
Titanium Bar
Product: Titanium bar
Specifications: Depends on customer usage and standards .
Material: Pure Titanium: Gr1, Gr2, Gr3, Gr4
Titanium alloys: Gr5 (Ti6Al4V), Gr7 (Ti0.2Pd), Gr9 (Ti6Al4V ELI), Gr12 (Ti-0.3Mo-0.8Ni)
Size: Diameter: 0.5mm-500mm Length: 10mm-6000mm ( customizable )
Standards: ASTM B348, ASTM F136, ASTM F67, AMS 4928, ISO 5832, DIN 17862
Surface: polishing, grinding or other treatment
Product Introduction
As an advanced metal material, titanium rods are widely used in various industries due to their excellent performance and characteristics. Titanium bar are becoming more and more popular in many fields due to their advantages of high strength, light weight, corrosion resistance and biocompatibility. It is mainly made of pure titanium or titanium alloy. The most common titanium alloys used for rods are Ti-6Al-4V (grade 5) and Ti-6Al-4V ELI (grade 23). These alloys contain aluminum and vanadium, which increase the strength and toughness of the rod. We produce and sell titanium alloy rods in different shapes , such as round rods, hexagonal rods and square rods , etc. Our titanium can be produced in straight lengths or coiled form or in different shapes and sizes such as rods, plates, wire, forgings, etc. to suit your specific application.

Properties of titanium rod
1. High strength and stiffness
2. Low density
3. Corrosion resistance in saline, acidic and alkaline environments
4. Biocompatibility
5. Non-magnetic
6. Low thermal conductivity

Common implementation standards
ASTM B348 (American Society for Materials and Testing)
ASTM F136 (Titanium Alloy Standard for Medical Implants),
ISO 5832-3 (Standard for Medical Implants), etc.
Mechanical behavior:
|
year garbage |
Yield Strength(0.2% Offset) |
ultimate tensile strength |
Minimum value of elongation, % |
||||
|
minute |
maximum |
minute |
|||||
|
Kesey |
MPa |
Kesey |
MPa |
Kesey |
MPa |
||
|
PureTitanium Grade 2 |
40 |
275 |
65 |
450 |
50 |
345 |
20 |
|
Grade 5 Titanium |
120 |
828 |
- |
- |
130 |
895 |
10 |
|
Ti-6AI-4VELI |
110 |
759 |
- |
- |
120 |
828 |
10 |
Chemical composition table:
|
Grade 2 Titanium Chemical Content |
||||||||||||
|
Chemical Composition List |
||||||||||||
|
0 |
N |
C |
h |
Fe |
AL |
V |
Ni |
Mo |
PD |
Others |
Residuals |
Ti |
|
0.25 |
0.03 |
0.08 |
0.015 |
0.30 |
0.4 |
Bal |
||||||
|
Max |
Max |
Max |
Max |
Max |
Max |
|||||||
|
Grade 5 Titanium Chemical Content |
||||||||||||
|
Chemical Composition List |
||||||||||||
|
0 |
N |
C |
h |
Fe |
AL |
V |
Ni |
Mo |
PD |
Others |
Residuals |
Ti |
|
0.20 Max |
0.05 Max |
0.08 Max |
0.015 Max |
0.40 Max |
5.5-6.75 |
3.5-4.5 |
0.4 Max |
Bal |
||||
Titanium bar have excellent properties:

Titanium bar can be used in various fields, such as aerospace, chemical industry, medical equipment and so on.
In the aviation field, titanium foil strips can be used to manufacture parts in aircraft structures, such as connectors, screws, nuts, etc. The high strength and light weight of titanium make it an important material in aircraft manufacturing.
In the medical field, titanium strips can be used to manufacture dental implants, muscle implants, etc. Since titanium metal has a high similarity with human tissue, it is widely used in the manufacture of medical equipment to help support and repair human bone tissue.
In addition, titanium strips can also be used in some precision instruments, chemical equipment and other fields.
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