Iridium Oxide Coated Titanium Anode
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Iridium Oxide Coated Titanium Anode

Iridium Oxide Coated Titanium Anode

Base metal Gr1, Gr2 titanium
Temperature range <60℃
Application current <15000A
Oxygen evolution potential <1.45V
Fluoride content <50 mg/L Precious metal content 8-13 g/m2
Coating thickness 8-15μm
PH value 1-12
Improve life 300 hours-400 hours
Products Description

What-is-Iridium-Tantalum-Coated-Titanium-Electrode

 

PRODUCT

Iridium oxide coated titanium anodes are specialized electrochemical components. They consist of a titanium-based material coated with a layer of iridium oxide. This coating gives the anode unique properties, making it very effective in a variety of applications.
The iridium oxide coating enhances the anode's durability, corrosion resistance and stability in harsh environments. It also promotes efficient oxygen evolution reactions, which are critical in processes such as electroplating, water treatment and electrolysis.
Due to its excellent properties, they are widely used in industries that require precise control of electrochemical processes. These anodes help improve performance, longevity and cost-effectiveness in applications ranging from metal surface treatment to chlorine production.

Products 

Iridium oxide coated titanium anodes

Iridium oxide coated titanium anodes

Iridium oxide coated titanium anodes

Iridium oxide coated titanium anodes

Iridium oxide coated titanium anodes

Iridium oxide coated titanium anodes

Iridium oxide coated titanium anodes

Iridium oxide coated titanium anodes

Products parameters
Dimensions (for reference):

 Bar: diameter 10mm-50mm
 Wire: diameter 0.5mm-10mm
 Pipe: diameter 10mm-200mm
 Plate: 0.5mm-5mm thick
 Mesh: 0.5mm-2.0mm thick

Not-Just-Another-Titanium-Electrode-Manufacturer

specifications

Coating materia IrO2 + Ta2O5 + X
Base metal Gr1, Gr2 titaniuml
Temperature range <60℃
Application current <15000A
Oxygen evolution potential <1.45V
Fluoride content <50 mg/L
Precious metal content 8-13 g/m2
Coating thickness 8-15μm
PH value 1-12
Improve life 300 hours-400 hours
Titanium anode shapes plates, tubes, mesh, rods, wires, machined parts

 

Products application
application

Let's explore some of the important application areas of these anodes:

application

01

Electroplating

They stand out for their high electrical conductivity and corrosion resistance. These qualities ensure an extended service life of the anode while attracting metal ions to form a strong metal coating on different surfaces. This results in efficient and long-lasting plating results.
The use of iridium oxide-coated titanium anodes in electroplating improves process efficiency and effectiveness. By reducing costs, extending anode life and delivering consistent performance, these anodes provide a reliable and cost-effective solution to a variety of plating requirements.

02

Producing Aluminum Foil

In the production of aluminum foil, the use of iridium oxide-coated titanium anodes, also known as MMO anodes, is indispensable. These anodes facilitate the transmission of electrical current, allowing the electrolysis of aluminum in the electrolyte solution.
The importance of iridium oxide-coated titanium anodes in aluminum foil production cannot be overstated. Their excellent electrical conductivity and corrosion resistance greatly increase the efficiency of the electrolysis process.
This unique combination ensures stable and efficient deposition of aluminum from the electrolytic solution, resulting in consistent and reliable results in aluminum foil production.

application

application

03

Electrolytic Copper Foil Production

Iridium oxide coated titanium anodes, also known as MMO anodes, play a vital role in copper foil electrolysis production. These anodes attract metal ions from the electrolyte, promoting their deposition onto the substrate to form copper foil.
Their excellent electrical conductivity enhances current transmission and optimizes the electrolysis process. Engineered to withstand corrosion, these anodes thrive in demanding production environments, ensuring consistent performance and minimizing maintenance needs and costs.

04

Galvanized Steel Sheet

Iridium oxide coated titanium anodes excel in galvanized steel manufacturing. They are highly conductive and corrosion-resistant, making them an excellent choice for electroplating. This pairing of titanium and iridium oxide creates a strong anode for galvanized steel.
During this process, the anode is critical in delivering electrical current to the galvanized steel surface. Iridium oxide coated titanium anode ensures uniform coating thickness and improves efficiency.
The corrosion resistance of iridium oxide extends the life of the anode and reduces maintenance and replacement. This reduces costs and increases productivity.

application

application

05

Water Treatment

It transforms water treatment through efficient, environmentally friendly electrochemical disinfection and electroflocculation. They contain no harmful chemicals and ensure clean water without harming the environment. Extended service life also improves cost-effectiveness.

 
 
 
Products features

Advantages of Iridium Oxide Coated Titanium Anodes
Iridium oxide coated titanium anodes offer several distinct advantages:
 Strong corrosion resistance:

The coating provides an anti-corrosion barrier, making the anode durable and performing consistently, saving maintenance costs.
Efficient Oxygen Evolution:

These anodes have low oxygen evolution overpotential, making them efficient and reducing unwanted reactions.
 Long-lasting and good electrocatalytic activity:

They are known for their long service life and high activity, making them suitable for tasks such as metal extraction and electroplating.
 Can be reused:

After initial decommissioning, these anodes can be put back into service, reducing costs and waste.
 High current density processing:

They can manage high current densities, promoting efficient production, especially in high output settings.
 

Products using tips

Please pay attention to the following precautions when using them:
Avoid scratches: To maintain the performance of the electrode, please avoid scratching the precious metal coating with hard objects.
Avoid certain electrolytes: Avoid electrolytes containing fluorine, cyanide and bromide ions as they can cause short circuits.
Microcurrent protection: At the end of production, ensure microcurrent protection.
Avoid high temperatures: Make sure the electrolyte temperature is not too high.
Avoid high current densities: Avoid using high current densities, which will intensify the reaction and shorten the life of the anode.
 Gradually increase the current: Gradually increase the loading current during the startup process.
Stable voltage and current: Ensure stable voltage and current output.
 Proper cleaning and storage: Always clean the electrode with water after use, dry it thoroughly, and store it in a dry place.
Beware of high currents: Please note that high currents can adversely affect the service life of the anode.
 

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how to choose perfect Product?

When selecting it, making an informed decision is critical to the success of your project. The following step-by-step guide can help you purchase an anode that suits your needs:
►Assess your requirements:

Start by understanding the specific needs and requirements of your project. Clearly define the purpose for which you need the anode and the expected results.
►Electrolyte compatibility: Check the composition of the electrolyte solution used in the anode. Make sure the anode is compatible with the electrolyte to avoid unwanted reactions or corrosion.
►Current Density Considerations: Consider the current density per square meter. This value represents the amount of current a single anode can carry relative to its surface area. Choose an anode that meets the current density required for your application.
►Temperature range: Check the temperature range within which the anode can operate effectively. Select anodes that can withstand process temperature conditions without deterioration.
►pH tolerance: Consider the pH that the anode can tolerate without degrading. Make sure the pH tolerance of the anode is consistent with the pH range of the electrolyte solution.
►Define intended use: Clearly define how you intend to use the anode and the end product you want to achieve. Different applications may require specific anode characteristics.
►Life Estimation: Study the expected life of the anode. Longer service life saves you replacement costs and downtime in the long run.
►Budget and Pricing: Consider pricing and evaluate whether it fits your budget. While quality is important, finding a balance between performance and cost-effectiveness is also crucial.
►Supplier Research: Research reputable suppliers or manufacturers of Iridium Oxide Coated Titanium Anodes. Make sure they have a track record of producing high-quality and reliable products.
►Consultation: If required, consult an expert or professional in the field who can provide guidance based on their experience.
► Review and Comparison: Compare different anode options based on the above factors. Evaluate their specifications, features and benefits.
►Trial if possible: If feasible, consider testing sample anodes before purchasing in bulk to verify their performance in a specific application.
By following these steps and considering these factors, you can make an informed choice and select the most suitable iridium oxide coated titanium anode that meets your project requirements, ensuring optimal efficiency and successful results.

 

Competitive Advantage

Our iridium oxide coated titanium anodes stand out from the competition through several key factors:
High-quality substrate:

We carefully select high-purity TA1 titanium substrate and follow strict processes and parameters. These materials undergo extensive third-party testing and certification to ensure a perfectly smooth, defect-free surface.
Imported coating materials:

Our electroplating process uses imported precious metals, resulting in oxide metal coatings with extremely high purity. This high-purity coating gives our anodes significant corrosion resistance.
 Precision engineering for optimal results:

Our production process involves precise digital and mechanical control of the dimensions of the titanium substrate. This adherence to strict production standards ensures consistent quality at every level. Additionally, we offer customization of anode sizes and shapes to meet specific project needs.
Nano-scale coating for enhanced adhesion:

Our 18-step coating process ensures a uniform oxide layer. A variety of formulations are available to suit different environments. Through nanoscale grain refinement, we significantly enhance the bond between the coating and the substrate. This advancement extends the overall service life of the electrode.
Unique Longevity Formulations:

We offer custom electrode coatings designed for specific field applications. Each batch of products undergoes rigorous testing to evaluate durability and quality performance. Our proprietary technology formula ensures an extended anode life.
By choosing our iridium oxide coated titanium anodes, you can be confident that you are choosing a high-quality product that is scientifically engineered for exceptional longevity and superior performance.

 

How do we ensure the quality of the anodes?
Test Items Test Conditions Qualification
Bonding strength 3M adhesive tape No black marks on the tape
Bend 180° on Φ12mm round shaft No peeling at the bend
Uniformity test X-Ray Fluorescence Spectrometer ≤15%
Coating thickness X-Ray Fluorescence Spectrometer 2-12μm
Chlorination potential 2000A/m2,Saturation NaCl,25±2℃ ≤1.13V
Analytical chlorine polarizability 200/2000A/m,Saturatedodium chloride,25±2℃ ≤40mV
Extended service life 40000A/m2,1mol/L H2SO4,40±2℃ ≥900h(Ir+Ta 15g)
Intensive weightlessness 20000A/m2,8mol/L NaOH,95±2℃, electrolysis 4h ≤10mg

 

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Our Service Processes

 

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Address: No. 28, Gaoya Industrial Park, Gaoxin District, Baoji City, Shaanxi Province.
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Number: 0086-0917-3292780
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Phone: 
+86 18700703333 Elsa lin

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