Chemical composition(1):
Chemical |
Fe |
C |
Si |
Mn |
S |
p |
|
Spec (%) |
99.60Min. |
0.003Max. |
0.01Max. |
0.2Max. |
0.004Max. |
0.005Max. |
|
Chemical |
Al |
Cu |
Ni |
Cr |
Ti |
CFB(A/m) |
|
Spec (%) |
0.054Max. |
0.01Max. |
0.01Max. |
0.01Max. |
0.01Max |
20.2 |
29.2 |
Chemical composition(2):
Chemical |
Fe |
C |
Si |
Mn |
S |
p |
|
Spec (%) |
99.73Min. |
0.002Max. |
0.01Max. |
0.19Max. |
0.004Max. |
0.009Max. |
|
Chemical |
Al |
Cu |
Ni |
Cr |
Ti |
CFB(A/m) |
|
Spec (%) |
0.051Max. |
0.01Max. |
0.01Max. |
0.01Max. |
0.01Max |
8.2 |
8.5 |
Chemical composition(3):
Chemical |
Fe |
C |
Si |
Mn |
S |
p |
Spec (%) |
99.60Min. |
0.004Max. |
0.01Max. |
0.14Max. |
0.005Max. |
0.011Max. |
Chemical |
Al |
Cu |
Ni |
Cr |
Ti |
|
Spec (%) |
0.26Max. |
0.02Max. |
0.01Max. |
0.02Max. |
0.01Max |

Pure iron wire, specifically designed and utilized for inductor applications, is a metallic material known for its exceptional magnetic properties and high purity. This material, often referred to as "pure iron wire for inductor," serves as a critical component in the construction of inductors due to its ability to store and release magnetic energy efficiently.
Inductors, fundamental components in electronic circuits, rely on the magnetic properties of their core materials to function correctly. Pure iron wire, with its low carbon content (typically less than 0.01%) and minimal impurity levels (often below 0.5%), offers a stable and reliable platform for these magnetic interactions.
The high purity of the material ensures that it has low hysteresis and eddy current losses, which are crucial for maintaining efficient energy transfer and minimizing heat generation within the inductor. This makes pure iron wire particularly suitable for high-frequency applications where energy loss and thermal management are critical considerations.
Furthermore, pure iron wire can be processed into various diameters and shapes to suit the specific requirements of inductor designs. This flexibility in manufacturing allows for the creation of inductors with tailored magnetic properties and performance characteristics, meeting the diverse needs of electronic systems and devices.
In summary, pure iron wire is a valuable material choice for inductor applications due to its high purity, exceptional magnetic properties, and ability to be processed into various forms. These attributes contribute to the efficient and reliable performance of inductors in a wide range of electronic circuits and systems.







We are proud to have established strong, trusted partnerships with leading steel companies. These alliances have enabled us to enhance our operations, ensure the delivery of top-quality products, and maintain our industry leadership, driving excellence and innovation.








http://www.blpureiron.com/