Corrosion Resistant Titanium Composite Plates from China Factory - Suppliers for Heat Exchangers & Marine Applications
Product Description
Tatinium Composite Plates are generally composed of pure titanium or titanium alloy materials bonded with other metallic or non-metallic materials to achieve specific technical requirements and performance characteristics.
Product parameters
| Product Name | Titanium Cladded Composite Plate |
| Material | Pure titanium and Titanium alloy |
| Titanium Grade | GR1 GR2 GR3 GR5 |
| Standard | ASTM B265 |
| Shape | Titanium foil strip/Titanium sheets plate/Titanium coil |
| Thickness | 0.02mm~100mm |
| Width | 10-3000mm,customized |
| Length | Customized |
| Surface | Pickled/Sandblasting/Polishing |
| Main Technique | Hot Rolled /Cold Rolled |
| Application | Metallurgy, Electronics, Medical, Chemical, Petroleum, Pharmaceutical,aerospace, etc. |
Production Processes
A controlled amount of explosive is placed on top.
Detonation is initiated from one end.
The enormous energy released by the explosion accelerates the top plate (Compositeder, e.g., titanium) downwards at high velocity.
This causes a high-velocity, oblique collision with the base plate (e.g., steel), creating localized plastic flow and metallurgical bonding at the interface ("fluid-like behavior").
This is a solid-state, cold-welding process. The bonded plate can subsequently be hot-rolled to the desired final thickness.
Continuous Hot Rolling Method: The two plates are assembled with steel strips inserted along the edges. The edges are sealed by arc welding in air. The assembly is then continuously hot-rolled in a tandem mill to the required thickness before being extracted.
Performance Characteristics
Applications
Used in aircraft structural components, engine parts, spacecraft hulls. Their exceptional strength and corrosion resistance ensure stable operation of aerospace components under extreme environments.
Widely applied in chemical processing equipment, piping, vessels, and tanks. Capable of withstanding harsh conditions including acids, alkalis, high temperatures, and high pressures. Exhibits excellent corrosion resistance in strong oxidizing acids, formic acid, acetic acid, organic acids, and other aggressive media.
An ideal material for ship structures, offshore platforms, etc., offering resistance to corrosion and abrasion in marine environments.
Used in the manufacture of prostheses, surgical instruments, dental equipment, and other medical devices. Benefits include biocompatibility (non-toxic, hypoallergenic), and high corrosion resistance (non-rusting).
Applicable in components for high-performance racing cars and transport vehicles. Enhances durability and safety. Its favorable thermal and electrical conductivity can also improve component performance.
Frequently Asked Questions
They are materials composed of pure titanium or titanium alloy bonded with other metallic (like steel or aluminum) or non-metallic materials (like carbon fiber or ceramics) to combine their technical advantages.
They are manufactured to the ASTM B265 standard and are available in titanium grades including GR1, GR2, GR3, and GR5.
Bonding is primarily achieved through three techniques: Explosive Bonding (using controlled explosive energy to cold-weld metals), Roll Bonding (vacuum-sealing and hot rolling), and Vacuum Welding combined with rolling.
The high bond strength is achieved through precise process parameter control. For instance, in titanium-steel composites, a thin Titanium Carbide (TiC) layer forms at the interface, preventing brittle compounds and creating a "pinning effect."
They are heavily utilized in Aerospace (for structures and engines), the Chemical Industry (for corrosion-resistant vessels), Marine Engineering (for offshore platforms), the Medical Field (for implants and tools), and the Automotive Industry.



