Overview
Titanium is a high-strength, low-density, corrosion-resistant light metal with the highest strength-to-weight ratio of any common engineering metal. Commercially pure (CP) Grade 2 is the most widely used titanium grade, offering excellent corrosion resistance to seawater, chlorides, and oxidizing acids, with good formability and weldability.
Mechanical Properties (Grade 2 CP)
| Property | Value |
|---|---|
| Density | 4,510 kg/m³ (0.163 lb/in³) |
| Young's Modulus | 107 GPa (half that of steel — 200 GPa) |
| Yield Strength | 275 MPa (40,000 psi) |
| Ultimate Tensile | 345 MPa (50,000 psi) |
| Elongation | 20% |
| Hardness | 120-200 BHN |
| Fatigue Limit | 160 MPa |
| Melting Point | 1668°C (higher than steel) |
Thermal Properties
| Property | Value |
|---|---|
| Thermal Conductivity (20°C) | 22 W/m·K (low — good insulator relative to steels) |
| Specific Heat | 520 J/kg·K |
| Coefficient of Thermal Expansion | 8.6 × 10⁻⁶ /°C (lower than steel) |
| Maximum Service Temperature | ~600°C (oxidation limits) |
Corrosion Resistance
Titanium's exceptional corrosion resistance comes from a self-healing TiO₂ passive film that forms instantly in oxygen-containing environments:
- Seawater: essentially immune (negligible corrosion rates even after decades)
- Chlorides: resistant to seawater, brines, bleach, wet chlorine gas
- Oxidizing acids: excellent in nitric, chromic acids
- Neutral/alkaline solutions: excellent
- Weldable without loss of corrosion resistance (in inert atmosphere)
Titanium is attacked by:
- Reducing acids (hydrochloric, sulfuric without oxidizers)
- Hydrofluoric acid (aggressive attack, used for etching)
- Hot concentrated caustic (above ~80°C)
- Dry chlorine gas (without water, can ignite)
Applications
- Aerospace: Aircraft structural components, engine parts, fasteners, landing gear (Grade 5 alloy)
- Chemical processing: Heat exchangers, reactors, piping, valves, pumps for chloride service
- Marine: Ship hulls, propeller shafts, seawater piping, offshore platform components
- Medical: Implants (hip, knee, dental), surgical instruments (biocompatible, MRI safe)
- Desalination: Evaporators, brine heaters, condenser tubing
- Pulp & paper: Bleach plant equipment
- Automotive: High-performance exhaust, valves, connecting rods (Grade 5)
- Sporting goods: Bicycle frames, golf clubs, tennis rackets (Grade 9)
Fabrication Notes
- Welding: Readily weldable by GTAW (TIG), GMAW, PAW in pure argon atmosphere; requires trailing shield to protect hot metal from air
- Machining: Lower modulus means more deflection; requires sharp tools, high feed rates, rigid setups
- Forming: Grade 2 can be cold formed; springback is significant due to low modulus
- Cost: Expensive (typically $20-50/kg vs $1-2/kg for steel), but justified by performance in demanding service
Summary
Titanium Grade 2 (density 4510 kg/m³) delivers steel-like strength at half the weight with near-immunity to seawater and chloride corrosion. It is the material of choice for aerospace (high strength-to-weight), chemical processing (chloride service), and marine applications despite its high cost. Its passivating TiO₂ film makes it one of the most corrosion-resistant engineering metals available.