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  • 6061 Aluminum Hex Bar, Unpolished (Mill) Finish, T6 Temper, ASTM B221/AMS QQ-A-225
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6061 Aluminum Hex Bar, Unpolished (Mill) Finish, T6 Temper, ASTM B221/AMS QQ-A-225

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Price: $35.50
Product Specifications
Exterior Finish Unpolished (Mill)
Grade 6061
Item Shape Hex Bar
Material Composition Solid
Material Type Aluminum
Specification Met ASTM B221 , AMS QQ-A-225
Style Name Diamond Tread
System of Measurement Inch
Temper T6
UNSPSC Code 30000000

The 6061 aluminum hex bar with T6 temper has an unpolished (mill) surface, ... Read full product description

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Thickness Overall Width Overall Length Number of Items Part Number Price Quantity
5/8 inches 5/8 inches 72 inches 1 B000HZS0TQ
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Product Features

  • 6061 aluminum provides good corrosion resistance, strength, machinability, and weldability
  • Meets ASTM B211 and AMS-QQ-A-225 specifications
  • Unpolished (mill) surface has no finish
  • Heat treated for increased strength
  • Standard tolerance

Product Details

Product Description

The 6061 aluminum hex bar with T6 temper has an unpolished (mill) surface, meets American Society for Testing and Materials International ASTM B211 and SAE Aerospace Material Specifications AMS-QQ-A-225 standards, and has a standard tolerance. The 6061 aluminum alloy is a general-purpose material that combines good corrosion resistance, strength, machinability, and weldability. It resists stress corrosion cracking and is heat treatable. The aluminum has a T6 temper, meaning it has been heat treated for increased strength.

Aluminum and aluminum alloys are lightweight compared to steel, brass, and copper, and have high strength-to-weight ratios. They offer good corrosion resistance and conductivity of heat and electricity, as well as moderate formability and machinability. Aluminum alloys include elements that modify the aluminum to achieve specific properties such as better weldability or greater strength. All series of aluminum alloys are nonmagnetic. Aluminum alloys have temper designations, indicating that the material has undergone a process to achieve certain properties of strength and hardness.

Tensile strength, used to indicate the material’s overall strength, is the peak stress it can withstand before it breaks. Corrosion resistance describes the material's ability to prevent deterioration caused by atmosphere, moisture, or other medium. Wear resistance indicates the ability to prevent surface damage caused by contact with other surfaces. Toughness describes the material's ability to absorb energy before breaking, while hardness (commonly measured as indentation hardness) describes its resistance to permanent surface deformation. Formability indicates how easily the material can be permanently shaped. Machinability describes how easily it can be cut, shaped, finished, or otherwise machined, while weldability characterizes the ability to be welded.

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