Titanium alloy plate
Titanium alloy is an alloy composed of titanium and other elements. Titanium has two isomorphous crystals: below 882℃ is close-packed hexagonal structure α titanium, above 882℃ is body-centered cubic β titanium.
There are two standards for titanium plates. The national standards are GB/T3621-2007 and GB/T13810-2007, and the American standards are ASTM B265, ASTM F136, ASTM F67, and AMS4928.
Introduction
Titanium alloy plate's specifications:
Grade: TA1, TA2, TA3, TC4, GR1, GR2, GR5
Standard: GB/T 3621-2007, GB/T 13810-2007,ASTM B265, ASTM F136, ASTM F67
Size range:
T 0.5-5.0mm x W1000mm x L 2000-3500mm
T 6.0- 30mm x W1000-2500mm x L 3000-6000mm
T 30- 80mm x W1000mm x L 2000mm
STM/ASME |
GB |
JIS |
Element Content(wt%) |
Mechanical Properties |
|||||||
N,max |
C,max |
H,max |
Fe,max |
O,max |
Others |
Strength Of Extension |
Ductility |
||||
Mpa,min |
%,min |
||||||||||
Pure Titanium |
Gr.1 |
TA1 |
Class1 |
0.03 |
0.08 |
0.015 |
0.2 |
0.18 |
|
240 |
24 |
Gr.2 |
TA2 |
Class2 |
0.03 |
0.08 |
0.015 |
0.3 |
0.25 |
|
345 |
20 |
|
Gr.3 |
TA3 |
Class3 |
0.05 |
0.08 |
0.015 |
0.3 |
0.35 |
|
450 |
18 |
|
Gr.4 |
TA4 |
Class4 |
0.05 |
0.08 |
0.015 |
0.5 |
0.4 |
|
550 |
15 |
|
Titanium Alloy |
Gr.5 |
TC4 |
Class60 |
0.05 |
0.08 |
0.015 |
0.4 |
0.2 |
AI:5.5-6.75 |
895 |
10 |
Ti-6A1-4V |
V:3.5-4.5 |
||||||||||
Gr.7 |
TA9 |
Class12 |
0.03 |
0.08 |
0.015 |
0.3 |
0.25 |
Pd:0.12-0.25 |
345 |
20 |
|
Gr.9 |
TC2 |
Class61 |
0.03 |
0.08 |
0.015 |
0.25 |
0.15 |
AI:2.5-3.5 |
620 |
15 |
|
V:2.0-3.0 |
|||||||||||
Gr.11 |
TA9-1 |
Class11 |
0.03 |
0.08 |
0.015 |
0.2 |
0.18 |
Pd:0.12-0.25 |
240 |
24 |
|
Gr.23 |
TC4 ELI |
Class60E |
0.03 |
0.08 |
0.0125 |
0.25 |
0.13 |
AI:5.5-6.5 |
828 |
10 |
Application
High strength: Titanium alloy has very high strength and can withstand large loads without deformation, which makes it widely used in the manufacture of aircraft engine compressor components, rockets, missiles and high-speed aircraft structural parts.
Good corrosion resistance: Titanium alloy has good resistance to many corrosive media and can work stably for a long time in harsh environments, which is especially important for applications in the fields of ocean and chemical industry.
High heat resistance: Titanium alloy has good heat resistance and can maintain stable performance at high temperatures, which is very critical for applications in high-temperature working environments such as aircraft engines.
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