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» Titanium Grade 12

Used in applications whereas good corrosion resistance at high temperature is requested. Unalloyed titanium offering optimum ductility and cold formability with useful strength, high-impact toughness, and excellent weldability. Highly corrosion-resistant in oxidizing and mildly reducing environments, including chlorides.

» Current Coils in Special offer!

20th October 2006

all sizes in [mm] - THK x Width x coil
0.71x110 0.71x105
0.71x69.8 0.71x511
0.71x90  
0.8x100  
0.84x58.9 0.81x75
0.889x158.7 0.889x101.6
0.889x895 0.889x69.8
0.889x79 0.889x58.9
0.889x99 0.889x59.1
0.96x361.9 0.99x198

Composition Titanium 6Al4V Physical Data Titanium Alloys Mechanical Chemical Physical Properties Mechanical Data Titanium Grades 1 2 3 4 5 7 9 11 12 19 Beta C Fabrication Information

» Composition

C < 0.08 %
Fe < 0.3 %
N2 < 0.03 %
O2 < 0.25 %
H2 < 0.015 %
Ni 0.6 - 0.9 %
Mo 0.2 - 0.4 %
Ti = Rem

» Physical Data

  Minimum Typical
Density g/cm3 (lb/cu.in)   4.51(0.162)
Melting Range °C+/-15°C (°F)   1670(3038)
Specific Heat J/g/°C   0.54
Volume Electrical Resistivity µohm (µohm.in)   56(22)
Thermal Conductivity W/mK(Btu/ft h°F) 22(153)  
*Mean Thermal Exp. Coeff. 0-100 °C/°C   8.6 x 10 -6
*Mean Thermal Exp. Coeff. 0-300 °C/°C   9.2 x 10 -6
Beta Transus °C+/-15°C(°F)   888 (1630)

» Mechanical Data

  Minimum Typical
Tensile Strength MPa(ksi) 483 (70) > 620 (90)
0.2% Proof Stress MPa(ksi) 345 (50) > 430 (62)
Elongation over 2 Inches % 18 > 20
Reduction in Area % 25  
Elastic Modulus GPa(Msi) 103 - 107 (15)  
Hardness Brn 180-235  
Short Term Creep, 1.0% Strain (1000h @ 250°C) MPa (ksi)   221 (32)
Stress Rupture (1000h @ 250°C) MPa   297 (43)

» Fabrication Information

Weldability Excellent
Annealing 705°C (1300°F), 2 hr, AC
Stress Relief Annealing 540-595°C (1000-1100°F), 15-30 min.