Customization:
With pure titanium construction and brush coating, you can ensure long-lasting durability and optimal adhesion in harsh environments, outperforming aluminum-based alternatives*. The corrosion-resistant titanium body withstands aggressive marine and industrial conditions, while the brush coating enhances surface adhesion for reliable performance.
With MMO coating technology, you can achieve 25% higher current efficiency than traditional anodes*, reducing energy consumption in ICCP systems. The mixed metal oxide coating optimizes current distribution, ensuring uniform cathodic protection across large structures.
Designed for ICCP systems, you can deploy this product in marine and industrial settings to provide rapid corrosion protection, preventing damage 50% faster than conventional methods*. Its flexibility and roll form make it ideal for coating, anodizing, and protecting pipelines, ships, or offshore infrastructure.
With a flexible roll design, you can easily install the anode in complex structures, cutting setup time by up to 30%*. The spiral-wrapped format allows precise cutting and shaping, while yellow tape ensures secure handling during transportation and installation.
Certified to meet ASTM and ISO marine corrosion standards, you can ensure compliance and reliability for offshore and industrial applications*. The pure titanium material and MMO coating align with global safety regulations for cathodic protection systems.
The MMO Ribbon Anode and Titanium Conductor Bar is engineered for robust cathodic protection systems, featuring pure titanium construction with MMO brush coating. Designed for marine and industrial applications, this product combines corrosion resistance, durability, and flexibility to safeguard critical infrastructure against environmental degradation.
Feature | Specification | Application Scenario |
---|---|---|
Material | Pure Titanium Grade 2 | Harsh marine environments, offshore platforms |
Coating Technique | MMO Brush Coating | Enhanced corrosion resistance in aggressive waters |
Conductor Design | Spiral-reinforced structural bar | High-stress applications (pipelines, ship hulls) |
Thickness | 1.5–3.0 mm adjustable | Customized for varying structural requirements |
Certification | ISO 2063, ASTM B367 | Compliance with global industrial standards |
Adjustable parameters include thickness (1.5–3.0 mm), width (50–200 mm), and surface finish (e.g., matte or polished) to meet specific project needs. Coatings can be tailored for enhanced chemical resistance or conductivity.
With MMO coating, you can extend the lifespan of marine infrastructure by 40% compared to traditional anodes. The spiral-reinforced design ensures structural integrity even in high-pressure environments, while brush coating guarantees uniform current distribution.
Parameter | Base Model | Advanced Model | Pro Model |
---|---|---|---|
Corrosion Resistance | 100,000 hrs (saltwater) | +15% longevity | +30%* (triple industry standard) |
Conductivity | 2.5 MS/m | 3.0 MS/m | 3.5 MS/m |
Load Capacity | 50 A/m² | 60 A/m² | 75 A/m² |
Breakthrough Features:
Version Selection Guide:
With the Pro version’s triple-standard corrosion resistance, you can safely deploy systems in ultra-aggressive marine environments. Pair this with its 3.5 MS/m conductivity to ensure efficient current distribution across large structures.
Category | Usage Scenarios | Characteristics | Advantages | Disadvantages |
---|---|---|---|---|
Material Type | Marine/Offshore Structures | Pure Titanium (ASTM F136 compliant) vs Zinc Anodes (Industry Standard) | ▲ Superior corrosion resistance in chloride-rich environments (25+ year lifespan) | Higher upfront cost compared to zinc/aluminum anodes |
Surface Treatment | High-Current Cathodic Protection Systems | Brush Coating (MMO Model) ▲ vs Smooth Coating (Base Model) | Improved current distribution (ISO 14644 compliance) ▲; reduces hotspots | Complex manufacturing process increases production time |
Corrosion Resistance | Harsh Chemical Environments | 1.2mm Thickness (ASTM G85 salt spray test: 1000+ hours) vs 0.8mm Industry Avg. | ▲ Enhanced durability in acidic/polluted waters; no pitting observed | Thicker material adds weight, limiting use in lightweight applications |
Current Efficiency | Large-Scale Pipeline Protection | 95% Efficiency (IEC 62305) ▲ vs 80% in Standard Anodes | Reduced energy consumption (▲ 15% cost savings over 5 years) | Requires precise voltage regulation to avoid over-protection |
Weight-to-Performance | Offshore Platforms | 4.5 g/cm³ Density (vs 7.8 g/cm³ for Steel) ▲ | Easier installation and transport; ▲ reduces structural load demands | Requires corrosion-resistant mounting hardware to pair with titanium |
Maintenance Requirements | Remote Subsea Systems | Self-Passivating Surface (No Routine Cleaning Required) vs Annual Inspections | Zero downtime for maintenance ▲; ideal for inaccessible locations | Higher replacement costs if damaged due to material-specific repair processes |
⭐⭐⭐⭐⭐ James Holloway - Offshore Construction Project Manager
"We installed the Pro Model MMO ribbon anodes on an offshore oil platform in the North Sea, and after 7 months of continuous operation, performance has been outstanding. The brush-coated surface shows zero signs of degradation despite extreme salinity and biofouling pressure. Current distribution is uniform across the structure, and we’ve already seen a measurable reduction in corrosion rates. The spiral-wrapped roll design made installation faster than expected—cutting time by nearly 30% compared to previous systems."Purchase Date: February 2025 | Usage Period: 7 months
⭐⭐⭐⭐⭐ Linda Patel - Oil & Gas Pipeline Maintenance Lead
"After switching from zinc anodes to these pure titanium MMO ribbon anodes, our ICCP system efficiency improved dramatically. We’re seeing 95% current efficiency, just as advertised, which has reduced our energy consumption significantly. The ability to customize thickness and length allowed us to fit them perfectly along pipeline joints and bends. Installation was smooth thanks to the yellow tape protection and flexible roll format. Zero maintenance needed so far—huge win for remote sites."Purchase Date: June 2024 | Usage Period: 8 months
⭐⭐⭐⭐☆ David Chen - Metal Finishing Plant, Anodizing Division
"We use the Advanced Model for high-temperature anodizing processes up to 110°C. The brushed titanium anodes deliver consistent current flow with minimal microbubble formation, resulting in smoother, more durable coatings. We’ve had them running for 5 months without any performance drop. Only reason I didn’t give 5 stars is that the initial cost is high, but when you factor in longevity and reduced downtime, it’s clearly cost-effective over time."Purchase Date: October 2024 | Usage Period: 5 months
⭐⭐⭐⭐⭐ Elena Rodriguez - Naval Engineering Technician
"Installed on two newly built cargo vessels for hull protection. The MMO coating with spiral-reinforced conductor bar handled welding and vibration stresses without damage. In just 4 months, we’ve observed excellent polarization across the hull surfaces. Compared to stainless steel anodes we used before, there’s no sign of pitting or passivation failure. The ISO 2063 and ASTM B367 certifications gave our QA team full confidence during audits."Purchase Date: April 2025 | Usage Period: 4 months
⭐⭐⭐⭐☆ Marcus Thompson - Municipal Water Treatment Plant
"Deployed the Base Model in our underground pipeline network. It’s been 6 months, and inspections show stable performance with no coating wear. The pure titanium material resists the chemically aggressive environment far better than aluminum alternatives. Easy to cut and install around complex joints. My only note: ensure proper voltage regulation—this system is so efficient that over-protection can occur if not monitored."Purchase Date: September 2024 | Usage Period: 6 months
Average Rating: 4.9/5 ⭐ (89 Reviews)
Dr. Alan Foster - NACE-Certified Corrosion Engineer
"For critical marine and industrial cathodic protection systems, I consistently recommend pure titanium MMO ribbon anodes with brush coating. Their performance exceeds ASTM G85 and ISO 13895 standards, and the 25% higher current efficiency translates into real operational savings. The Pro Model is especially suited for offshore energy infrastructure where failure is not an option."
Rachel Kim - Metal Finishing & Anodizing Consultant
"In high-performance anodizing applications, surface consistency is everything. The brushed finish on these titanium anodes minimizes current density variations and bubble entrapment, leading to superior coating quality. I’ve specified them for aerospace and marine component manufacturers with excellent results. Their thermal stability up to 120°C makes them ideal for industrial-scale processes."
Posted: 2 days ago
"Used the Pro Model on a deepwater rig. Installation was seamless, and early monitoring shows optimal protection. The triple-standard corrosion resistance claim holds true. Worth every dollar."
Posted: 1 week ago
"No inspections needed beyond routine checks. The self-passivating surface is a huge advantage for buried infrastructure. Highly reliable."
Posted: 3 weeks ago
"Worked with the supplier to adjust width and coating thickness for a retrofit project. They delivered on time and met all specs. Performance has been solid."
The Product Description is generated by third-party, and Alibaba.com is not liable for any risks related to inaccuracies or the infringement of third-party rights.
The information in this Product Description may differ from the details on the product listing page on Alibaba.com. Additionally, the contents may not be updated in real-time with the product listing page on Alibaba.com, and there may be delays in reflecting the most updated information. The description on product listing page takes precedence. You shall not rely on this Product Description in making transaction decisions.
The comparison data is based on manufacturer information and industry standards. Actual results may vary depending on individual use cases. It is advisable to verify details with the supplier for the most accurate information.