Iron Titanium Carbide Alloy (FeTiC) is a high-performance material known for its exceptional hardness, wear resistance, and high-temperature stability. This alloy is widely used in various industries, including aerospace, automotive, and industrial applications, where it serves in critical components exposed to demanding environments. Its unique properties make it ideal for applications requiring durability, strength, and reliability.
Product Overview
Iron Titanium Carbide (FeTiC) is an alloy composed of iron, titanium, and carbon, commonly introduced in steelmaking as titanium iron. It is typically produced by melting titanium sponge and scrap iron together. This alloy has a high titanium content, low melting point, and relatively high density, making it suitable for various industrial applications. Its main uses include improving cast iron properties, welding materials, catalysts, as well as applications in spraying and powder metallurgy.
Product Features
- High Titanium Content:FeTiC contains a high percentage of titanium (typically 45-75%), which provides excellent high-temperature resistance and strength.
- Low Melting Point:Titanium's relatively low melting point helps reduce energy consumption during the smelting process.
- Improved Cast Iron Properties:The addition of Iron Titanium Carbide significantly enhances the strength, hardness, and wear resistance of cast iron.
- Good Smelting Performance:Due to its high density and good melting properties, FeTiC easily mixes with iron or steel in induction furnaces, making it convenient for preparation and application.
Applications
- Cast Iron Industry:FeTiC is added to the production of cast iron to improve its properties, enhancing strength and wear resistance.
- Welding Materials:Used in the manufacture of welding materials, it improves the strength and corrosion resistance of welded joints.
- Catalysts:FeTiC serves as a component in catalysts, facilitating chemical reactions in various industrial processes.
- Spraying & Powder Metallurgy:FeTiC is widely used in spraying and powder metallurgy techniques, offering enhanced thermal stability and corrosion resistance.
Brand | Chemical Composition % | ||||||
Ti | C | Si | P | S | Cu | Mn | |
≤ | |||||||
FeTiC | 56-58 | 12~13 | 2 | 0.03 | 0.03 | 0.2 | 0.25 |
size | -60 mesh, -100 mesh, -325 mesh,or on-demand processing. | ||||||
packing | 25 kg / bag, one ton / bag. | ||||||
Uses | cast iron and may improve performance, but also the welding of titanium calcium type materials. |