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Precision Customized D6*d2*76mm Sintered Tungsten Carbide Rods Serdi Pilots Valve With Grinding and Silver Surface

Product overview

Core functionalities

Applicable scenarios

Unique advantages

  • Precision Valve Pilot Guidance: Designed as D6d276mm sintered tungsten carbide rods for precise alignment and stabilization in valve systems, ensuring optimal performance in machining applications.
  • Durability & Corrosion Resistance: The grinding and silver surface treatments enhance wear resistance, precision fitment, and protection against harsh environmental conditions.

Key features

  • 1. Material Technology

  • With sintered tungsten carbide material, you can achieve exceptional hardness and wear resistance, outperforming traditional steel components*

  • 2. Interactive Design

  • With hexagonal gripping ends, you can secure and adjust the rods effortlessly compared to smooth-ended alternatives*

  • 3. Performance Parameters

  • With precision-ground surfaces, you can ensure tight tolerances and consistent performance, surpassing unground rods by up to 20% in accuracy*

  • 4. Scenario Solutions

  • In machining applications, you can maintain high precision and durability in harsh environments, ideal for industrial cutting operations*

  • 5. Certification Standards

  • With compliance to industrial machining standards, you can ensure reliable performance in certified manufacturing processes*

Product details

Precision Customized D6*d2*76mm Sintered Tungsten Carbide Rods Serdi Pilots Valve With Grinding and Silver Surface

Precision Customized D6d276mm Sintered Tungsten Carbide Rods are engineered for high-precision machining applications, particularly in Serdi Pilots Valve systems. Featuring a hexagonal grip end and precision-ground rounded tip, these rods combine durability, corrosion resistance, and dimensional accuracy to meet严苛 industrial demands.

Technical specifications

FeatureSpecificationApplication Scenario
MaterialSintered Tungsten Carbide (Grade ISO P30)Ensures hardness (HRA 88-92) for machining tools and wear parts
DimensionD6mm (shaft) × D2mm (reduced section) × 76mm lengthFits standard valve pilot hole specifications
Surface TreatmentPrecision Grinding + Silver CoatingReduces friction and prevents oxidation during high-speed machining
End DesignHexagonal Grip End + Precision Rounded TipSecure mounting via hexagonal end; smooth insertion into valve components
CertificationISO 9001, RoHS ComplianceMeets global industrial quality and safety standards

Customization guide

Adjustable parameters include:

  • Length/Dimension: Customize to fit non-standard valve hole sizes (e.g., 60mm–100mm lengths).
  • Material Grade: Optimize tungsten carbide composition for specific wear or thermal resistance needs.
  • Surface Finish: Add PVD coatings for enhanced lubricity or corrosion resistance in corrosive environments.

Get inspired

These rods are ideal for precision machining tasks requiring minimal tool wear and high repeatability. With their hexagonal grip end, you can secure them effortlessly in fixtures, while the silver-coated surface ensures smooth operation in high-speed applications like valve assembly lines.

Choose your model

ParameterBase ModelAdvanced ModelPro Model
Hardness (HRA)88–90+2% (89–91)+5% (91–92)*
Wear ResistanceStandard15% improved30% improved
Corrosion ResistanceSilver CoatingSilver + PTFE CoatingDual-layer PVD Coating

Supplier's note

  1. Technical Breakthroughs:

    • Material Grade: ISO P30 tungsten carbide ensures 20% longer tool life than cobalt-based alternatives.
    • Hexagonal Design: Reduces slippage by 40% compared to cylindrical ends in high-vibration environments.
    • Silver Coating: Achieves 25% lower friction coefficients than uncoated rods, enhancing precision in high-speed machining.
  2. Version Selection Guidance:

    • Base Model: Ideal for general machining tasks where cost-efficiency is prioritized (e.g., small-scale valve assembly).
    • Advanced Model: Recommended for medium-volume production requiring PTFE coating for non-stick properties in wet environments.
    • Pro Model: Best for high-volume, high-precision applications (e.g., aerospace valve manufacturing) where extreme wear resistance and corrosion protection are critical.

*Pro Model’s hardness exceeds industry benchmarks by 10%, enabling use in abrasive materials like hardened steel.

Frequently asked questions

  • Which tungsten carbide rod model is best for precision machining in CNC operations?

  • How do I clean and store sintered tungsten carbide rods to prevent corrosion?

  • Why is tungsten carbide preferred over high-speed steel for machining rods?

  • Can these tungsten carbide rods be customized to fit specific machining requirements?

  • Is the tungsten carbide material of these rods ISO-certified for industrial machining?

  • Which tungsten carbide rod specifications are ideal for high-temperature machining environments?

  • What advantages does the grinding surface treatment provide for tungsten carbide machining rods?

  • What is the purpose of the silver surface treatment on these tungsten carbide rods?

Product comparison

CategoryUsage ScenariosCharacteristicsAdvantagesDisadvantages
Stainless Steel RodsGeneral industrial, corrosive environmentsAISI 304 stainless steel, corrosion resistance (ASTM A240), hardness HRC 20-22 (ISO 6508)Cost-effective, corrosion-resistant in mild acids/basesLow wear resistance, unsuitable for high-precision machining
High-Speed Steel RodsHigh-temperature machiningHSS M2 grade, hardness HRC 62-64 (ASTM A6), heat resistance (ASTM E1461)Maintains hardness at elevated temps, durable in heavy-duty machiningBrittle, prone to cracking under extreme stress, expensive
Cemented Carbide (Base)General machining, valve componentsWC-Co composition, hardness HRA 89 (ASTM F739), surface ground (ISO 1309)Superior wear resistance, precise dimensions (tolerance ±0.005mm)Higher cost than steel, requires careful handling to avoid chipping
Cemented Carbide (Advanced)Precision machining, extreme wearWC-Co-Ni alloy, hardness HRA 91 (ASTM F739)▲, silver surface (ISO 10110), tolerance ±0.003mm▲Enhanced hardness▲, corrosion resistance▲, ultra-precision fit▲Most expensive option, specialized applications only
Ceramic RodsHigh-temperature, non-metallic toolsAl₂O₃ ceramic, hardness HRA 92 (ASTM C1220), thermal shock resistance (ASTM C693)Extremely hard, withstands 1200°C▲, non-conductiveBrittle, limited to specific applications like semiconductor manufacturing
Tool Steel RodsHeavy-duty tooling, forgingA2 tool steel, hardness HRC 58-60 (ASTM A6), heat-treated (ASTM A6)Balanced toughness and hardness, cost-effective for standard machiningRequires frequent re-sharpening, less durable than carbide

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