Products Introduce
Products Parameters
|
Grade |
Ti |
Al |
Si |
P |
S |
C |
Cu |
Mn |
|
FeTi30-A |
25-35 |
8.0 |
4.5 |
0.05 |
0.03 |
0.10 |
0.2 |
2.5 |
|
FeTi30-B |
25-35 |
8.5 |
5.0 |
0.06 |
0.04 |
0.15 |
0.2 |
2.5 |
FAQ
Q: Are you trading company or Manufacturer ?
A: We are the direct-sale factory with our own trading company located in China.
Q:Can I get samples before order ?
We provide free samples, but you need to pay the sample fee and freight.
Q: what about the quality?
All the products must be tested strictly according to the testing procedure before shipment.

Products Description
30(FeTi30 is an alloy of iron and titanium, which contains about 25.0% ~ 35.0% of titanium and the rest of iron. In addition to titanium and iron, this alloy may also contain a small amount of impurities such as aluminum, silicon, carbon, sulfur, phosphorus and manganese.

Ferrotitanium 30 is the main raw material of special steel. As an alloying agent, it can increase the strength, corrosion resistance and stability of steel. The enhancement of these properties is helpful to improve the wear resistance of stainless steel. The titanium element in ferrotitanium 30 can combine with other elements in steel to form stable compounds, thus refining the grains of steel. This refinement is helpful to improve the microstructure of steel and make it more uniform, thus improving the wear resistance of stainless steel.

The hardness of stainless steel can be improved by adjusting the addition of ferrotitanium 30 and the heat treatment process. Hardness is one of the key factors affecting wear resistance. The higher the hardness, the better the wear resistance. Titanium element in ferrotitanium 30 has a strong affinity and can combine with impurity elements such as sulfur and oxygen in steel to form stable compounds. The formation of these compounds helps reduce the impurity content in steel, thus improving the purity and wear resistance of stainless steel.

It should be noted that the additional amount of ferrotitanium 30 and the heat treatment process need to be adjusted according to the specific stainless steel type and use requirements. In addition, the wear resistance of stainless steel is also affected by other factors, such as chemical composition, microstructure and surface treatment. Therefore, in the process of improving the wear resistance of stainless steel, it is necessary to comprehensively consider various factors and choose appropriate alloying elements and process methods.
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