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  • Reduction Sleeve Boring bar Sleeve with Coolant Hole Used on CNC Lathe Turrent
  • Reduction Sleeve Boring bar Sleeve with Coolant Hole Used on CNC Lathe Turrent
  • Reduction Sleeve Boring bar Sleeve with Coolant Hole Used on CNC Lathe Turrent
  • Reduction Sleeve Boring bar Sleeve with Coolant Hole Used on CNC Lathe Turrent
Reduction Sleeve Boring bar Sleeve with Coolant Hole Used on CNC Lathe Turrent

Reduction Sleeve Boring bar Sleeve with Coolant Hole Used on CNC Lathe Turrent

$3.90-$9.50/ Piece|5 Piece/Pieces(Min. Order)

Customization:

Customized logo(Min.Order: 100 pieces)

Reduction Sleeve Boring bar Sleeve with Coolant Hole Used on CNC Lathe Turrent

Product overview

Core functionalities

Applicable scenarios

Unique advantages

  • Precision Boring Operations: Designed for CNC lathes and turret systems, this reduction sleeve boring bar sleeve enables high-accuracy internal machining of workpieces with minimal runout.
  • Coolant Delivery Integration: Features a built-in coolant hole to enhance cooling and chip evacuation during drilling, grinding, or milling processes.

Key features

  • 1. Corrosion-Resistant Alloy Steel Construction

  • Material Technology

  • 2. Integrated Coolant Holes for Enhanced Cooling

  • Interactive Design

  • 3. Precision-Machined Tolerances for Superior Accuracy

  • Performance Parameters

  • 4. Multi-Machine Compatibility for Versatile Applications

  • Scenario Solutions

  • 5. Industrial-Grade Reliability with Warranty Backing

  • Certification Standards

Product details

Reduction Sleeve Boring bar Sleeve with Coolant Hole Used on CNC Lathe Turrent

The Reduction Sleeve Boring bar Sleeve with Coolant Hole is a precision-engineered accessory for CNC lathes and turret systems. Designed for compatibility with boring, grinding, milling, drilling, and lathe machines, it combines high-strength steel/alloy steel construction with advanced coolant management for optimal performance in demanding machining environments.

Technical specifications

FeatureSpecificationApplication Scenario
MaterialSteel/Alloy SteelHeavy-duty machining requiring durability
Coolant Hole DesignIntegrated radial channelsEfficient heat dissipation in high-speed cuts
Diameter32mm (adjustable ±2mm)Precision boring operations on CNC lathes
Tolerance±0.01mm (ISO 2768-m)Aerospace and automotive component machining
Mounting HolesCentral + 2 side holesSecure attachment to machine tool turrets
Surface FinishMirror-polished (Ra ≤0.8μm)Reduced friction in high-precision setups
Warranty6 monthsCoverage for industrial wear-and-tear

Customization guide

Adjustable parameters include material composition (e.g., stainless steel for corrosion resistance), diameter (to fit custom workpieces), and surface treatments (hard coatings for enhanced wear resistance).

Get inspired

With its integrated coolant channels and precision tolerances, this sleeve enables faster, cooler cuts while maintaining dimensional accuracy—ideal for producing intricate parts in aerospace, automotive, and tooling industries.

Choose your model

ParameterBase ModelAdvanced ModelPro Model
Tolerance±0.02mm±0.01mm±0.005mm*
Coolant EfficiencyStandard flow+20% flow+40% flow*
Material Hardness45 HRC50 HRC55 HRC*
Load Capacity1500 N2000 N2500 N

Supplier's note

  1. Technical Breakthroughs:

    • Coolant Efficiency: The Pro Model’s 40% faster coolant flow reduces thermal deformation by 30% compared to industry standards.
    • Tolerance Precision: The ±0.005mm Pro Model meets ISO 10360-2 standards, enabling micro-machining of medical implants.
    • Material Hardness: Advanced Model’s 50 HRC alloy steel outperforms traditional sleeves in abrasive environments.
  2. Version Selection Guide:

    • Base Model: Ideal for general workshops needing cost-effective solutions for standard machining tasks.
    • Advanced Model: Recommended for precision engineering firms requiring tighter tolerances (e.g., turbine blade production).
    • Pro Model: Best suited for high-volume, high-precision industries like aerospace, where thermal stability and extreme durability are critical.

*Pro Model specifications exceed ISO 230-2 benchmarks by 30%.

Frequently asked questions

  • Which model of the Reduction Sleeve Boring bar is best suited for CNC lathe turret operations?

  • How do I clean and maintain the coolant holes in the Reduction Sleeve?

  • What are the advantages of alloy steel over regular steel in Reduction Sleeves?

  • Can the Reduction Sleeve be customized for specific CNC machine dimensions?

  • Is the Reduction Sleeve compatible with grinding and milling machines besides CNC lathes?

  • What certifications or standards does the Reduction Sleeve meet?

  • How do I choose the right size Reduction Sleeve for my lathe machine?

  • What makes the coolant hole design in this sleeve unique?

Product comparison

CategoryUsage ScenariosCharacteristicsAdvantagesDisadvantages
Material CompositionHeavy-duty machining (e.g., aerospace parts)Industry Standard: Standard Carbon Steel (ASTM A36) vs Our Base: High-Carbon Steel (ASTM A105) ▲ vs Our Advanced: Alloy Steel (ASTM A387) ▲▲Base: 20% stronger than Industry; Advanced: 40% stronger with corrosion resistanceIndustry: Prone to wear; Advanced: Higher cost (+30%)
Coolant System EfficiencyHigh-heat operations (e.g., grinding, drilling)Industry Standard: No integrated coolant channels vs Our Base: Basic coolant channels (ISO 217) ▲ vs Our Advanced: Optimized flow design ▲▲Base: Reduces thermal expansion by 15%; Advanced: Cools 30% fasterIndustry: Overheating risk; Advanced: Requires specialized coolant systems
Machine CompatibilityMulti-machine workshops (e.g., CNC lathe, milling)Industry Standard: 1 machine type vs Our Base: 3 machine types (lathe, milling, drilling) ▲ vs Our Advanced: 5 machine types ▲▲Base: Versatile for 3 machines; Advanced: Universal compatibilityIndustry: Limited use; Advanced: Requires technical setup for all machines
Durability/Wear ResistanceContinuous production lines (e.g., automotive manufacturing)Industry Standard: 500 hours (ISO 3687) vs Our Base: 1000 hours ▲ vs Our Advanced: 1500 hours ▲▲Base: Doubles tool life; Advanced: 3x longer lifespan than IndustryIndustry: Frequent replacements; Advanced: Higher upfront cost
Tolerance PrecisionPrecision parts (e.g., medical devices)Industry Standard: ±0.1mm (ISO 2768-mk) vs Our Base: ±0.05mm ▲ vs Our Advanced: ±0.02mm ▲▲Base: 50% tighter tolerance; Advanced: 80% tighter toleranceIndustry: Inconsistent results; Advanced: Requires advanced calibration
Warranty PeriodLong-term investment decisionsIndustry Standard: 3 months vs Our Base: 6 months ▲ vs Our Advanced: 12 months ▲▲Base: Matches product’s durability; Advanced: Full year coverageIndustry: Minimal support; Advanced: Extended service costs

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