Products Parameters
|
Element |
Grade 1 |
Grade 2 |
Grade 3 |
Grade 4 |
Grade 5 (Ti-6Al-4V) |
Grade 23 (Ti-6Al-4V ELI) |
|
Titanium (Ti) |
> 99.5% |
> 99.0% |
> 98.0% |
> 97.0% |
> 99.0% |
> 99.0% |
|
Aluminum (Al) |
- |
- |
- |
- |
5.5-6.75% |
5.5-6.5% |
|
Vanadium (V) |
- |
- |
- |
- |
3.5-4.5% |
3.5-4.5% |
|
Iron (Fe) |
< 0.2% |
< 0.3% |
< 0.3% |
< 0.5% |
< 0.25% |
< 0.25% |
|
Oxygen (O) |
< 0.18% |
< 0.25% |
< 0.35% |
< 0.40% |
< 0.20% |
< 0.13% |
|
Carbon (C) |
< 0.08% |
< 0.10% |
< 0.10% |
< 0.15% |
< 0.10% |
< 0.08% |
|
Nitrogen (N) |
< 0.03% |
< 0.03% |
< 0.05% |
< 0.05% |
< 0.05% |
< 0.05% |
|
Hydrogen (H) |
< 0.015% |
< 0.015% |
< 0.015% |
< 0.015% |
< 0.015% |
< 0.0125% |
Particle Mesh:-100 mesh, -200 mesh, -300 mesh
Titanium Ferro specifications: 30/40/70 silver gray, 10-80mm Natural Block, or customized to customer requirements.
Packing: waterproof, woven bag ton packing (1000KG per pack)

Products Description
Titanium powder, a metal powder made of titanium, has a wide range of applications and unique physical and chemical properties. Titanium powder has a wide range of purity, ranging from 95% to 99.4%. Titanium powder of different purity is suitable for different industrial needs. Titanium powder has a high specific strength and is a high-strength but low-quality metal with good Ductility (especially in an oxygen-free environment). Its melting point is extremely high, exceeding 1649 degrees Celsius, making it a good refractory metal material. At the same time, titanium powder is paramagnetic and has low electrical and thermal conductivities. The most notable feature of titanium powder is its excellent corrosion resistance, which is almost equal to that of platinum. It can resist the corrosion of dilute sulfuric acid, dilute hydrochloric acid, chlorine gas, chlorine solution and most organic acids, but can be dissolved by concentrated acid. In high-temperature air, a passive oxide protective film will form on the surface of titanium powder to prevent further oxidation.

Titanium powder can be used to prepare high-strength, low-density titanium alloy products. These alloys have important applications in the aerospace field, such as manufacturing aircraft parts and engine parts. Titanium powder can be used as a spraying material to improve the hardness and wear resistance of the coating; in the metallurgical field, it can be used as an alloy additive to improve the performance of the material. Titanium powder can be used in the chemical industry to prepare titanium dioxide, which is widely used in paint, rubber, plastic and other industries. Adding titanium powder to plastic and rubber products can increase the hardness and strength of the product. In ceramic and glass manufacturing, titanium powder is used as a reinforcing agent to improve the heat resistance and tensile strength of the product. Titanium powder plays a key role in the manufacture of fireworks, producing bright white sparks and increasing the viewing effect of fireworks.

There are many methods for producing titanium powder, including mechanical alloying, hydride dehydrogenation (HDH), atomization, metal thermal reduction and molten salt electrolysis. Among them, hydride dehydrogenation is one of the most commonly used processes in China. This method uses the reversible properties of titanium and hydrogen to produce pure titanium powder through hydrogenation and dehydrogenation reactions. When using titanium powder, you need to pay attention to its flammability and avoid operating it under high temperature or electric spark conditions. At the same time, due to its good air absorption ability, it should be properly stored to avoid moisture absorption and deterioration.
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