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 |
Cold-drawn and Cold-drawn Straight Pure Iron Billet, Pure Iron Material

Cold-drawn pure iron billet, especially the cold-drawn straight ones, are produced through a cold-working process known as drawing. This method involves using hot-rolled steel as the raw material and shaping it into the desired form under cold conditions. The resulting product, cold-drawn steel, boasts superior quality compared to hot-rolled steel.
Due to the cold deformation during the drawing process, the metal undergoes work hardening, which enhances its tensile strength and yield strength. Further heat treatment can improve its overall mechanical properties. Cold-drawn steel products, including straight billets, feature shapes and sizes that are similar to mechanical parts, with high dimensional accuracy, reducing the need for secondary processing.
As for pure iron material, it refers to iron with a carbon content of less than 0.01% and a total impurity content of less than 0.5%. Also known as alloy raw material pure iron, it serves as the raw material for electrical heating alloys, precision alloys (including soft magnetic materials, hard magnetic materials, elastic alloys, expansion alloys, etc.), low-carbon and ultra-low-carbon stainless steel, and powder metallurgy. It can be processed into various forms such as steel billets, bars, flat steel, and hot-rolled wire rods.
In summary, cold-drawn and cold-drawn straight pure iron billets are high-quality steel products produced through a special cold-working process, while pure iron material is a high-purity raw material with wide applications in various industries.





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