Your Professional Titanium Stamping Parts Supplier
Shaanxi Huiyou Shengbang Precision Foil Manufacturing Co., Ltd. specializes in the production of Non-Ferrous Metal Foils, Refractory Metal Foils, Rare (Precious) Metal Foils, Speaker Parts, Titanium Stamping Parts,etc.
Product Application
Our company's titanium foil is used in 3C, chemical, and battery industries; tin foil is used in the electronics field to make circuit boards, etc.zirconium foil is mainly used in nuclear reactors and aerospace; copper foil is used in condensers, heat exchangers, etc.
Advanced Production Equipment
Our company has advanced Sendzimir twenty-high rolling mill, four-high rolling mill, tensioning and leveling machine, annealing furnace, metal slitting machine, foil cleaning and deoiling unit and other equipment.
Quality Guaranteed
Shaanxi HYSB Precision Foil Co., Ltd.Companies get GB/ T190012016/ 1S09001: 2015Quality management system certification.
Quick response
We promise to respond to your inquiries within 24 hours to ensure that you receive the information and support you need in a timely manner.
Titanium Anode Plate
Titanium anode plate is a type of electrode used in various electrochemical processes, including electroplating, electrowinning, and electrolysis. They are made of pure titanium or titanium alloy and have a specific surface treatment that makes them suitable for use as an anode in these processes.
The surface treatment of titanium anode plate involves creating a layer of titanium oxide on the surface of the plate. This layer is created through a process called anodization, which involves applying an electrical current to the titanium plate while it is immersed in an electrolyte solution. This process causes an oxide layer to form on the surface of the titanium, which provides protection against corrosion and increased durability.
Products Features
High surface area: The platinum coating provides a high surface area for electrochemical reactions, leading to higher current efficiency and better performance.
Versatility: Platinum-coated titanium anode plates can be used in a wide range of electrochemical processes, including electroplating, electrowinning, and electrolysis.
Biocompatibility: Titanium is biocompatible and non-toxic, making it suitable for use in biomedical applications such as implants. The platinum coating can further enhance biocompatibility and reduce the risk of reactivity or toxicity.
Improved energy efficiency: The high catalytic activity and high surface area of the platinum-coated titanium anode plate can improve energy efficiency and reduce the energy required for electrochemical processes.
Long lifespan: The platinum coating provides protection against corrosion and degradation, leading to a longer lifespan compared to other types of anodes.
Uniform coating: Electroplating allows for a uniform coating of platinum on the titanium anode plate, ensuring consistent performance and durability.
Titanium Anode Types
Chlorine-Evolving Anode (Ruthenium-based Coated Titanium Anode)
Suitable for electrolytes with high chloride ion content, such as seawater or brine electrolysis. Our products include ruthenium-iridium titanium anodes and ruthenium-iridium-tin titanium anodes.
Oxygen-Evolving Anode (Iridium-based Coated Titanium Anode)
Suitable for sulfuric acid environments. Our products include iridium-tantalum anodes, iridium-tantalum-tin titanium anodes, and high-iridium titanium anodes.
Platinum-Coated Anode
Uses titanium as the base material with a platinum coating thickness typically between 0.5–5 μm. Platinum titanium mesh sizes are generally 12.5×4.5 mm or 6×3.5 mm.

Anode’s Role in Different Processes
|
Process Type |
Anode’s Primary Function |
Example Application |
|
Electroplating |
Provides electrons, may dissolve to supply metal ions |
Coating jewelry or industrial parts |
|
Water Electrolysis |
Facilitates oxygen evolution (splitting water) |
Producing high-purity hydrogen and oxygen |
|
Cathodic Protection |
Sacrifices itself to protect another metal |
Protecting ship hulls, pipelines, water heaters |
|
Chlor-Alkali Industry |
Facilitates chlorine gas evolution |
Producing chlorine and caustic soda |
|
Electrowinning/Refining |
Drives metal ions out of solution onto cathodes |
Extracting or purifying metals like copper |
Comparing Common Anode Materials
|
Material |
Key Advantages |
Key Disadvantages |
Typical Use Examples |
|
Titanium (MMO Coated) |
Excellent corrosion resistance, long life, stable, efficient |
Higher initial cost compared to some traditional materials |
Chlor-alkali, water treatment, electroplating, cathodic protection |
|
Graphite |
Relatively low cost, good electrical conductivity |
Brittle, consumed during operation, lower current density limits |
Older electrowinning, some electrolysis processes |
|
Lead & Lead Alloys |
Inexpensive |
Environmental concerns (lead), can form passive insulating layers |
Some electrowinning (e.g., zinc), chromium plating |
|
Platinum (Platinized Ti) |
Excellent catalyst, very stable, high efficiency |
Very high cost, though platinizing titanium reduces this |
Lab use, specialized electroplating, high-purity processes |
|
Magnetite |
Relatively stable in some specific solutions |
Brittle, lower conductivity than metals, can be passive |
Some chlorate production, niche applications |


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FAQ
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