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Aluminium 6061 Angle is an Alloy from the 6000 series of aluminium alloys and comes primarily in two types – the T4 temper and the T6 temper. It consists of 97.9% aluminium, 1% silicon, 0.6% copper, 0.2 magnesium, iron at a maximum level of .7%, manganese no more than 0.05%, chromium no more than 0.04%, zinc no more than .25%, titanium at a maximum concentration of .15%. It is considered to be one of the most versatile heat-treatable alloys due to its good strength characteristics and resistance to stress corrosion cracking and fatigue corrosion cracking while still being malleable enough for use in many forms such as extruded shapes or plates, bars/rods or formed into intricate designs!
Aluminium 6061 angle is widely used in construction, engineering, and aerospace applications due to its strong yet lightweight properties. It has excellent corrosion resistance, easy machinability, weldability, strength-to-weight ratio and an excellent appearance when anodized. This aluminium alloy provides a good combination of strength and formability, making it ideal for use in structures with stringent requirements, such as aircraft. Additionally, because of its high fatigue strength, it is commonly used on bridges or other structural components subjected to dynamic stress loads over time.
Aluminium 6061 Angle is an Alloy from the 6000 series of aluminium alloys and comes primarily in two types – the T4 temper and the T6 temper. It consists of 97.9% aluminium, 1% silicon, 0.6% copper, 0.2 magnesium, iron at a maximum level of .7%, manganese no more than 0.05%, chromium no more than 0.04%, zinc no more than .25%, titanium at a maximum concentration of .15%. It is considered to be one of the most versatile heat-treatable alloys due to its good strength characteristics and resistance to stress corrosion cracking and fatigue corrosion cracking while still being malleable enough for use in many forms such as extruded shapes or plates, bars/rods or formed into intricate designs!
Aluminium 6061 angle is widely used in construction, engineering, and aerospace applications due to its strong yet lightweight properties. It has excellent corrosion resistance, easy machinability, weldability, strength-to-weight ratio and an excellent appearance when anodized. This aluminium alloy provides a good combination of strength and formability, making it ideal for use in structures with stringent requirements, such as aircraft. Additionally, because of its high fatigue strength, it is commonly used on bridges or other structural components subjected to dynamic stress loads over time.
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