Aluminum Billet Supplier
The quality of your aluminum billets, it is imperative that you choose the right supplier. To make parts from an aluminum billet, excess material is removed. Ultimately. the part is carved out of the billet material according to your customer’s specifications.
Unfortunately, not all aluminum billets suppliers are the same. Therefore, you need to look for specific things to ensure that you make the right choice. With the following tips, you will find it much easier to identify the right billet supplier.
Aluminum coil stock suppliers provide this material to a large number of industries and for various applications, with condensers and evaporators being prime examples. For manufacturing condenser and evaporator coils, copper has long been the traditional choice due to its heat transfer rate, pliability, and cost. However, aluminum coils offer the same advantages.
6082/ 6082T Aluminium
Grade 6082 Aluminium alloy is a medium strength alloy that possesses excellent corrosion resistance.
Grade 6082 is commonly known as a structural alloy and provides the highest strength of all the alloys in the 6000 series. This increase in strength is due to the addition of a large quantity of manganese that controls the grain structure and creates a stronger alloy.
Aluminum coil stock suppliers provide this material to a large number of industries and for various applications, with condensers and evaporators being prime examples. For manufacturing condenser and evaporator coils, copper has long been the traditional choice due to its heat transfer rate, pliability, and cost. However, aluminum coils offer the same advantages.
Tempering
6082 alloy can be solution heat-treated and artificially aged to
create 6082T6.
Grade 6082 alloy provides increased strength and hardness when
compared to 6063. This means that 6082 can endure higher levels of stress. The
alloy machines well and can produce tight coils of swarf if you use chip
breakers.
Chemical Composition of 6082
|
|
Cu |
Mn |
Si |
Fe |
Mg |
Cr |
Zn |
Ti |
Ai |
|
Min |
|
0.4 |
0.7 |
|
0.6 |
|
|
|
|
|
Max |
0.1 |
1.0 |
1.3 |
0.5 |
1.2 |
0.25 |
0.2 |
0.1 |
Balance |
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