
Titanium Ingot
Product name: titanium ingot
Grade: Grade1,Grade2,Grade5(Ti-6Al-4V),Grade7,Grade12
Military grade MIL-T-9046
material Quality: industrial pure titanium and titanium alloy
Product Introduction
The production of titanium ingot starts from sponge titanium.
Titanium sponge is a porous, spongy form of titanium metal that is extracted from titanium oxides by magnestic reduction.
This porous structure makes titanium sponge easy to smelt into ingots, so it becomes an ideal raw material for the production of titanium ingots.
Product name: titanium ingot
Grade: Grade 1 , Grade 2, Grade 5 (Ti-6Al-4V), Grade 7, Grade 12
Military grade MIL-T-9046
Executive standard: American Society for Testing and Materials (ASTM) ASTM B348
Chinese National Standard GB/T 3620.1
material Quality: industrial pure titanium and titanium alloy
regulation grid: Customizable specifications and sizes
Surface treatment: pickling mechanical polishing coating
The preparation process of titanium ingot: raw material preparation ----- melting ----- continuous casting ----- processing ----- quality control
chemical composition
GR1 is the softest titanium with the highest ductility and good cold formability, which gives GR1 excellent oxidation resistance from light to high.
|
GR1 Chemical Analysis |
||||||||||||
|
chemical composition(%) |
||||||||||||
|
o |
N |
C |
h |
Fe |
AL |
V |
Ni |
Mo |
PD |
Others |
Residuals |
Ti |
|
0.18 |
0.03 |
0.08 |
0.015 |
0.20 |
|
|
|
|
|
|
0.4 |
Bal |
GR2 has medium strength and excellent cold formability and weldability. This titanium also has excellent oxidation resistance.
|
GR2 Chemical Analysis |
||||||||||||
|
chemical composition(%) |
||||||||||||
|
o |
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 |
GR5 has very high strength but relatively low ductility. The main application of this alloy is in aircraft and spacecraft. Offshore applications are growing. The alloy is weldable and precipitation hardenable.
|
GR5 Chemical Analysis |
||||||||||||
|
chemical composition(%) |
||||||||||||
|
o |
N |
C |
h |
Fe |
AL |
V |
Ni |
Mo |
PD |
Others |
Residuals |
Ti |
|
0.20 |
0.05 |
0.08 |
0.015 |
0.40 |
5.5-6.75 |
3.5-4.5 |
|
|
|
|
0.4 |
Bal |
GR7 Most corrosion-resistant titanium alloys have excellent resistance to general and localized crevice corrosion in a wide range of oxidizing and reducing acidic environments, including chlorides, with a good balance of moderate strength, reasonable ductility and excellent weldability. Physical and mechanical properties are equivalent to GR2.
|
GR7 Chemical Analysis |
||||||||||||
|
chemical composition(%) |
||||||||||||
|
o |
N |
C |
h |
Fe |
AL |
V |
Ni |
Mo |
PD |
Others |
Residuals |
Ti |
|
0.25 |
0.03 |
0.08 |
0.015 |
0.30 |
|
|
|
|
0.12-0.25 |
|
0.4 |
Bal |
|
o |
N |
C |
h |
Fe |
AL |
V |
Ni |
Mo |
PD |
Others |
Residuals |
Ti |
|
0.25 |
0.03 |
0.08 |
0.015 |
0.30 |
|
|
|
|
0.12-0.25 |
|
0.4 |
Bal |
GR12 is highly weldable, showing increased strength allowed at elevated temperatures, combined with better crevice corrosion resistance, and excellent resistance under oxidizing to mildly reducing conditions, especially chlorides.
|
GR12 Chemical Analysis |
||||||||||||
|
chemical composition(%) |
||||||||||||
|
o |
N |
C |
h |
Fe |
AL |
V |
Ni |
Mo |
PD |
Others |
Residuals |
Ti |
|
0.25 |
0.03 |
0.08 |
0.015 |
0.30 |
|
|
0.6-0.9 |
0.2-0.4 |
|
|
0.4 |
Bal |
Physical properties
|
year garbage |
Yield Strength (0.2% Offset) |
ultimate tensile strength |
Minimum value of elongation, % |
||||
|
minute |
maximum |
minute |
|||||
|
Kesey |
MPa |
Kesey |
MPa |
Kesey |
MPa |
||
|
Titanium Grade 1 |
20 |
138 |
45 |
310 |
35 |
240 |
twenty four |
|
Titanium Grade 2 |
40 |
275 |
65 |
450 |
50 |
345 |
20 |
|
Titanium Grade 5 |
120 |
828 |
- |
- |
130 |
895 |
10 |
|
Titanium Grade 7 |
40 |
275 |
65 |
450 |
50 |
345 |
20 |
|
Titanium Grade 12 |
50 |
345 |
- |
- |
70 |
483 |
18 |
Smelting process: Titanium ingot smelting process is to transform titanium ore into high-purity titanium metal ingot through physical and chemical treatment, including beneficiation, leaching, reduction, refining and casting. In this process, it is necessary to select appropriate process methods and equipment, and strictly control conditions and procedures. At the same time, waste needs to be disposed of properly to protect the environment and health.
Main applications: Titanium ingots have broad application prospects in the fields of aerospace, automobile manufacturing, petrochemicals, medical care and sporting goods, and are expected to open up more application fields in the future.



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