Products Description
Chemical composition(1):
|
Chemical |
Fe |
C |
Si |
Mn |
S |
p |
Al |
|
Spec (%) |
99.95Min. |
0.002Max. |
0.002Max. |
0.02Max. |
0.003Max. |
0.003Max. |
0.005Max |
|
Chemical |
Cr |
Cu |
Nb |
Ni |
Ti |
O |
N |
|
Spec (%) |
0.008Max. |
0.009Max. |
0.0001Max. |
0.006Max. |
0.0001Max |
0.004Max |
0.003Max |
Chemical composition(2):
|
Chemical |
Fe |
C |
Si |
Mn |
S |
p |
Al |
|
Spec (%) |
99.85Min. |
0.003Max. |
0.004Max. |
0.07Max. |
0.005Max. |
0.01Max. |
0.005Max |
|
Chemical |
Cr |
Cu |
Nb |
Ni |
Ti |
O |
N |
|
Spec (%) |
0.013Max. |
0.01Max. |
0.0003Max. |
0.009Max. |
0.009Max |
0.004Max |
0.004Max |
Chemical composition(3):
|
Chemical |
Fe |
C |
Si |
Mn |
S |
p |
Al |
|
Spec (%) |
99.88Min. |
0.003Max. |
0.007Max. |
0.06Max. |
0.006Max. |
0.007Max. |
0.005Max |
|
Chemical |
Cr |
Cu |
Nb |
Ni |
|||
|
Spec (%) |
0.02Max. |
0.008Max. |
0.0008Max. |
0.0003Max. |
Chemical composition(4)
|
Chemical |
Fe |
C |
Si |
Mn |
S |
p |
Al |
|
Spec (%) |
99.85Min. |
0.003Max. |
0.007Max. |
0.013Max. |
0.0009Max. |
0.003Max. |
0.007Max |
|
Chemical |
Cr |
Cu |
Nb |
Ni |
Ti |
O |
N |
|
Spec (%) |
0.006Max. |
0.008Max. |
0.0003Max. |
0.008Max. |
0.0005Max |
0.005Max |
0.005Max |
Application

Standard purity furnace iron billet, also known as raw material pure iron, is a type of iron billet with extremely high iron content, typically above 99%. It is obtained through the smelting process in blast furnaces from iron ore, with very low levels of other elements.
This high-purity iron billet serves as a crucial raw material for manufacturing high-quality steel and is often utilized in the production of high-demand components such as crankshafts for automotive engines. It comes in various shapes, including square billets, round bars, and flat billets, to cater to different industrial needs.
Standard purity furnace iron billet is primarily used in alloy smelting and stainless steel production. It also finds applications in the manufacturing of neodymium-iron-boron, alnico, electrical alloys, high-temperature and precision alloys, and other specialized materials. The chemical composition of this raw material is tightly controlled, with low levels of impurities such as carbon (C ≤ 0.008%), phosphorus (P ≤ 0.10%), sulfur (S ≤ 0.10%), manganese (Mn ≤ 0.1%), and silicon (Si ≤ 0.01%).
Due to its excellent physical and mechanical properties, including high impact toughness, magnetic properties, and plasticity, standard purity furnace iron billet is widely employed in aerospace, energy development, and national defense security. However, the high plasticity and toughness of this material can pose challenges during the cutting process, requiring effective cooling and lubrication methods to ensure machining accuracy and efficiency.

In summary, standard purity furnace iron billet is a high-quality raw material with a wide range of applications in the manufacturing industry. Its purity and physical properties make it an ideal choice for producing high-performance materials and components.




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