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Grade 2 Titanium Rod - Ø 5mm L 500mm

Grade 2 Titanium Rod, also called T40 Titanium Rod, is a commercially pure titanium product offering moderate strength (~345 MPa), high ductility, and superior corrosion resistance. It retains formability and weldability across a wide temperature range (–184 °C to 540 °C), making it ideal for high-performance structural and fluid-transfer components. It is commonly used in chemical processing systems, heat exchangers, marine desalination units, and medical implants. Specific uses include osseointegrated dental implants, reactor tubing, condenser shells, and high-ductility biomedical pins. Grade 2's balance of strength and biocompatibility makes it a critical material in tissue engineering and biomedical research. In material science, its response to severe plastic deformation via ECAP and rolling has yielded ultrafine-grained rods with strength approaching that of Ti‑6Al‑4V, fostering innovations in cost-effective, formable titanium biomaterials. Its broad applicability and tunable mechanical performance solidify its industrial and scientific relevance.
Grade: Grade 2
Standard: ASTM B348 Chemistry only
Formula: Ti
Percentage Purity: 99.6%
Diameter: 5mm
Length: 500mm
Temper: Annealed
CAS Number: 7440-32-6
UOM Code: 103-746-78
Legacy Code: TI007920
Distributor Code:
GF10374678
SKU: 1000017053
Product Code: TI00-RD-000120

Tolerances

Rod
Diameter =<10mm ±10%
Diameter >10mm ±5%

Tolerances

Rod
Diameter =<10mm ±10%
Diameter >10mm ±5%
Technical Data Sheet
Safety Data Sheet
$371.00
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Material Properties for Metals

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@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
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