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Gr2 TA2 Pure Titanium Foil Ultra-Thin 0.01mm-0.1mm Gr1 Corrosion Resistant Titanium Strip
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x| Name | Gr2 TA2 Pure Titanium Foil Ultra-Thin Titanium Foil 0.01mm-0.1mm Gr1 Corrosion Resistant Titanium Strip | Material | Pure Titanium |
|---|---|---|---|
| Grade | Gr1,Gr2 | Thickness | 0.01-0.1mm |
| Ti Content | 99.6% | Grain Size | 149〜420μm |
| Thermal Expansion Coefficient | 8.41*10-6/℃ | Shape | Coil Rolled |
| Highlight | 0.01mm ure Titanium Foil,Gr1 Corrosion Resistant Titanium Strip,Ultra-Thin Pure Titanium Foil |
||
| Product name: | Gr2 TA2 Pure Titanium Foil Ultra-Thin Titanium Foil 0.01mm-0.1mm Gr1 Corrosion Resistant Titanium Strip | ||||
| Density: | 4.51g/cm³ | Ti content: | 99.6% | Grain size: | 149〜420μm |
| Hardness: | 6 Mohs | Melting point: | 1668℃ | Boiling Point: | 3260℃ |
| Thermal conductivity: | 16.3~18W/(m•℃) | Thermal expansion coefficient: | 8.41*10-6/℃ |
Physical properties: | metallic luster, ductile |
| Features: | light weight, high strength, strong corrosion resistance | Application: | Aviation and aerospace industry | Size: | customizable |
| Origin: | Baoji,China | Color: | Metallic | Brand: | Peakrise |
Chemical composition of titanium Gr1 foil:
| Ti | Fe | C | O | H | N |
| % | % | % | % | % | % |
| remain | 0.2 | 0.08 | 0.18 | 0.015 | 0.03 |
Characteristics of Titanium Gr1 foil:
| Hardness HB 30 ≤ 30 | 120 |
| 0.2 % Yield Strength Rp ≥ N/mm² | 170 |
| Tensile Strength Rm N/mm² | ≥ 240 |
| Elongation ≥% | 24 |
Chemical composition of titanium Gr2 foil:
| Ti | Fe | C | O | H | N |
| % | % | % | % | % | % |
| Remain | 0.3 | 0.08 | 0.25 | 0.015 | 0.03 |
Mechanical properties of titanium Gr 2 foil at room temperature
| Min. | Typical Value | |
| Yield Strength | 275 MPa | 350-450 MPa |
| Ultimate strength | 345 MPa | 485 MPa |
| Elongation in 50 mm, A5 | 20 % | 28 % |
| Area reduction | 30 % | 55 % |
| Hardness | 160-200 HV | |
| Elastic Modulus | 103 GPa |
Main application areas of Gr2 titanium strip:
Applied in chemical processing (can be used in oxidizing media, alkaline media, organic acids and compounds, brine solutions and hot gases); marine industry (completely resistant to corrosion from seawater at temperatures up to 300°C); aircraft construction, where certain strength and ease of formability are required; heat exchangers, hypochlorite systems, fire water systems, ballast water systems, pumps and cryogenic vessels.

