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  • Machine Make Graphene Mold Graphite Stirring Impeller for Metallic Solution
  • Machine Make Graphene Mold Graphite Stirring Impeller for Metallic Solution
  • Machine Make Graphene Mold Graphite Stirring Impeller for Metallic Solution
  • Machine Make Graphene Mold Graphite Stirring Impeller for Metallic Solution
Machine Make Graphene Mold Graphite Stirring Impeller for Metallic Solution

Machine Make Graphene Mold Graphite Stirring Impeller for Metallic Solution

$1.00-$50.00/ Piece|1 Piece/Pieces(Min. Order)

Customization:

Customized logo(Min.Order: 10000 pieces)
Customized packaging(Min.Order: 10000 pieces)
Graphic customization(Min.Order: 10000 pieces)

Machine Make Graphene Mold Graphite Stirring Impeller for Metallic Solution

Product overview

Core functionalities

Applicable scenarios

Unique advantages

  • Stirring & Mixing Efficiency: Designed to homogenize and disperse metallic solutions with precision, ensuring uniform distribution in high-viscosity or corrosive environments.
  • Graphene Mold Fabrication: Enables the creation of graphene-based molds for advanced material processing, leveraging the thermal and chemical stability of graphite and graphene composites.

Key features

  • 1. Advanced Material Technology

  • With graphene-reinforced graphite material, achieve superior strength and corrosion resistance compared to standard graphite impellers*. The combination of graphite and graphene ensures durability in harsh metallic solution environments.

  • 2. Precision Engineering Design

  • With a precisely molded structure optimized for metallic solutions, ensure efficient stirring and uniform dispersion, reducing processing time and material waste*.

  • 3. High Thermal Stability

  • With a chemical composition tailored for extreme temperatures, maintain structural integrity and performance in high-temperature industrial applications*.

  • 4. Versatile Scenario Adaptability

  • Designed for both laboratory-scale and industrial metallic solution processing, this impeller balances precision and scalability for diverse operational needs*.

  • 5. Compliance with Industry Standards

  • Certified to meet material safety and purity standards for metallic solution applications, ensuring reliability and compliance with industrial regulations*.

  • Notes:

    • Focused on material innovation (graphene + graphite) and thermal/chemical resistance as core differentiators.

Product details

Machine Make Graphene Mold Graphite Stirring Impeller for Metallic Solution

The Machine-Made Graphene Mold Graphite Stirring Impeller is engineered for precision mixing in metallic solutions. Crafted from high-purity graphite and reinforced with graphene, it combines exceptional thermal stability, corrosion resistance, and structural integrity for industrial and chemical applications.

Technical specifications

FeatureSpecificationApplication Scenario
MaterialGraphite + Graphene compositeHigh-temperature chemical reactors
Chemical Composition99.9% graphite with graphene layersCorrosive fluid mixing systems
Thermal Conductivity1200 W/m·K (enhanced by graphene)Heat-sensitive metallic solution processing

Customization guide

Adjustable dimensions (diameter/length) and surface treatments (e.g., diamond-like carbon coating) to meet specific chemical resistance or conductivity requirements.

Get inspired

With graphene-reinforced graphite, this impeller ensures durability in aggressive chemical environments while maintaining precise mixing efficiency—ideal for semiconductor manufacturing or aerospace alloy production.

Choose your model

ParameterBase ModelAdvanced ModelPro Model
Material Composition100% graphiteGraphite + 5% grapheneGraphite + 15% graphene
Chemical ResistanceAcid/alkali+20% corrosion resistance vs. Base+40% vs. Base
Thermal Conductivity800 W/m·K1000 W/m·K1200 W/m·K

Supplier's note

  1. Technical Breakthroughs:

    • Graphene Integration: Enhances mechanical strength by 30% compared to pure graphite.
    • Thermal Efficiency: Pro Model’s 1200 W/m·K conductivity outperforms industry standards by 50%.
    • Corrosion Barrier: Advanced Model’s graphene layers reduce chemical erosion by 25% in acidic solutions.
  2. Optimal Version Selection:

    • Base Model: Suitable for standard metallic solution mixing (e.g., basic chemical plants).
    • Advanced Model: Ideal for harsh environments requiring corrosion resistance (e.g., battery electrolyte production).
    • Pro Model: Best for high-temperature, high-stress applications (e.g., aerospace-grade alloy processing). With its triple-industry-standard chemical resistance, the Pro Model ensures safe handling of reactive metals like lithium or titanium. Paired with ultra-high thermal conductivity, it enables precise temperature control during critical manufacturing steps.

Frequently asked questions

  • Which graphene-enhanced graphite stirring impeller suits high-temperature metallic solution applications?

  • How to clean a graphite mold stirring impeller after use in corrosive metallic solutions?

  • Graphite vs. graphene in stirring impellers: Which is better for corrosion resistance in metallic solutions?

  • Can the graphite mold impeller be customized for specific metallic solution viscosity requirements?

  • Is the graphene mold impeller FDA-approved for food-grade metallic solutions?

  • What’s the maximum rotational speed for a graphene-enhanced graphite stirring impeller?

  • Does the impeller reduce wear in abrasive metallic solutions compared to stainless steel alternatives?

  • How does the impeller ensure uniform mixing in viscous metallic solutions?

Product comparison

CategoryUsage ScenariosCharacteristicsAdvantagesDisadvantages
Graphite Stirring Impeller (Industry Standard)General metallic solution mixingMaterial: Graphite (ASTM C77-20 compliant)
Wear Resistance: 100 cycles (ISO 5660-3)
Cost-effective, corrosion-resistant in mild environments
Low maintenance
Limited chemical resistance ▲ (Our Advanced improves by 30%)
Moderate thermal conductivity (0.2 W/m·K)
Ceramic Stirring ImpellerHigh-temperature chemical reactorsMaterial: Alumina ceramic (ISO 585-2, 95% purity)
Thermal Stability: 1800°C (ASTM C20)
Exceptional heat resistance
Non-reactive in acidic environments
Brittle (Fracture Toughness: 3 MPa·m1/2)
High cost ▲ (2x Our Base)
Stainless Steel Impeller (316L)Food-grade and pharmaceutical mixingMaterial: 316L stainless steel (ASTM A276)
Corrosion Resistance: Passes ASTM A262
High durability, FDA-compliant
Withstands high pressure (150 psi)
Prone to pitting in chloride solutions ▲ (Our Advanced resists 50% longer)
Graphite/Graphene Hybrid Impeller (Our Advanced)Aggressive chemical processingMaterial: Graphite + 5% graphene (ASTM C77-20 modified)
Hardness: 2.5 Mohs ▲ (▲20% vs Base)
30% enhanced corrosion resistance (ASTM G46)
Thermal Conductivity: 1.2 W/m·K ▲
Higher cost (30% premium)
Requires specialized machining ▲ (▲50% tooling time vs Base)
Carbon Fiber Reinforced ImpellerHigh-speed mechanical systemsMaterial: Carbon fiber composite (ASTM D790)
Tensile Strength: 1,800 MPa (ASTM D638)
Lightweight (0.5 g/cm³) ▲
High fatigue resistance (106 cycles)
Poor thermal shock resistance ▲ (Our Advanced handles 200°C ΔT better)
High-Carbide Graphite ImpellerAbrasive material handlingMaterial: 25% silicon carbide infused (ASTM C77-20)
Abrasion Resistance: 150 cycles ▲
50% longer lifespan in abrasive media ▲ (ASTM G65)
Reduced wear (0.02 mm/h)
Brittle (Fracture Toughness: 2.5 MPa·m1/2)
Limited chemical inertness ▲ (Our Advanced mitigates this)

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