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Master Bond adhesives
DWA 6092/SiC/25p-T6 Aluminum SiC Metal-Matrix-Composite (Al MMC), Extruded
Categories: Metal; Metal Matrix Composite; Nonferrous Metal; Aluminum Alloy; 6000 Series Aluminum Alloy

Material Notes: 6092/SiC/25p is a powder metallurgy Al MMC comprised of AA6092 aluminum and 25 Vol% Silicon Carbide particles. It is available in vacuum-hot-pressed billet, extruded, forged and sheet product forms. It is suggested for aerospace applications such as helicopter gearbox bearing liners. Its combination of enhanced strength and stiffness, along with high hardness and moderately low CTE cannot be matched by monolithic aluminum alloys.

Information provided by DWA Aluminum Composites.

Key Words: AlSiC MMC
Vendors:
Available Properties
  • Density
  • Tensile Strength, Ultimate, LT Orientation
  • Tensile Strength, Ultimate, LT Orientation
  • Tensile Strength, Ultimate, LT Orientation
  • Tensile Strength, Ultimate, LT Orientation
  • Tensile Strength, Ultimate, L Orientation
  • Tensile Strength, Ultimate, L Orientation
  • Tensile Strength, Ultimate, L Orientation
  • Tensile Strength, Ultimate, LT Orientation
  • Tensile Strength, Ultimate, L Orientation
  • Tensile Strength, Ultimate, L Orientation
  • Tensile Strength, Yield, LT Orientation
  • Tensile Strength, Yield, LT Orientation
  • Tensile Strength, Yield, LT Orientation
  • Tensile Strength, Yield, L Orientation
  • Tensile Strength, Yield, L Orientation
  • Tensile Strength, Yield, L Orientation
  • Tensile Strength, Yield, LT Orientation
  • Tensile Strength, Yield, LT Orientation
  • Tensile Strength, Yield, L Orientation
  • Tensile Strength, Yield, L Orientation
  • Elongation at Break, LT Orientation
  • Elongation at Break, LT Orientation
  • Elongation at Break, LT Orientation
  • Elongation at Break, LT Orientation
  • Elongation at Break, L Orientation
  • Elongation at Break, L Orientation
  • Elongation at Break, L Orientation
  • Elongation at Break, L Orientation
  • Elongation at Break, L Orientation
  • Elongation at Break, LT Orientation
  • Tensile Modulus, LT Orientation
  • Tensile Modulus, LT Orientation
  • Tensile Modulus, LT Orientation
  • Tensile Modulus, LT Orientation
  • Tensile Modulus, LT Orientation
  • Tensile Modulus, L Orientation
  • Tensile Modulus, L Orientation
  • Tensile Modulus, L Orientation
  • Tensile Modulus, L Orientation
  • Tensile Modulus, L Orientation
  • Compressive Yield Strength, L Orientation
  • Compressive Yield Strength, LT Orientation
  • Compressive Yield Strength, LT Orientation
  • Compressive Yield Strength, LT Orientation
  • Compressive Yield Strength, L Orientation
  • Compressive Yield Strength, L Orientation
  • Compressive Yield Strength, LT Orientation
  • Compressive Yield Strength, LT Orientation
  • Compressive Yield Strength, L Orientation
  • Compressive Yield Strength, L Orientation
  • Compressive Modulus, LT Orientation
  • Compressive Modulus, LT Orientation
  • Compressive Modulus, LT Orientation
  • Compressive Modulus, LT Orientation
  • Compressive Modulus, LT Orientation
  • Compressive Modulus, L Orientation
  • Compressive Modulus, L Orientation
  • Compressive Modulus, L Orientation
  • Compressive Modulus, L Orientation
  • Compressive Modulus, L Orientation
  • Ultimate Bearing Strength, L Orientation, (e/D= 1.5)
  • Ultimate Bearing Strength, LT Orientation, (e/D= 1.5)
  • Ultimate Bearing Strength, L Orientation, (e/D= 1.5)
  • Ultimate Bearing Strength, L Orientation, (e/D= 1.5)
  • Ultimate Bearing Strength, LT Orientation, (e/D= 1.5)
  • Ultimate Bearing Strength, LT Orientation, (e/D= 1.5)
  • Ultimate Bearing Strength, LT Orientation, (e/D= 1.5)
  • Ultimate Bearing Strength, L Orientation, (e/D= 1.5)
  • Ultimate Bearing Strength, L Orientation, (e/D= 1.5)
  • Ultimate Bearing Strength, LT Orientation, (e/D= 1.5)
  • Ultimate Bearing Strength, L Orientation, (e/D= 2.0)
  • Ultimate Bearing Strength, L Orientation, (e/D= 2.0)
  • Ultimate Bearing Strength, LT Orientation, (e/D= 2.0)
  • Ultimate Bearing Strength, LT Orientation, (e/D= 2.0)
  • Ultimate Bearing Strength, L Orientation, (e/D= 2.0)
  • Ultimate Bearing Strength, L Orientation, (e/D= 2.0)
  • Ultimate Bearing Strength, L Orientation, (e/D= 2.0)
  • Ultimate Bearing Strength, LT Orientation, (e/D= 2.0)
  • Ultimate Bearing Strength, LT Orientation, (e/D= 2.0)
  • Ultimate Bearing Strength, LT Orientation, (e/D= 2.0)
  • Bearing Yield Strength, L Orientation, (e/D= 1.5)
  • Bearing Yield Strength, L Orientation, (e/D= 1.5)
  • Bearing Yield Strength, LT Orientation, (e/D= 1.5)
  • Bearing Yield Strength, LT Orientation, (e/D= 1.5)
  • Bearing Yield Strength, L Orientation, (e/D= 1.5)
  • Bearing Yield Strength, LT Orientation, (e/D= 1.5)
  • Bearing Yield Strength, LT Orientation, (e/D= 1.5)
  • Bearing Yield Strength, L Orientation, (e/D= 1.5)
  • Bearing Yield Strength, L Orientation, (e/D= 1.5)
  • Bearing Yield Strength, LT Orientation, (e/D= 1.5)
  • Bearing Yield Strength, L Orientation, (e/D= 2.0)
  • Bearing Yield Strength, LT Orientation, (e/D= 2.0)
  • Bearing Yield Strength, L Orientation, (e/D= 2.0)
  • Bearing Yield Strength, LT Orientation, (e/D= 2.0)
  • Bearing Yield Strength, LT Orientation, (e/D= 2.0)
  • Bearing Yield Strength, L Orientation, (e/D= 2.0)
  • Bearing Yield Strength, L Orientation, (e/D= 2.0)
  • Bearing Yield Strength, L Orientation, (e/D= 2.0)
  • Bearing Yield Strength, LT Orientation, (e/D= 2.0)
  • Bearing Yield Strength, LT Orientation, (e/D= 2.0)
  • Poissons Ratio
  • Fatigue Strength, R=0.1, Kt= 3 (Square Wave)
  • Fatigue Strength, R=0.1, Kt= 3 (Square Wave)
  • Fatigue Strength, R=0.1, Kt= 3 (Square Wave)
  • Fatigue Strength, R=0.1, Kt= 3 (Square Wave)
  • Fatigue Strength, R=0.1, Kt= 3 (Square Wave)
  • Fatigue Strength, Notched (R= 0.1, Kt= 2.7)
  • Fatigue Strength, Notched (R= 0.1, Kt= 2.7)
  • Fatigue Strength, Notched (R= 0.1, Kt= 2.7)
  • Fatigue Strength, Notched (R= 0.1, Kt= 2.7)
  • Fatigue Strength, Notched (R= 0.1, Kt= 2.7)
  • Fatigue Strength, Notched (R= 0.1, Kt= 2.7)
  • Fatigue Strength, Notched (R= 0.1, Kt= 2.7)
  • Fatigue Strength, Notched (R= 0.1, Kt= 2.7)
  • Fatigue Strength, Notched (R= 0.1, Kt= 2.7)
  • Fatigue Strength, Smooth (R= 0.1, Kt= 1.0); No Failure
  • Fatigue Strength, Smooth (R= 0.1, Kt= 1.0)
  • Fatigue Strength, Smooth (R= 0.1, Kt= 1.0)
  • Fatigue Strength, Notched (R= 0.1, Kt= 2.7)
  • Fatigue Strength, Smooth (R= 0.1, Kt= 1.0)
  • Fatigue Strength, Smooth (R= 0.1, Kt= 1.0)
  • Fatigue Strength, Smooth (R= 0.1, Kt= 1.0)
  • Shear Strength, LT Orientation
  • Shear Strength, LT Orientation
  • Shear Strength, LT Orientation
  • Shear Strength, LT Orientation
  • Shear Strength, LT Orientation
  • Shear Strength, L Orientation
  • Shear Strength, L Orientation
  • Shear Strength, L Orientation
  • Shear Strength, L Orientation
  • Shear Strength, L Orientation
  • CTE, linear, L Orientation
  • Aluminum, Al, As Balance, Metal Alloy Basis
  • Copper, Cu, Metal Alloy Basis
  • Iron, Fe, Metal Alloy Basis
  • Magnesium, Mg, Metal Alloy Basis
  • Other, each, Metal Alloy Basis
  • Other, total, Metal Alloy Basis
  • Oxygen, O, Metal Alloy Basis
  • Silicon, Si, Metal Alloy Basis
  • Titanium, Ti, Metal Alloy Basis
  • Zinc, Zn, Metal Alloy Basis
  
Property Data

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