Product Name: Titanium Aluminum (TiAl)
Specifications: 100 mesh, 200 mesh, 325 mesh
Appearance: Irregular
Color: Silver Grey
Characteristics: TiA1 based alloys have excellent physical and mechanical properties. Due to the covalent bonding effect, diffusion related high-temperature properties such as creep, endurance strength, and fracture toughness are improved. At the same time, they have excellent high-temperature oxidation resistance and corrosion resistance, making them a promising high-temperature structural material.
Application: Titanium aluminum alloy is widely used in high-end fields such as aviation, aerospace, and automobiles due to its excellent performance, such as aircraft, rocket structures, engine blades, body structures, chassis, etc. In addition, titanium aluminum alloy is also used in the medical field, such as artificial joints, dental implants, etc. Titanium aluminum alloy is widely used in the vacuum coating industry and can be made into a certain proportion of alloy target material for magnetron sputtering coating.
Titanium aluminum performance:
Titanium aluminum alloy is a silver white metal with many excellent properties. The density of titanium is 4.54g/cm3, which is 43% lighter than steel and slightly heavier than the well-known light metal magnesium. The mechanical strength is similar to that of steel, twice as strong as aluminum, and five times stronger than magnesium. Titanium is heat-resistant with a melting point of 1942K, nearly 1000K higher than gold and nearly 500K higher than steel. Therefore, it has attracted widespread attention and become a focus of research in TiAl alloys. TiAl based alloys have excellent physical and mechanical properties, and have significant advantages compared to ordinary titanium alloys and high-temperature alloys. The various properties of Ti Al intermetallic compounds are higher than those of Ti alloys, which is of great significance for aviation materials. Due to the effect of covalent bonds, high-temperature properties related to diffusion, such as creep, durability, and fracture toughness, have been improved. At the same time, it has excellent high-temperature oxidation resistance and corrosion resistance, making it a promising high-temperature structural material
Application of titanium aluminum:
Titanium aluminum alloy is also widely used in the vacuum coating industry, and can be made into a certain proportion of alloy targets as raw materials for magnetron sputtering coating. When making vacuum coating targets, titanium aluminum alloys have multiple composition ratios, commonly used being titanium aluminum atomic ratios (at%): 90:10, 80:20, 70:30, 50:50, 30:70, 20:80, 10:90. Titanium aluminum alloy can be produced by vacuum casting when the titanium atomic content is greater than or equal to 50%. When the titanium content decreases and the aluminum content relatively increases, it can only be produced by powder metallurgy to meet the requirements of the target material. Titanium aluminum alloys with titanium atoms greater than or equal to 80% can also be forged and rolled.
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