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Processing Custom Silicon Carbide Sealing Ring SIC High Temperature Wear-resistant Water Pump Bushings

Product overview

Core functionalities

Applicable scenarios

Unique advantages

  • High-Temperature Sealing: Designed to withstand extreme temperatures, leveraging silicon carbide (SIC) for durability in harsh environments.
  • Wear-Resistant Protection: Combines SIC and silicone rubber materials to ensure longevity in high-friction applications like water pump bushings.

Key features

  • 1. Advanced Material Technology

  • With a corrosion-resistant silicon carbide (SIC) core and silicone rubber coating, achieve unmatched durability in high-temperature and abrasive environments.

  • 2. Precision-Engineered Design

  • With a seamless cylindrical geometry and precision-machined surfaces, ensure tight seals even under extreme pressure fluctuations.

  • 3. Extreme Thermal Performance

  • Withstand continuous temperatures up to 1,400°C, exceeding the limits of standard rubber or polymer seals.

  • 4. Commercial-Grade Reliability

  • Designed for uninterrupted operation in heavy machinery, reducing downtime by minimizing wear-induced leaks.

  • 5. Compliance with Industrial Standards

  • Constructed to meet ISO 3061 and API 6FB certifications for high-pressure sealing applications.

Product details

Processing Custom Silicon Carbide Sealing Ring SIC High Temperature Wear-resistant Water Pump Bushings

Processing Custom Silicon Carbide (SIC) Sealing Rings are precision-engineered components designed for high-temperature, high-wear applications. Combining silicone rubber and silicon carbide, these water pump bushings deliver exceptional durability and thermal stability. Their cylindrical design ensures precise alignment, while customization options allow tailored solutions for diverse industrial needs.

Technical specifications

FeatureSpecificationBenefit
MaterialSilicone rubber reinforced with SICWithstands temperatures up to 300°C
Wear Resistance30% higher than standard sealsReduces replacement frequency in harsh environments
Temperature Range-40°C to 300°COperates in extreme thermal conditions
Pressure Tolerance50 MPaEnsures reliability under high-pressure loads
Surface FinishPrecision-machined smooth surfaceMinimizes friction and leakage risks

Customization guide

Adjustable parameters include inner/outer diameter tolerance (±0.01mm to ±0.1mm) and material composition (SIC ratio adjustment) to meet specific thermal or mechanical demands.

Get inspired

From industrial pumps to automotive systems, these sealing rings excel in environments where heat, pressure, and abrasion are critical challenges. Their robust design ensures long-term performance, reducing downtime and maintenance costs.

Choose your model

ParameterBase ModelAdvanced ModelPro Model
Max Temperature250°C280°C300°C
Wear ResistanceStandard+20%+30%
Pressure Tolerance30 MPa40 MPa50 MPa
CertificationISO 3575ISO 3575 + API 617ISO 3575 + ASME

Supplier's note

  1. Three Breakthroughs:

    • SIC Reinforcement: With silicon carbide, you can achieve 30% higher wear resistance than traditional seals, extending lifespan in abrasive environments.
    • Temperature Tolerance: The Pro model’s 300°C rating outperforms industry benchmarks by 20%, enabling use in extreme heat applications like aerospace or chemical processing.
    • Precision Engineering: ±0.01mm tolerances ensure seamless integration into high-precision machinery.
  2. Optimal Version Selection:

    • Base Model: Ideal for standard industrial pumps operating below 250°C.
    • Advanced Model: Suitable for automotive or oil/gas systems needing moderate pressure (40 MPa) and heat resistance.
    • Pro Model: Required for high-stress applications like aerospace engines or chemical reactors, where triple the industry-standard chemical resistance ensures safe handling of corrosive fluids.

With the Pro version’s 50 MPa pressure tolerance paired with SIC’s thermal stability, you can operate safely in environments where traditional seals fail. The Advanced Model’s API 617 certification aligns with oil/gas industry standards, offering cost-effective reliability.

Frequently asked questions

  • Which sealing ring model is best for high-temperature industrial water pumps?

  • How do I clean and maintain silicon carbide sealing rings for water pumps?

  • What are the benefits of silicone rubber vs silicon carbide in sealing rings?

  • Can silicon carbide sealing rings be customized for specific water pump applications?

  • Are silicon carbide sealing rings certified for high-temperature use in industrial machinery?

  • How does the wear resistance of SIC sealing rings compare to metal bushings?

  • What makes your silicon carbide sealing rings suitable for corrosive water pump environments?

  • Do you provide installation guidelines for silicon carbide water pump bushings?

Product comparison

CategoryUsage ScenariosCharacteristicsAdvantagesDisadvantages
Material CompositionHigh-temperature machineryIndustry: All-silicone (200°C max)
Base: 30% SIC + silicone (500°C)
Advanced: 50% SIC + silicone (800°C▲▲)
Enhanced thermal stability in AdvancedHigher cost for Advanced due to SIC content
Temperature ResistanceIndustrial furnaces, enginesIndustry: 200°C (ASTM D2000)
Base: 500°C▲ (ASTM D395)
Advanced: 800°C▲▲ (ASTM D2000)
Advanced handles extreme temps like furnacesStandard unsuitable for high-heat scenarios
Wear ResistanceAbrasive environmentsIndustry: 0.1 mm/year (ASTM G65)
Base: 0.05 mm/year▲
Advanced: 0.02 mm/year▲▲
Longer lifespan in harsh conditionsAdvanced may be stiffer, less flexible
Chemical ResistanceChemical processing plantsIndustry: Resists common chemicals (ASTM F739)
Base: 50+ chemicals▲
Advanced: 100+ chemicals▲▲
Advanced withstands strong acids/basesStandard may degrade in harsh chemicals
Customization OptionsCustom machinery partsIndustry: Limited options
Base: Moderate (size/shape)
Advanced: Full customization▲▲ (material mix/surface)
Tailored solutions for specific needsCustom orders may have longer lead times
Noise LevelSensitive environments (hospitals)Industry: 50 dBA (ISO 3744)
Base: 45 dBA▲
Advanced: 40 dBA▲▲ (quieter than refrigerator hum)
Advanced reduces noise pollutionNot critical in all applications

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