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  • Titanium Foam Titanium Powder Sintered Sheet for PEM Fuel Cell
  • Titanium Foam Titanium Powder Sintered Sheet for PEM Fuel Cell
  • Titanium Foam Titanium Powder Sintered Sheet for PEM Fuel Cell
  • Titanium Foam Titanium Powder Sintered Sheet for PEM Fuel Cell
  • Titanium Foam Titanium Powder Sintered Sheet for PEM Fuel Cell
Titanium Foam Titanium Powder Sintered Sheet for PEM Fuel Cell

Titanium Foam Titanium Powder Sintered Sheet for PEM Fuel Cell

  • >= 1 Pieces
    $22

Customization:

size(Min.Order: 1 pieces)

Titanium Foam Titanium Powder Sintered Sheet for PEM Fuel Cell

Product overview

Core functionalities

Applicable scenarios

Unique advantages

  • PEM Fuel Cell Component: Designed as a sintered titanium foam sheet for use in proton exchange membrane (PEM) fuel cells, providing structural support and enhancing gas diffusion efficiency.
  • Material Performance: Made of 99.6% pure titanium (Grade 1), offering corrosion resistance, thermal stability, and high mechanical strength for industrial applications.

Key features

  • 1. Material Technology

  • With 99.6% pure titanium (Grade GR1) and a sintered foam structure, you can achieve exceptional corrosion resistance and optimal gas diffusion in PEM fuel cell applications.

  • 2. Interactive Design

  • With customizable processing services (bending, cutting, welding), you can tailor the sheets to fit specific PEM fuel cell system configurations.

  • 3. Performance Parameters

  • With optimized porosity from the sintered process, you can enhance oxygen and hydrogen diffusion efficiency, boosting fuel cell performance.

  • 4. Scenario Solutions

  • Designed for industrial PEM fuel cell systems, you can ensure reliable operation in high-temperature and corrosive environments.

  • 5. Certification Standards

  • Certified to ASTM G3-14 corrosion resistance standards, you can meet stringent industrial quality requirements.

Product details

Titanium Foam Titanium Powder Sintered Sheet for PEM Fuel Cell

The Titanium Foam Titanium Powder Sintered Sheet for PEM Fuel Cell is a high-performance industrial material engineered for applications requiring exceptional durability, thermal stability, and corrosion resistance. Crafted from 99.6% pure titanium (Gr1), this sintered plate meets ASTM G3-14 certification standards, ensuring reliability in harsh environments. Its porous foam structure and customizable design make it ideal for PEM fuel cell components, industrial machinery insulation, and structural reinforcement systems.

Technical specifications

FeatureSpecificationBenefit
Material CompositionPure titanium, Gr1Superior corrosion resistance and biocompatibility
Purity99.6%Enhanced mechanical strength and longevity
CertificationASTM G3-14Guaranteed wear resistance and quality compliance
ApplicationPEM fuel cells, industrial machineryOptimized for high-temperature and corrosive environments
Processing ServicesBending, cutting, weldingCustomizable to fit complex component designs
TextureOpen-cell foam structureEfficient gas diffusion and thermal management

Customization guide

Adjustable parameters include thickness (2–10mm), sheet size (up to 1200x600mm), and surface treatments (e.g., polishing, coating) to meet specific thermal, mechanical, or dimensional requirements.

Get inspired

With its lightweight yet robust foam structure, this titanium sheet enables efficient heat dissipation in PEM fuel cells. Its corrosion-resistant properties make it a reliable choice for marine equipment or chemical processing systems. Pair it with custom cutting services to create tailored gaskets, baffles, or insulation layers for precision engineering projects.

Choose your model

ParameterBase Model (QX-A)Advanced ModelPro Model
Purity99.6%99.7%99.9%
Density (g/cm³)0.8–1.21.0–1.51.2–1.8
Thermal Conductivity15 W/m·K20 W/m·K25 W/m·K
Corrosion ResistanceASTM G3-14ASTM G3-14 +Military Grade

Supplier's note

  1. Technical Breakthroughs:

    • High Purity Titanium (99.6%+): Reduces impurities that weaken structural integrity, enabling use in extreme environments.
    • ASTM G3-14 Compliance: Guarantees wear resistance surpassing industry benchmarks for prolonged service life.
    • Customizable Porosity: Tailored foam structures optimize gas diffusion in PEM fuel cells, improving efficiency by up to 20%.
  2. Version Selection Guide:

    • Base Model (QX-A): Ideal for standard industrial applications requiring cost-effective corrosion resistance and moderate thermal conductivity.
    • Advanced Model: Suitable for high-performance systems (e.g., aerospace components) needing enhanced density and thermal stability.
    • Pro Model: Designed for extreme scenarios like deep-sea equipment or high-temperature reactors, with purity and corrosion resistance triple that of non-certified alternatives.

With the Pro Model’s 99.9% titanium content, you can ensure structural integrity in corrosive marine environments. Pair its high density with open-cell foam to achieve optimal heat dissipation in PEM fuel cells, reducing downtime and maintenance costs.

Frequently asked questions

  • Which titanium foam sheet model is best suited for PEM fuel cell applications?

  • How do I maintain a titanium foam sheet for industrial use?

  • Why choose titanium foam over aluminum for sound insulation in industrial settings?

  • Can titanium powder sintered sheets be customized for specific industrial applications?

  • Is the titanium foam sheet ASTM G3-14 certified for corrosion resistance?

  • What makes titanium foam suitable for PEM fuel cell bipolar plates?

  • How does the foam structure improve thermal management in industrial equipment?

  • What advantages does 99.6% pure titanium offer over lower-grade alloys?

Product comparison

CategoryUsage ScenariosCharacteristicsAdvantagesDisadvantages
Material CompositionPEM fuel cells, aerospace componentsIndustry: 99% Ti (ASTM E1408)
Our Base: 99.6% Ti (▲)
Advanced: 99.9% Ti (▲▲)
▲ Reduces impurities by 0.6% for enhanced durability; ▲▲ Achieves near-pure Ti for extreme applicationsBase may incur higher costs than standard materials; Advanced requires specialized handling
Certification StandardsHigh-temperature industrial equipmentIndustry: ASTM G1-11 (basic corrosion)
Base: ASTM G3-14 (▲)
Advanced: ASTM G3-14 + ISO 12345 (▲▲)
▲ Complies with high-temperature corrosion tests; ▲▲ Adds mechanical stress certificationAdvanced may need additional testing for compliance
Processing CapabilitiesCustomized machinery partsIndustry: Basic cutting
Base: Cutting + Bending (▲)
Advanced: +Welding/Machining (▲▲)
▲ Enables complex shapes; ▲▲ Supports precision engineering for intricate designsAdvanced requires skilled labor and specialized equipment
Corrosion ResistanceMarine, chemical plantsIndustry: 100-hour salt spray (ASTM B117)
Base: 200 hours (▲)
Advanced: 300 hours (▲▲)
▲ Doubles protection in corrosive environments; ▲▲ Triple durability for extreme conditionsHigher costs may not justify for low-corrosion use cases
Application SuitabilityExtreme thermal environmentsIndustry: General industrial
Base: PEM fuel cells (▲)
Advanced: Aerospace/marine (▲▲)
▲ Optimized for fuel cell efficiency; ▲▲ Endures high-temperature and marine stressBase may underperform in ultra-harsh scenarios; Advanced has limited applicability
Cost EfficiencyBudget-sensitive projectsIndustry: Moderate cost
Base: +15% cost (▲)
Advanced: +30% cost (▲▲)
▲ Base balances performance and affordability; ▲▲ Advanced offers premium reliabilityBase may lack for critical applications; Advanced risks exceeding project budgets

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