Brief: Watch this overview to discover why many professionals pay attention to the 7075 Aluminum Round Bar. This video showcases its exceptional strength, 33% IACS electrical conductivity, and 130 W/mK thermal conductivity, ideal for aerospace and defense applications. Learn how its 11% elongation and 83,000 Psi tensile strength make it a top choice for high-performance industries.
Related Product Features:
The 7075 Aluminum Round Bar features 33% IACS electrical conductivity, ensuring efficient electrical performance.
With a thermal conductivity of 130 W/mK, it excels in heat dissipation for thermal management applications.
Its tensile strength of 83,000 Psi makes it ideal for high-stress environments like aerospace and defense.
The round shape provides versatility for machining and fabrication processes.
Contains 6%-8% Zinc, enhancing its durability and resistance to corrosion.
Available in a 12-foot length, offering ample material for various industrial needs.
T6 temper ensures excellent formability and machinability for precision components.
Good fatigue strength and shear strength of 48,000 Psi make it suitable for heavy-duty applications.
Faqs:
What industries commonly use the 7075 Aluminum Round Bar?
The 7075 Aluminum Round Bar is widely used in aerospace, defense, automotive, and marine industries due to its high strength and lightweight properties.
What are the key benefits of the 7075 Aluminum Round Bar's thermal conductivity?
Its 130 W/mK thermal conductivity allows for efficient heat dissipation, making it ideal for applications requiring thermal management, such as electronic components and high-temperature environments.
How does the 7075 Aluminum Round Bar perform under high-stress conditions?
With a tensile strength of 83,000 Psi and good fatigue strength, the 7075 Aluminum Round Bar performs reliably under high-stress conditions, making it suitable for structural and mechanical applications.
Is the 7075 Aluminum Round Bar customizable for specific applications?
Yes, the 7075 Aluminum Round Bar can be customized in terms of length, temper, and other specifications to meet the specific needs of aerospace, defense, and other high-performance industries.