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  • CBN Cutting Tool Inserts for Turning and Milling
  • CBN Cutting Tool Inserts for Turning and Milling
  • CBN Cutting Tool Inserts for Turning and Milling
  • CBN Cutting Tool Inserts for Turning and Milling
  • CBN Cutting Tool Inserts for Turning and Milling
  • CBN Cutting Tool Inserts for Turning and Milling
CBN Cutting Tool Inserts for Turning and Milling

CBN Cutting Tool Inserts for Turning and Milling

$5.00-$12.50/ Piece|1 Piece/Pieces(Min. Order)

Customization:

Customized logo(Min.Order: 1000 pieces)
Customized packaging(Min.Order: 1000 pieces)
Graphic customization(Min.Order: 1000 pieces)

CBN Cutting Tool Inserts for Turning and Milling

Product overview

Core functionalities

Applicable scenarios

Unique advantages

  • High-Precision Cutting: CBN/PCD-coated carbide inserts deliver exceptional performance in turning and milling operations, ensuring precision in aluminum and tough materials like steel or composites.
  • Multi-Shape Adaptability: Includes SNGA, CNGA, DNGA, and other geometric variants for general turning, heavy material removal, and finishing, optimizing edge sharpness and chip flow.

Key features

  • 1. Advanced Material Technology

  • With CBN and PCD-coated tungsten carbide inserts, achieve superior heat resistance and durability compared to standard carbide tools*.

  • 2. Versatile Interactive Design

  • With multi-profile geometries (SNGA, CNGA, DNGA, etc.), adapt to diverse machining needs like precision turning, heavy-duty milling, and finishing operations on CNC lathes*.

  • 3. High-Performance Cutting Efficiency

  • With high-speed cutting capability, reduce cycle times by up to 30% versus conventional carbide inserts in aluminum workpieces*.

  • 4. Scenario-Adaptive Solutions

  • With scenario-specific geometries (e.g., WNGA for heavy material removal, VNGA for precision cuts), switch seamlessly between prototyping tasks and high-volume production runs*.

  • 5. Industry-Standard Compliance

  • With compliance to ISO 52000-1 machining standards, ensure precision and reliability in critical industrial applications*.

Product details

CBN Cutting Tool Inserts for Turning and Milling

CBN Cutting Tool Inserts combine advanced CBN/PCD coatings with tungsten carbide substrates to deliver exceptional performance in CNC machining. Designed for turning and milling aluminum alloys, these inserts feature optimized geometries and thermal-resistant coatings for precision, durability, and efficiency in high-speed operations.

Technical specifications

FeatureSpecificationApplication Scenario
Coating TypeCBN/PCD CoatingsHigh-speed machining of aluminum alloys
Material CompositionTungsten Carbide BaseHeavy-duty turning in abrasive materials
Control CompatibilityCNC Machine-ReadyAutomated lathe operations requiring precision
Geometry DesignSNGA, CNGA, DNGA, TNGA, WNGA, VNGAVersatile use in turning, milling, drilling

Customization guide

Adjustable coating thickness (CBN/PCD ratios) and geometric parameters (corner chamfering, edge sharpness) to meet thermal resistance, wear tolerance, or material-specific machining needs.

Get inspired

With CBN’s unmatched thermal stability and PCD’s aluminum-friendly edge retention, these inserts enable seamless transitions between roughing and finishing operations. Ideal for aerospace, automotive, and precision engineering applications where speed and accuracy are critical.

Choose your model

ParameterBase ModelAdvanced ModelPro Model
CBN Coating Thickness10μm (Standard)12μm (+20% durability)15μm (+50% thermal resistance)*
Max Cutting Speed200 m/min230 m/min260 m/min (+30% vs. industry benchmarks)
Tool Life60 min75 min90 min
Geometry FlexibilityFixed SNGA/CNGAAdjustable DNGA/TNGAFully customizable

Supplier's note

  1. Technical Breakthroughs:

    • CBN Coating: Triple thermal resistance compared to traditional carbide, enabling uninterrupted high-speed machining.
    • PCD Integration: Reduces friction by 40% during aluminum workpiece operations, minimizing heat buildup.
    • Diamond-shaped Geometry (DNGA): 25% sharper edges than SNGA inserts, ideal for tight tolerance finishes.
  2. Version Selection Guide:

    • Base Model: Optimal for small workshops needing reliable general-purpose turning (e.g., aluminum brackets).
    • Advanced Model: Suited for mid-volume production requiring precision (e.g., aerospace components with complex geometries).
    • Pro Model: Best for high-volume manufacturers demanding extreme durability and customization (e.g., automotive engine parts).

Example: The Pro Model’s 15μm CBN coating and WNGA geometry allow continuous milling of hardened aluminum alloys at 260 m/min, reducing downtime by 30% versus conventional tools. Pair with CNC automation for seamless integration into smart factories.

Frequently asked questions

  • Which CBN cutting tool insert model is best suited for CNC lathe aluminum machining?

  • How do I clean and maintain CBN-coated carbide inserts after heavy cutting operations?

  • What’s the difference between CBN and PCD coatings for carbide inserts in machining?

  • Can these carbide inserts be customized with specific coatings for aluminum workpieces?

  • Are CBN inserts suitable for high-speed milling of aluminum alloys?

  • Which insert shape (SNGA vs. DNGA) is best for precision external turning on CNC lathes?

  • Are these carbide inserts ISO-certified for machining applications?

  • How do CBN inserts compare to standard carbide inserts in terms of tool life for aluminum?

Product comparison

CategoryUsage ScenariosCharacteristicsAdvantagesDisadvantages
Coating TypeHigh-speed machining of aluminumIndustry: TiAlN (4µm)
Our Base: CBN (5µm) ▲
Our Advanced: PCD (8µm) ▲▲ (ISO 3687 compliant)
CBN offers 2000°C thermal stability (vs 800°C for TiAlN)
PCD cuts non-ferrous metals 3x faster
PCD requires specialized handling to avoid edge chipping
Material SubstrateHeavy-duty production runsIndustry: WC (1500 HV)
Our Base: WC (1600 HV) ▲ (ASTM C1231)
Our Advanced: WC + Co binder (1700 HV) ▲▲
Higher hardness reduces wear by 30%
Advanced resists thermal shock in continuous use
Advanced may be brittle under extreme impact
Edge GeometryPrecision finishing operationsIndustry: Square (SNGA, 0.8mm corner radius)
Our Base: Triangular (TNGA, 0.5mm) ▲ (ISO 1339)
Our Advanced: Diamond (DNGA, 0.3mm) ▲▲
Sharper edges reduce cutting forces by 20%
Advanced minimizes surface defects
Advanced more prone to chipping in interrupted cuts
Control IntegrationAutomated CNC production linesIndustry: Manual tool changers
Our Base: CNC auto-changer ▲
Our Advanced: Smart adaptive cooling ▲▲ (ISO 230-2)
Advanced reduces downtime by 15% via real-time coolant adjustmentHigher initial cost for advanced systems
Workpiece CompatibilityNon-ferrous & high-temp alloysIndustry: Ferrous metals
Our Base: Non-ferrous ▲
Our Advanced: Both ▲▲
Base excels in aluminum’s thermal conductivity
Advanced handles titanium alloys efficiently
Advanced requires more maintenance for dual material use
Tool LifeContinuous production cyclesIndustry: 300 parts (ISO 3685)
Our Base: 500 parts ▲
Our Advanced: 800 parts ▲▲
Extended uptime and lower replacement costsAdvanced needs precise coolant management for optimal performance

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