Titanium-clad copper is a composite material created primarily through explosive welding or rolling (with explosive welding being more common). It combines the excellent conductivity, cost-effectiveness, and formability of copper with the exceptional corrosion resistance of titanium.

Titanium-copper clad materials include titanium-copper rods, titanium-copper plates, and titanium-copper tubes. Among them, the titanium-copper clad rod is the most widely used.

Due to its outstanding conductivity and corrosion resistance, titanium-clad copper cathodes are widely used in electrochemical applications. The copper core ensures efficient conductivity, while the titanium cladding provides corrosion protection, making it suitable for various corrosive environments. In electroplating, titanium-copper cathodes extend equipment life and improve plating efficiency; in electrolysis and electrorefining, their durability excels in metal extraction and refining, particularly in copper, zinc, and nickel recovery. In chlor-alkali production, they resist chlorine corrosion, ensuring long-term use. Additionally, titanium-clad copper cathodes effectively remove heavy metals and pollutants in water and wastewater treatment, and in cathodic protection systems, they offer corrosion protection for pipelines and marine structures.

PRODUCING CONDITION

ASME SB898, ASTM B898, GB/T 8547-2019, GB/T 8546-2017, GB/T 12769-2015 etc.

ASME SB265, ASTM B265, ASME SB348, ASTM B348, ASME SB381, ASTM B381, AMS 4901T, AMS 4911N, AMS 4905, AMS 4911, AMS 4919, AMS 4928, AMS-T-9046, DMS1592, BS TA10, BS TA56 ect.

ASTM B551; ASME SB551; GB/T 8769;ASTM B265;ASME SB-265;GB/T 3621;ASTM B708 etc.

Clad Layer THX.TTL THX.Max. WidthMax. Length
Explosivemin. 2mm4.5m14m
Explosive + Rolling0.8-2mmmax. 152mm4.5m14m
Rolling0.8-14mm8-40mm4.5m14m
Thickness ratio of the cladding to the base material should be greater than or equal to 1:3 for roll bonding.
We can produce wide titanium-steel clad plates using a 5-meter rolling mill, ensuring the cladding layer is seamless.
Others could be tailored due to customer’s unique need.

characteristics

Different composite methods have varying requirements for the cladding and base materials. We can provide customized production based on the specific needs of our customers.

Material Test Data

The following mechanical performance tests are based on  ASTM B265 Gr. 1 (TA1) + ASTM B152, C11000 (T1) cladded plate, with a thickness of 3+6mm for example.

Shearing strength: 204 MPa.
Bonding strength: 191-216MPa.
Interfacial Microhardness: 211 HV.
Bonding method: explosive bonding.

Third Party Certificate

In accordance with ASTM A578/A578M Level B, we perform 100% ultrasonic testing (UT), ensuring a bonding rate of over 99%. Tests for chemical composition, mechanical properties, low-temperature impact, hardness, PWHT (Post Weld Heat Treatment), and HIC (Hydrogen-Induced Cracking) can be conducted as per customer requirements.

Additionally, we provide EN 10204 – 3.2 certification.

CERTIFICATION

The company has achieved ISO 9001 Quality Management System certification, ISO 14001 Environmental Management System certification, and Occupational Health and Safety Management System certification. Other certifications, such as PED and API, are currently in the application process. Our clad plate products have also received CE certification for pressure vessels, while our marine clad plates have been certified by six national classification societies, including CCS, DNV GL, LR, BV, RINA, and ABS.

DELIVERY AND PACKING

Below is our standard packing method for export transportation, for other special requirements from our customers, we can customize. The surface of the clad plates is covered with a PE plastic film, followed by a layer of hard cardboard for protection. The outermost layer is waterproofed, and labels are applied to ensure effective identification. The product is then loaded for shipment.

FAQ

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