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Titanium Sheet
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Titanium Sheet is a high-performance metal material widely used in aerospace, chemical processing, marine engineering, medical implants, and high-end industrial applications. It is valued for its excellent strength-to-weight ratio, outstanding corrosion resistance, and stable performance in extreme environments.
Unlike aluminum or steel, titanium combines low density with high mechanical strength, making it a key engineering material where both weight reduction and durability are required.
Chemical Composition of Commercial Pure Titanium (Grade 2 Example)
Commercially pure titanium is the most commonly used form for titanium sheet production.
| Element | Content (%) |
|---|---|
| Titanium (Ti) | Balance |
| Oxygen (O) | ≤ 0.25 |
| Iron (Fe) | ≤ 0.30 |
| Carbon (C) | ≤ 0.10 |
| Nitrogen (N) | ≤ 0.05 |
| Hydrogen (H) | ≤ 0.015 |
Higher oxygen content increases strength but reduces ductility, while lower oxygen improves formability.
Common Titanium Alloy Composition (Ti-6Al-4V / Grade 5)
Ti-6Al-4V is the most widely used titanium alloy in engineering applications.
| Element | Content (%) |
| Titanium (Ti) | Balance |
| Aluminum (Al) | 5.5 – 6.75 |
| Vanadium (V) | 3.5 – 4.5 |
| Iron (Fe) | ≤ 0.40 |
| Oxygen (O) | ≤ 0.20 |
Aluminum acts as an alpha stabilizer, increasing strength and temperature resistance, while vanadium improves toughness and structural stability.
Key Performance Characteristics of Titanium Sheet
High Strength-to-Weight Ratio
Titanium offers strength comparable to many steels but with approximately 45% lower density (around 4.51 g/cm³). This makes it ideal for lightweight structural applications.
Excellent Corrosion Resistance
Titanium naturally forms a dense, stable oxide film (TiO₂) that protects it from:
- Seawater corrosion
- Chloride environments
- Strong acids (excluding hydrofluoric acid)
- Industrial chemical exposure
This passive layer is self-healing, meaning it regenerates automatically when damaged.
Good Temperature Resistance
Titanium maintains stable mechanical properties at elevated temperatures up to approximately 400–600°C depending on alloy grade.
Biocompatibility
Titanium is non-toxic and highly compatible with human tissue, making it widely used in:
- Orthopedic implants
- Dental implants
- Surgical instruments
Low Thermal Conductivity
Titanium has significantly lower thermal conductivity than aluminum and steel, making it suitable for heat-resistant and thermal insulation applications.
Mechanical Properties (Typical Titanium Grade 2)
| Property | Value |
| Tensile Strength | ~345 MPa |
| Yield Strength | ~275 MPa |
| Elongation | ~20–30% |
| Density | 4.51 g/cm³ |
| Hardness | ~160 HB |
Grade 2 provides a balance of moderate strength and excellent formability.
Comparison: Titanium vs Titanium Alloy
| Material | Strength | Corrosion Resistance | Ductility | Application Focus |
| Grade 1 | Low | Excellent | Very High | Chemical processing |
| Grade 2 | Medium | Excellent | High | General industrial use |
| Grade 4 | Higher | Excellent | Medium | Structural applications |
| Ti-6Al-4V | Very High | Excellent | Medium | Aerospace & medical |
Key Advantages of Titanium Sheet
- Exceptional corrosion resistance in aggressive environments
- High strength with low weight
- Long service life with minimal maintenance
- Excellent fatigue resistance
- Stable performance under extreme conditions
- Biocompatible and non-toxic



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