
Titanium Alloy Plate
The nominal titanium alloy plate tc6 composition is Ti-6Al-2.5Mo-1.5Cr-0.5Fe-0.3Si, it has good thermal processing properties and can be welded and machined in a variety of ways.
Product Introduction
Titanium Alloy Plate
High-Strength Titanium Plates for Aerospace, Chemical Processing and Industrial Applications
Titanium alloy plate is a high-performance metal material offering an excellent combination of high strength, low density, excellent corrosion resistance, and good elevated-temperature performance.
Titanium forms a dense, stable, and strongly adherent oxide film when exposed to air or moisture. This protective film provides outstanding resistance to corrosion in seawater, chlorides, and many aggressive chemical environments.
Changsheng Titanium supplies commercially pure titanium plates and titanium alloy plates in a wide range of grades, thicknesses, widths, and lengths. Products can be manufactured according to ASTM, AMS, GB/T, GOST, or customer-specific specifications.
Our titanium plates are widely used in aerospace, chemical processing, marine engineering, desalination, power generation, petrochemical, medical, and industrial equipment.
Titanium Plate Grades
Changsheng Titanium can supply commercially pure titanium and titanium alloy plates, including:
Commercially Pure Titanium
Grade 1
Grade 2
Grade 3
Grade 4
Titanium Alloys
Grade 5 / Ti-6Al-4V
Grade 7 / Ti-0.2Pd
Grade 9 / Ti-3Al-2.5V
Grade 11
Grade 12
Grade 16
Grade 23 / Ti-6Al-4V ELI
TC1 / OT4-1
TC6 / BT3-1
TC11 / BT9
TA7 / BT5 / Grade 6
TA19 / Ti-6242
TA16 / PT-7M
Other titanium and titanium alloy grades are available according to customer requirements.
TC6 Titanium Alloy Plate
Ti-6Al-2.5Mo-1.5Cr-0.5Fe-0.3Si
TC6 is an α-β titanium alloy developed for applications requiring high strength, relatively low density, good thermal stability, and reliable mechanical performance.
The nominal composition of TC6 is:
Ti-6Al-2.5Mo-1.5Cr-0.5Fe-0.3Si
The alloy contains aluminum as an α-stabilizing element, while molybdenum, chromium, iron, and silicon contribute to β-phase stabilization and alloy strengthening.
TC6 is generally supplied in the annealed condition. Appropriate heat treatment can be applied when required by the material specification or application.
The alloy provides high room-temperature strength, good elevated-temperature strength, and good hot-working characteristics. It can be processed by rolling, forging, machining, and other suitable manufacturing methods.
TC6 is also known by the Russian designation BT3-1.
Typical Applications
TC6 titanium alloy is mainly used in aerospace and high-performance engineering applications, including:
Aircraft engine compressor components
Compressor discs
Compressor blades
Aircraft structural components
Frames and joints
Titanium alloy fasteners
Forged components
Die-forged components
Missile and spacecraft components
Chemical Composition – TC6 / BT3-1
| Element | Composition, wt.% |
|---|---|
| Titanium (Ti) | Balance |
| Aluminum (Al) | 5.5–7.0 |
| Molybdenum (Mo) | 2.0–3.0 |
| Chromium (Cr) | 0.8–2.3 |
| Iron (Fe) | 0.2–0.7 |
| Silicon (Si) | 0.15–0.40 |
| Oxygen (O) | ≤0.18 |
| Carbon (C) | ≤0.10 |
| Nitrogen (N) | ≤0.05 |
| Hydrogen (H) | ≤0.015 |
| Other, each | <0.10 |
| Other, total | <0.40 |
Chemical composition shall be confirmed according to the applicable material standard and purchase specification.
Mechanical Properties – TC6 / BT3-1
| Property | Minimum Value |
|---|---|
| Tensile Strength | 980 MPa |
| Yield Strength | 840 MPa |
| Elongation | 10% |
| Reduction of Area | 25% |
Actual mechanical properties depend on product thickness, heat-treatment condition, manufacturing process, and applicable specification.
Titanium Alloy Plate Specifications
| Parameter | Specification |
|---|---|
| Product | Titanium Alloy Plate |
| Materials | Gr1, Gr2, Gr3, Gr4, Gr5, Gr7, Gr9, Gr11, Gr12, Gr16, Gr23, TC6, TC11, TA7, TA19, TA16, etc. |
| Thickness | Customized according to grade and application |
| Width | Customized |
| Length | Customized |
| Supply Condition | Hot Rolled / Cold Rolled / Annealed |
| Surface | Pickled / Polished / Machined / Hot-Rolled |
| Manufacturing | Hot Rolling / Cold Rolling / Forging / Heat Treatment |
| Inspection | Chemical Analysis / Mechanical Testing / UT / Dimensional Inspection |
| Standards | ASTM / AMS / GB/T / GOST / Customer Specification |
Custom thicknesses, widths, lengths, and special material requirements can be manufactured according to customer drawings and technical specifications.
Manufacturing Process
Titanium alloy plates are manufactured using controlled rolling and heat-treatment processes to achieve the required mechanical properties, microstructure, dimensional accuracy, and surface quality.
A typical production process includes:
Raw Material Inspection
↓
Hot Rolling
↓
Heat Treatment
↓
Cold Rolling, if required
↓
Straightening
↓
Surface Treatment
↓
Cutting
↓
Dimensional Inspection
↓
Mechanical Testing
↓
Non-Destructive Testing
↓
Final Inspection
↓
Marking & Packing
The actual manufacturing process is selected according to the titanium grade, plate thickness, required mechanical properties, and applicable standard.
Surface Conditions
Different surface finishes are available according to application requirements.
Hot-Rolled Surface
Suitable for general industrial applications and subsequent machining or fabrication.
Pickled Surface
Acid pickling removes the oxide layer and surface contaminants generated during heat treatment and hot working.
Cold-Rolled Surface
Provides improved surface quality and dimensional accuracy for applications requiring tighter control.
Polished Surface
Available for applications requiring a smooth and uniform surface finish.
Machined Surface
Suitable for precision components and applications requiring controlled thickness or surface dimensions.
Quality Control
Changsheng Titanium applies strict quality control throughout the manufacturing process.
Depending on the material grade and customer requirements, inspection may include:
Chemical Analysis
Verification of titanium, alloying elements, and interstitial elements according to the applicable material specification.
Mechanical Testing
Tensile strength
Yield strength
Elongation
Reduction of area
Hardness, when required
Non-Destructive Testing
Ultrasonic Testing (UT)
Surface inspection
Metallographic examination
Other NDT methods according to customer requirements
Dimensional Inspection
Thickness
Width
Length
Flatness
Surface condition
Material traceability and inspection documentation can be provided according to project requirements.
Standards
Titanium plates can be manufactured and tested according to internationally recognized standards, including:
ASTM
ASTM B265 – Titanium and Titanium Alloy Strip, Sheet, and Plate
ASTM F67 – Unalloyed Titanium for Surgical Implant Applications
ASTM F136 – Ti-6Al-4V ELI for Surgical Implant Applications
Aerospace Standards
AMS 4911
AMS 4928
Other applicable AMS specifications
Other Standards
GB/T
GOST
Customer-specific standards
The applicable standard depends on the titanium grade, product form, application, and customer requirements.
Applications
Aerospace Industry
Titanium alloy plates are widely used in aerospace structures and engine components because of their high strength-to-weight ratio, corrosion resistance, and elevated-temperature performance.
Typical applications include:
Compressor components
Engine structures
Compressor discs
Compressor blades
Aircraft frames
Structural components
Aerospace fasteners
Missile and spacecraft components
Chemical Processing
Commercially pure titanium and corrosion-resistant titanium alloys are widely used in chemical processing equipment.
Typical applications include:
Reactors
Heat exchangers
Tanks
Piping systems
Chemical processing equipment
Acid handling equipment
Titanium is particularly suitable for environments containing chlorides and seawater.
Marine & Offshore Engineering
Titanium provides excellent resistance to seawater and chloride-containing environments.
Typical applications include:
Marine equipment
Seawater piping
Marine heat exchangers
Offshore equipment
Desalination systems
Shipbuilding components
Desalination
Titanium plates are used in desalination and seawater treatment equipment where long-term resistance to chloride-containing media is required.
Applications include:
Heat exchangers
Evaporators
Condensers
Seawater piping
Desalination equipment
Power Generation
Titanium alloy plates can be used in selected power-generation applications involving seawater, cooling water, and corrosive process environments.
Medical Industry
Selected titanium grades are used in medical applications because of their:
Excellent biocompatibility
Corrosion resistance
High strength-to-weight ratio
Good mechanical performance
Typical applications include orthopedic components, surgical instruments, and medical equipment.
Key Advantages of Titanium Alloy Plate
Excellent Corrosion Resistance
Titanium develops a stable passive oxide film that provides excellent resistance to many corrosive environments, including seawater and chloride-containing media.
High Strength-to-Weight Ratio
Titanium alloys provide high mechanical strength at relatively low density, allowing weight reduction in structural applications.
Low Density
Titanium is significantly lighter than many conventional structural metals while maintaining excellent mechanical performance.
Elevated-Temperature Performance
Selected titanium alloys maintain useful mechanical properties at elevated temperatures and are suitable for demanding aerospace and industrial applications.
Long Service Life
The strong protective oxide film and excellent corrosion resistance of titanium contribute to long service life in aggressive environments.
Wide Grade Selection
Commercially pure titanium and a broad range of α, α-β, and specialized titanium alloys are available.
Customized Manufacturing
Thickness, width, length, surface condition, heat-treatment condition, and inspection requirements can be customized according to customer drawings and project specifications.
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