.5Mn0.7
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 PropertiesOriginal ValueComments
Density 2.66 g/cc
 
Mechanical PropertiesOriginal ValueComments
Hardness, Brinell 70
@Thickness 150 - 500 mm
 70
@Thickness 500 - 600 mm
Tensile Strength >= 210 MPa
@Thickness 150 - 500 mm
Temper O3
 >= 210 MPa
@Thickness 500 - 600 mm
Temper O3
 235 MPa
@Thickness 150 - 500 mm
Typical Strength
 235 MPa
@Thickness 500 - 600 mm
Typical Strength
Tensile Strength, Yield >= 110 MPa
@Strain 0.2 %,
Thickness 150 - 500 mm
Temper O3
 >= 110 MPa
@Strain 0.2 %,
Thickness 500 - 600 mm
Temper O3
 115 MPa
@Strain 0.2 %,
Thickness 150 - 500 mm
Typical Strength
 115 MPa
@Strain 0.2 %,
Thickness 500 - 600 mm
Typical Strength
Elongation at Break >= 5.0 %
@Thickness 150 - 500 mm
Temper O3
 >= 5.0 %
@Thickness 500 - 600 mm
Temper O3
 9.5 %
@Thickness 150 - 500 mm
Typical Elongation
 9.5 %
@Thickness 500 - 600 mm
Typical Elongation
Modulus of Elasticity 71.0 GPa
 
Electrical PropertiesOriginal ValueComments
Electrical Resistivity 0.00000590 - 0.00000660 ohm-cm
 
Thermal PropertiesOriginal ValueComments
CTE, linear 23.8 µm/m-°C
@Temperature 20.0 - 100 °C
Thermal Conductivity 105 - 120 W/m-K
 
Component Elements PropertiesOriginal ValueComments
Aluminum, Al 92.55 - 95.55 %as balance
Chromium, Cr 0.050 - 0.25 %
Copper, Cu <= 0.10 %
Iron, Fe <= 0.40 %
Magnesium, Mg 4.0 - 4.9 %
Manganese, Mn 0.40 - 1.0 %
Silicon, Si <= 0.40 %
Zinc, Zn <= 0.25 %
Zr+Ti <= 0.15 %

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 go back to viewing the property data in MatWeb's normal format.

Users viewing this material also viewed the following:
Aluminum 5052-H32
Aluminum 5052-H19 Foil
ALIMEX ACP 5080R Aluminum Cast Material
Aluminum 5052-H34
Aluminum 5052-H36

NCONS020 / 160283

Proto3000 – 3D Engineering Solutions

Please read our License Agreement regarding materials data and our Privacy Policy. Questions or comments about MatWeb? Please contact us at webmaster@matweb.com. We appreciate your input.

The contents of this web site, the MatWeb logo, and "MatWeb" are Copyright 1996-2024 by MatWeb, LLC. MatWeb is intended for personal, non-commercial use. The contents, results, and technical data from this site may not be reproduced either electronically, photographically or substantively without permission from MatWeb, LLC.