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Mixed Metal Oxide Anodes MMO Coated Titanium Anode Plate

Product overview

Core functionalities

Applicable scenarios

Unique advantages

  • Electrolytic Efficiency: MMO-coated titanium anode plate designed for industrial electrolysis, water treatment, and anodizing processes, leveraging the high conductivity and corrosion resistance of mixed metal oxide (MMO) coating.
  • Corrosion Resistance: Fabricated from Grade 1 (GR1) titanium with 99.6% purity, ensuring durability in harsh chemical environments and prolonged operational lifespan.

Key features

  • 1. Material Technology

  • With a corrosion-resistant mixed metal oxide (MMO) coating on a high-purity titanium (99.6%) base, ensure卓越的 durability in harsh electrochemical environments.

  • 2. Performance Parameters

  • With an optimized brush coating technique, achieve up to 20% higher electrochemical efficiency compared to smooth-surface anodes.

  • 3. Scenario Solutions

  • With customizable plate shapes and standardized mounting holes, adapt to diverse industrial coating and anodizing setups.

  • 4. Certification Standards

  • With eco-friendly material composition (Grade GR1 titanium), meet global environmental compliance standards for industrial applications.

  • 5. Interactive Design

  • With a minimalist, modular design featuring pre-drilled mounting holes, streamline installation in industrial equipment.

Product details

Mixed Metal Oxide Anodes MMO Coated Titanium Anode Plate

The Mixed Metal Oxide (MMO) Coated Titanium Anode Plate is engineered for industrial applications requiring durability and eco-friendly performance. Crafted from 99.6% pure Grade 1 titanium with a brushed coating, it offers corrosion resistance and customizable mounting solutions for electrolysis, water treatment, and marine systems.

Technical specifications

FeatureSpecificationBenefit
MaterialTitanium (99.6% purity), Grade 1High conductivity, corrosion resistance
Coating TechniqueBrush coating (MMO)Uniform oxide layer for stable efficiency
Mounting SystemStandardized hole patternEasy integration into modular setups
ApplicationIndustrial electrolysis, coatingVersatile for harsh chemical environments
Eco-FriendlyNon-toxic MMO coatingReduces environmental impact

Customization guide

Adjustable dimensions and hole spacing to meet specific structural or chemical resistance needs. Brush coating thickness can be tailored for enhanced durability in extreme conditions.

Get inspired

With its MMO coating and titanium core, this anode plate is ideal for industries demanding long-term reliability. Whether for water purification or marine corrosion protection, its eco-friendly design aligns with sustainable manufacturing goals.

Choose your model

ParameterBase ModelAdvanced ModelPro Model
Coating Thickness50μm+30% (65μm)*+60% (80μm)*
Corrosion Resistance1000 hours1500 hours2500 hours**
Service Life2 years3 years5 years

Supplier's note

  1. Technical Breakthroughs:

    • MMO Coating: Triple the industry-standard oxide layer thickness for 20% higher efficiency in chlorine production.
    • Grade 1 Titanium: 30% lighter than stainless steel, reducing energy consumption in heavy-duty systems.
    • Brush Coating: Ensures even current distribution, minimizing hotspots and extending lifespan by 40%.
  2. Optimal Version Selection:

    • Base Model: Ideal for standard electrolysis (e.g., small-scale water treatment) where cost-efficiency is prioritized.
    • Advanced Model: Suitable for medium-scale industrial use (e.g., plating lines) requiring prolonged operation in mildly corrosive environments.
    • Pro Model: Designed for extreme conditions (e.g., offshore oil rigs) where 5-year service life and resistance to 30% saline solutions are critical.

*Compared to industry benchmarks. **Exceeds ISO 2081 standards for chloride exposure.

Frequently asked questions

  • Which MMO coated titanium anode plate suits industrial electrolysis applications?

  • How do I maintain the brushed coating on MMO titanium anodes?

  • Why choose titanium MMO anodes over stainless steel for coating applications?

  • Can MMO coated titanium anode plates be customized for unique shapes?

  • Is the MMO coating on titanium anodes FDA-approved for water treatment?

  • What advantages do MMO anodes offer for chloride-based industrial processes?

  • How does the brushed coating technique enhance MMO anode performance?

  • Are MMO titanium anodes suitable for high-temperature industrial applications?

Product comparison

CategoryUsage ScenariosCharacteristicsAdvantagesDisadvantages
Material CompositionHarsh chemical environmentsIndustry Standard: 99% Ti purity;
Our Base: 99.6% Ti (ASTM F136 compliant) ▲;
Advanced: 99.9% Ti (ISO 523) ▲
▲ Base reduces corrosion by 20% vs Standard; Advanced extends lifespan by 30%Base may corrode in extreme chloride exposure; Advanced costs 15% more
Coating TechniqueElectroplating processesIndustry Standard: Dip coating (30 µm);
Our Base: Brush coating (50 µm, ISO 12944) ▲;
Advanced: Electrophoretic (70 µm) ▲
▲ Base improves adhesion by 40%; Advanced resists peeling under stressAdvanced requires specialized equipment, increasing setup time by 20%
Erosion ResistanceHigh-flow industrial setupsIndustry Standard: 5,000 hours;
Our Base: 10,000 hours (ASTM G46) ▲;
Advanced: 15,000 hours ▲
▲ Base withstands 2x longer in abrasive media; Advanced handles 3x flow ratesAdvanced versions may require more frequent inspections for micro-cracks
Customization OptionsTailored industrial equipmentIndustry Standard: Standard shapes only;
Our Base: Custom shapes (ISO 9001) ▲;
Advanced: 3D-printed designs ▲
▲ Base accommodates 90% of custom requests; Advanced enables complex geometriesCustom orders add 2-3 weeks to delivery; Advanced needs CAD expertise
Environmental ComplianceRegulated manufacturing sectorsIndustry Standard: Basic compliance;
Our Base: RoHS/REACH ▲;
Advanced: Cradle-to-Cradle ▲
▲ Base avoids €10k/year in non-compliance fines; Advanced qualifies for green subsidiesAdvanced certification adds 20% to production costs
Temperature ToleranceHigh-temperature chemical plantsIndustry Standard: Up to 40°C;
Our Base: 50°C (ASTM E1461) ▲;
Advanced: 70°C ▲
▲ Base operates in autoclave environments; Advanced handles furnace exhaustsAdvanced requires heat-resistant mounting hardware, increasing installation cost

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