Titanium Rod

Product Introduction:

Titanium rod is a cylindrical structural material made of titanium or titanium alloy as raw material, which is formed through forging, rolling and other processes. It is a key basic material for high-end manufacturing industry. Its composition includes industrial pure titanium and titanium alloys, which can meet the requirements of different scenarios for strength, corrosion resistance and other properties.
Product Category:


Industrial pure titanium rods: mainly TA1 and TA2.

Titanium alloy rods: mainly TC4, TA15, and TA18.


Common brand:


National standard grade: TA1、TA2、TA3、TA7、TA9、TA10、TA15、TA18、TC4、TC4ELI、TC6、TC9、TC10、TC11。

American standard grades: GR1, GR2, GR3, GR4, GR5, GR7, GR11, GR12, GR23, etc.


Production process:


hot forging hot rolling annealing straightening turning (polishing) polishing flat head inspection packaging


Performance characteristics:


1. Physical properties

High strength and lightweight: with a density of about 4.5g/cm ³, but a tensile strength of up to 345MPa to 895MPa;

The specific strength reaches 22.5, significantly better than traditional metal materials.

Low density and low magnetism: The density advantage is suitable for weight reduction needs, and the low magnetism makes it suitable for precision instruments and electromagnetic sensitive environments.

2. Chemical properties

Corrosion resistance:

A dense oxide film is formed on the surface, which is resistant to seawater and acidic/alkaline media;

TA9 and other palladium titanium alloys can also enhance their resistance to pitting corrosion.

High temperature resistance: Pure titanium is stable below 600 ℃, while titanium alloys maintain their strength at high temperatures.

3. Application features

Biocompatibility: Good compatibility with human tissues.

Multi functional adaptability:

Industrial pure titanium (TA1/TA2): focuses on corrosion resistance and processability, used for chemical equipment liners and nuclear industry seals;

Titanium alloy (TC4/TA15): enhances mechanical properties and high-temperature stability, suitable for high-end scenarios such as aircraft engine blades and spacecraft thermal protection layers.

4. Processing characteristics

Process complexity:

Cutting is difficult and requires thermal processing combined with annealing treatment to optimize performance;


Application areas:


aerospace, aviation, navigation, shipbuilding, seawater desalination, petroleum, chemical, mechanical equipment, nuclear power equipment, electrical equipment, automotive and motorcycle components, sports and leisure, steel and metallurgy, high-tech fields.