AA 7075 Aluminum Alloy

Aluminum

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Family: Aluminum Alloy

Zinc Alloy (Al-Zn). AA designation 7075.

Performance Ratings

Strength
6/10
Corrosion Resistance
6/10
Lightweight
9/10
Machinability
8/10
Cost Efficiency
7/10
Temperature Resistance
4/10

Performance Radar

Strength 6/10 Corrosion Res. 6/10 Lightweight 9/10 Machinability 8/10 Affordability 7/10 Heat Res. 4/10

Composition

Al Zn AA 7075 Alumin…
Al 89,81%
Zn 5,6%
Mg 2,5%
Cu 1,59%
Other 0,86%

Mechanical Properties

Tensile Strength 533.0 MPa
Yield Strength 461.0 MPa
Elongation 11.0%
Hardness (Rockwell)

Chemical Composition

Element Percentage (%)
V 0,01
Al 89,81
Cr 0,2
Cu 1,59
Fe 0,26
Mg 2,5
Mn 0,08
Ni 0,006
Pb 0,021
Sb 0,002
Sc 0,1
Si 0,12
Ti 0,04
Zn 5,6
Zr 0,02

Where to Buy AA 7075 Aluminum Alloy

Description

AA 7075 is the most iconic high-strength aerospace aluminum alloy, containing 5.1–6.1% zinc, 2.1–2.9% magnesium, and 1.2–2.0% copper, achieving yield strengths exceeding 500 MPa in T6 temper. It provides an exceptional strength-to-weight ratio that made it the benchmark aerospace structural alloy since its development in 1943, though it requires careful temper selection to manage stress corrosion cracking susceptibility. Applications include aircraft structural components, military equipment, bicycle frames, and high-performance sporting goods.

Frequently Asked Questions

What is AA 7075 Aluminum Alloy?
AA 7075 Aluminum Alloy is a aluminum alloy alloy based on aluminum. Zinc Alloy (Al-Zn). AA designation 7075.
What is the composition of AA 7075 Aluminum Alloy?
AA 7075 Aluminum Alloy contains V (0.01%), Al (89.81%), Cr (0.2%), Cu (1.59%), Fe (0.26%), Mg (2.5%), Mn (0.08%), Ni (0.006%).
What is the tensile strength of AA 7075 Aluminum Alloy?
AA 7075 Aluminum Alloy has a tensile strength of 533.0 MPa and a yield strength of 461.0 MPa.
What are the applications of AA 7075 Aluminum Alloy?
AA 7075 Aluminum Alloy is commonly used in aircraft structural components, aerospace fasteners, automotive body panels, architectural cladding, heat sinks & thermal.

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