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Grade 2 Titanium Foil - T 0.015mm 150mm x 150mm

Details

SKU: 1000193074 Product Code: TI00-FL-000133
Grade 2 Titanium Foil (UNS R50400) is the commercially pure titanium grade most widely selected for industrial applications, striking the best balance among the four CP grades between corrosion resistance, ductility, and strength. Supplied to ASTM B265 and B265 Chemistry Only, it offers a tensile strength of 230–460 MPa, yield strength of 140–250 MPa, and a density of just 4.5 g/cm³ — roughly half that of steel — making it one of the most efficient structural and corrosion-resistant foil materials available. Its corrosion performance stems from a stable, self-healing titanium oxide film that forms instantly in the presence of oxygen, providing reliable protection against seawater, chlorides, nitric and chromic acids, and a wide range of industrial chemical environments where stainless steels typically struggle. It is biocompatible, non-magnetic, and fully weldable by TIG and MIG processes with appropriate inert gas shielding, with no preheat or post-weld heat treatment required. Continuous service temperatures reach 800°F, with intermittent capability to 1000°F. Typical applications include chemical process equipment, heat exchangers, marine components, desalination systems, medical device substrates, and aerospace structural elements. In research, it is a standard substrate for corrosion studies, electrochemical characterisation, and thin-section fabrication work where a traceable, specification-controlled titanium material is required.
Grade: Grade 2
Standard: ASTM B265 Chemistry only
Formula: Ti
Percentage Purity: 98.9%
Thickness: 0.015mm
Length 1: 150mm
Length 2: 150mm
CAS Number: 7440-32-6
UOM Code: 579-937-27
Legacy Code: TI000233
Distributor Code:
GF57993727

Tolerances

Foil/Film/Sheet
Thickness <0.01mm ±25%
Thickness 0.01mm - 0.05mm ±15%
Thickness >0.05mm ±10%
Linear dimension <100mm ±1mm
Linear dimension >=100mm +2 / -1%
$431.00
each
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Material Properties

Atomic Properties
Element Value
Atomic number 22
Crystal structure Hexagonal close packed
Electronic structure Ar 3d² 4s²
Valences shown 2,3,4
Atomic weight( amu ) 47.88
Thermal neutron absorption cross-section( Barns ) 6.1
Photo-electric work function( eV ) 4.1
Natural isotope distribution( Mass No./% ) 50/ 5.3
Natural isotope distribution( Mass No./% ) 49/ 5.5
Natural isotope distribution( Mass No./% ) 46/ 8.0
Natural isotope distribution( Mass No./% ) 48/ 73.7
Natural isotope distribution( Mass No./% ) 47/ 7.5
Atomic radius - Goldschmidt( nm ) 0.147
Ionisation potential( No./eV ) 3/ 27.5
Ionisation potential( No./eV ) 4/ 43.3
Ionisation potential( No./eV ) 5/ 99.2
Ionisation potential( No./eV ) 1/ 6.82
Ionisation potential( No./eV ) 2/ 13.6
Ionisation potential( No./eV ) 6/ 119
Mechanical Properties
Element Value
Material condition Polycrystalline
Material condition Annealed
Poisson's ratio 0.361
Poisson's ratio 0.361
Poisson's ratio -
Bulk modulus( GPa ) 108.4
Bulk modulus( GPa ) -
Bulk modulus( GPa ) 108.4
Tensile modulus( GPa ) -
Tensile modulus( GPa ) 120.2
Tensile modulus( GPa ) 120.2
Izod toughness( J m⁻¹ ) 61
Izod toughness( J m⁻¹ ) 61
Hardness - Vickers( kgf mm⁻² ) 60
Hardness - Vickers( kgf mm⁻² ) 60
Tensile strength( MPa ) 230-460
Tensile strength( MPa ) 230-460
Yield strength( MPa ) 140-250
Yield strength( MPa ) 140-250
Electrical Properties
Element Value
Electrical resistivity( µOhmcm ) 54@20°C
Superconductivity critical temperature( K ) 0.4
Temperature coefficient( K⁻¹ ) 0.0038@0-100°C
Physical Properties
Element Value
Boiling point( C ) 3287
Density( gcm⁻³ ) 4.5@20°C
Thermal Properties
Element Value
Melting point( C ) 1660
Latent heat of evaporation( J g⁻¹ ) 8893
Latent heat of fusion( J g⁻¹ ) 365
Specific heat( J K⁻¹ kg⁻¹ ) 523@25°C
Thermal conductivity( W m⁻¹ K⁻¹ ) 21.9@0-100°C
Coefficient of thermal expansion( x10⁻⁶ K⁻¹ ) 8.9@0-100°C