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Premium Quality Titanium Cathodes - China Suppliers & Factory for Titanium Clad Copper Hanger Bars and Plates

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Material: Titanium Clad Copper Hanger Bar  TA1, TA2, Gr1, Gr2 / C11000

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 Titanium Plate  TA1, TA2, Gr1, Gr2

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Specification: Customized according to customer’s drawing & requirements

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Examples include:

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Titanium Clad Copper Hanger Bar: 54*29*1470mm *custom drawing*
, Titanium Plate: 1149*950*3.0mm *custom drawing*

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Titanium Clad Copper Hanger Bar:  41.3*20*1270mm *custom drawing*
, Titanium Plate: 1107*980*3.0mm *custom drawing*

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Titanium Clad Copper Hanger Bar: 50*20*1247mm *custom drawing*
, Titanium Plate: 1489*838*3.25mm *custom drawing*

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Standards: Titanium Clad Copper Hanger Bar  GB/T 12769-2015

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Titanium Plate: GB/T 3621-2022  ASTM B265

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Titanium cathode plates are essential components in hydrometallurgy, particularly in electrolytic processes. Our products are manufactured using industrial pure titanium (like TA1, TAor titanium alloys. As a leading factory and supplier in China, we prioritize quality and precision in our titanium products to meet the diverse needs of our clients.

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    Product Features
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    1. Excellent Corrosion Resistance

    Titanium exhibits outstanding corrosion resistance in oxidative media and chloride ion environments, and can withstand the long-term erosion of acidic electrolytes such as copper sulfate, nickel sulfate, and zinc chloride. A dense oxide film (TiO₂) forms easily on its surface, which is highly stable and has a long service life (typically over 5 to 10 years).

    2. Good Electrical Conductivity & Low Resistance

    Titanium itself has a relatively high resistivity, but its conductivity can be significantly enhanced and the cell voltage reduced by applying special surface treatments, such as coating with noble metal oxide layers. Common coating materials include ruthenium-iridium (Ru-Ir) and platinum (Pt), which possess both catalytic activity and stability.

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    3. High Strength and Lightweight

    Titanium has a density of only 57% that of steel, yet its strength is close to that of common steel. It is easy to install and transport, and can withstand mechanical stress during the electrolysis process. It has good rigidity and is not prone to deformation under long-term current, ensuring the stability of the plate spacing.

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    4. Surface Characteristics Optimization

    The surface can undergo treatments such as sandblasting and activation to enhance the adhesion of the coating, or be designed with specific patterns to facilitate gas release (such as hydrogen evolution during electrolysis). The coating can reduce the overpotential for metal deposition and increase current efficiency.

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    5. Environmental Protection & Economy

    Long service life reduces replacement frequency and lowers maintenance costs. Titanium material is recyclable and requires less coating metal, meeting the requirements of green production.

    Application Field Analysis
    • 1 Hydrometallurgy (Electrolytic Extraction / Refining)
      Copper electrolysis: Used as the hanging ear of stainless steel cathode plates or as a substitute for some cathode components to produce high-purity cathode copper (above 99.99%).
      · Zinc electrolysis: Serves as the cathode plate in zinc sulfate electrolyte to deposit zinc metal, resistant to acid corrosion and easy to strip the zinc layer.
      · Nickel, cobalt, manganese electrolysis: Applied in sulfate or chloride systems, capable of withstanding high-temperature and strong acid environments.
    • 2 Electroplating Industry
      As insoluble cathodes or anodes, coating titanium cathodes are used in precious metal plating (such as gold plating and platinum plating), ensuring uniform current distribution.
    • 3 Chlor-alkali Industry
      In the ion-exchange membrane electrolytic cell, the titanium cathode plate serves as a component of the cathode chamber and is subject to the corrosion of high-temperature and high-concentration alkaline solution.
    • 4 Environmental Protection Field (Electrochemical Water Treatment)
      It is used in electrocoagulation, electro-Fenton and other processes to treat heavy metal-containing wastewater. The titanium substrate is corrosion-resistant and the coating has high catalytic activity.
    • 5 Preparation of New Energy Materials
      It is used as a cathode carrier in the electrolysis of lithium battery material precursors (such as electrolytic manganese dioxide) and in the field of hydrogen energy (electrolysis of water for hydrogen production).
    Conclusion
    🏭 Industry Insight

    Titanium cathode plates, with their advantages of corrosion resistance, lightweight, long service life and modifiable coating, have become the core components of high-end electrolytic processes. With the improvement of efficiency and quality in hydrometallurgy and the rapid development of the new energy industry, their application scenarios will further expand. Technological innovation is focused on high-performance coatings, structural lightweighting and cost optimization to meet the demands of green manufacturing and energy conservation.

    Baoji Special Steel Titanium Industry Co., Ltd. has been dedicated to researching and manufacturing composite electrode plate series products for nearly two decades. During this period, they have continuously improved the production equipment and gradually achieved production automation. Titanium cathodes and stainless steel cathode products have reached hundreds of thousands of pieces, which have been exported to countries such as South Africa, Chile, Zambia and Canada, and have established good long-term cooperative relationships with international renowned customers.

    Frequently Asked Questions
    Q What is a titanium cathode plate and how does it work in electrolysis?
    A titanium cathode plate is an electrode component made from titanium substrate, often coated with noble metal oxides such as ruthenium-iridium (Ru-Ir) or platinum (Pt). In electrolysis, it serves as the negative electrode where metal ions in the electrolyte are reduced and deposited onto its surface. The titanium base provides structural strength and corrosion resistance, while the coating enhances electrical conductivity and catalytic performance.
    Q Why is titanium preferred over stainless steel for cathode plates in hydrometallurgy?
    Titanium offers superior corrosion resistance compared to stainless steel, especially in acidic electrolyte environments such as copper sulfate, zinc sulfate, and chloride solutions. Its naturally forming TiO₂ oxide layer provides long-term protection without degradation. Additionally, titanium is significantly lighter than steel (only 57% of steel's density), making it easier to handle and install while maintaining high mechanical strength and dimensional stability during prolonged electrolysis.
    Q What is the typical service life of a titanium cathode plate?
    Under normal operating conditions, titanium cathode plates typically have a service life of 5 to 10 years or more. The longevity depends on factors such as the type and concentration of the electrolyte, operating temperature, current density, and the quality of the surface coating. Proper maintenance and periodic inspection can further extend their operational lifespan and reduce overall replacement costs.
    Q What surface treatments are applied to titanium cathode plates to improve performance?
    Common surface treatments include sandblasting to increase surface roughness and improve coating adhesion, chemical activation to remove the native oxide layer before applying functional coatings, and thermal decomposition coating with noble metal oxides such as ruthenium-iridium or platinum. These treatments reduce overpotential for metal deposition, enhance current efficiency, and facilitate gas release (e.g., hydrogen evolution) during the electrolysis process.
    Q In which industries are titanium cathode plates most widely used?
    Titanium cathode plates are widely used across several industries: hydrometallurgy (copper, zinc, nickel, cobalt, and manganese electrolytic refining), the electroplating industry (precious metal plating such as gold and platinum), the chlor-alkali industry (ion-exchange membrane electrolytic cells), environmental protection (electrochemical wastewater treatment including electrocoagulation and electro-Fenton processes), and the new energy sector (electrolytic manganese dioxide production and water electrolysis for hydrogen generation).
    Q Are titanium cathode plates environmentally friendly and cost-effective in the long term?
    Yes. Titanium cathode plates are considered both environmentally friendly and economically advantageous. Their long service life significantly reduces the frequency of replacements, lowering maintenance costs and production downtime. Titanium is a fully recyclable material, and the coatings require only small quantities of noble metals, minimizing resource consumption. These characteristics align with green manufacturing standards and support sustainable industrial production, making them a cost-effective long-term investment for electrolytic operations.