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  • FUNIK CNC Cutting Inserts RCMX RNGN SNMN Cbn Insert for Wind Power Generation
  • FUNIK CNC Cutting Inserts RCMX RNGN SNMN Cbn Insert for Wind Power Generation
  • FUNIK CNC Cutting Inserts RCMX RNGN SNMN Cbn Insert for Wind Power Generation
  • FUNIK CNC Cutting Inserts RCMX RNGN SNMN Cbn Insert for Wind Power Generation
  • FUNIK CNC Cutting Inserts RCMX RNGN SNMN Cbn Insert for Wind Power Generation
  • FUNIK CNC Cutting Inserts RCMX RNGN SNMN Cbn Insert for Wind Power Generation
FUNIK CNC Cutting Inserts RCMX RNGN SNMN Cbn Insert for Wind Power Generation

FUNIK CNC Cutting Inserts RCMX RNGN SNMN Cbn Insert for Wind Power Generation

  • 10 - 999 Pieces
    $15
  • 1000 - 4999 Pieces
    $12
  • 5000 - 9999 Pieces
    $9
  • >= 10000 Pieces
    $6

Customization:

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

FUNIK CNC Cutting Inserts RCMX RNGN SNMN Cbn Insert for Wind Power Generation

Product overview

Core functionalities

Applicable scenarios

Unique advantages

  • Precision CNC Cutting: Designed for high-precision turning operations in CNC machining, enabling efficient material removal and shaping of hard metals and alloys.
  • CBN Material Advantage: Uncoated CBN (cubic boron nitride) inserts excel in high-speed, high-temperature applications, ideal for processing tough materials like hardened steel or wind turbine components.

Key features

  • 1. Material Technology: Uncoated CBN for Superior Durability

  • With uncoated cubic boron nitride (CBN) material, ensure prolonged tool life and resistance to extreme wear in high-stress machining environments. Unlike traditional carbide inserts, CBN’s hardness (second only to diamond) maintains sharpness even when cutting hardened alloys common in wind turbine components.

  • 2. Interactive Design: CNC-Compatible Precision

  • With CNC-programmable compatibility, switch between multi-axis machining programs and presets to adapt to complex geometries. The sleek, modern design (as shown in the image) ensures stable clamping and precise alignment, reducing setup time compared to manual adjustments.

  • 3. Performance Parameters: High Thermal Stability

  • With CBN’s exceptional thermal resistance (up to 1,400°C), maintain consistent cutting performance in high-heat scenarios, such as machining heat-treated steel. Outperforms uncoated carbide inserts by ~30% in continuous operation* [*Disclaimer: Based on internal testing; actual results may vary].

  • 4. Scenario Solutions: Tailored for Wind Power Demands

  • Designed for wind turbine component manufacturing, these inserts handle abrasive materials like nickel-based alloys and composites. The hexagonal/cylindrical shapes (as depicted) optimize chip evacuation, reducing downtime in large-scale production lines.

  • 5. Certification Standards: Industrial Grade Reliability

  • Complies with ISO 13399 standards for tooling interoperability and meets wind energy sector requirements for precision. Unlike uncertified alternatives, these inserts guarantee consistency across global manufacturing facilities.

Product details

FUNIK CNC Cutting Inserts RCMX RNGN SNMN Cbn Insert for Wind Power Generation

The FUNIK CNC Cutting Inserts (RCMX, RNGN, SNMN) are precision-engineered CBN inserts designed for high-performance machining in wind power generation. Their sleek, glossy finish and modern minimalist design ensure durability and adaptability for diverse applications, from turbine component fabrication to specialized toolholding systems.

Technical specifications

FeatureSpecificationApplication Scenario
MaterialCBN (Uncoated)Machining hard materials like turbine blades
Shape OptionsCylindrical, Square, HexagonalCustomized toolholding or specialized fixtures
Control ModeCNC CompatibleAutomated precision machining in wind energy
Thermal StabilityUp to 1500°C (Pro Model)High-temperature machining environments
Edge RetentionSuperior (Pro Model)Extended tool life for complex turbine parts

Customization guide

Adjustable shape options (cylindrical, square, hexagonal) to fit specific toolholder requirements. The smooth, glossy surface allows for engraving or painting for branding or functional labeling.

Get inspired

With their versatile shapes and CBN material, these inserts are ideal for precision machining in wind energy. Whether crafting turbine blades or custom fixtures, their sleek design and durability meet the demands of modern industrial applications.

Choose your model

ParameterBase ModelAdvanced ModelPro Model
Hardness (HRa)2500+15% (2875)+30% (3250)*
Thermal Stability1200°C1350°C1500°C
Edge RetentionStandardImprovedSuperior

Supplier's note

  1. Technical Breakthroughs:

    • CBN Material: Achieves 30% higher hardness than standard inserts, enabling precision cuts on ultra-hard turbine alloys.
    • Thermal Stability: The Pro Model withstands 20% higher temperatures than industry benchmarks, ideal for high-speed machining.
    • Edge Retention: Enhanced geometry reduces tool wear by 40%, extending operational life in demanding wind energy applications.
  2. Optimal Version Selection:

    • Base Model: Suitable for standard turbine component machining where cost-efficiency is prioritized.
    • Advanced Model: Ideal for complex geometries requiring improved thermal resistance, such as rotor blade fabrication.
    • Pro Model: Designed for extreme conditions (e.g., high-speed, high-temperature environments) in premium wind energy projects.

With the Pro Model’s 1500°C thermal stability, you can safely machine heat-resistant turbine materials. Pair its CBN edge with hexagonal shape inserts to ensure secure clamping and precision in automated CNC systems.

Frequently asked questions

  • Which FUNIK CBN insert model is best suited for wind turbine component machining?

  • How does CBN compare to carbide inserts for machining composite materials in wind energy?

  • What maintenance steps are required for FUNIK CBN inserts in CNC wind power applications?

  • Can FUNIK CBN inserts be customized for specialized wind turbine machining needs?

  • Are FUNIK CBN inserts certified for industrial wind power applications?

  • How do FUNIK CBN inserts improve productivity in wind power CNC machining?

  • What materials are FUNIK CBN inserts best suited for in wind energy projects?

  • Does FUNIK provide technical support for CNC setup optimization in wind power machining?

Product comparison

CategoryUsage ScenariosCharacteristicsAdvantagesDisadvantages
Material CompositionHeavy-duty machining, aerospace partsIndustry Standard: Tungsten Carbide (1400 HV)
Our Base: CBN (2200 HV)▲
Our Advanced: CVD Coated CBN (2500 HV)▲▲
Base: 58% harder than carbide (ISO 6507)
Advanced: 10% longer tool life
Base: 2x cost of carbide
Advanced: Requires specialized coolant systems
Coating TypeHigh-temperature cutting, compositesIndustry Standard: Uncoated
Our Base: Uncoated CBN
Our Advanced: PVD Coating (Friction Reduced 40%▲ ASTM G99)
Advanced: 30% faster feed rates (ASTM G99)
Base: Cost-effective for standard use
Advanced: Coating adds 15% to tool cost
Base: Limited to dry machining
Precision LevelMedical devices, precision gearsIndustry Standard: ±0.02mm (ISO 2768)
Our Base: ±0.01mm▲ (ISO 13399)
Our Advanced: ±0.005mm▲▲ (ISO 13399:2018)
Advanced: 4x tighter tolerances for critical parts
Base: Meets 90% industrial needs
Advanced: Requires CNC machines with sub-micron repeatability
Thermal StabilityHardened steel, high-temp alloysIndustry Standard: 800°C Max (ISO 5291)
Our Base: 1200°C▲ (ASTM C1175)
Our Advanced: 1400°C▲▲ (ASTM C1175)
Base: 50% higher heat resistance
Advanced: Operates in extreme environments
Advanced: Requires specialized cooling systems
Control CompatibilityAutomated manufacturing linesIndustry Standard: Manual feed
Our Base: CNC (XYZ Accuracy ±0.002mm▲)
Our Advanced: Smart CNC (Adaptive Cooling▲▲)
Advanced: Reduces scrap by 25% via real-time adjustments
Base: Plug-and-play with most CNC systems
Advanced: Requires software integration costs
Maintenance RequirementsMass production setupsIndustry Standard: Weekly sharpening
Our Base: Monthly maintenance▲
Our Advanced: Quarterly servicing▲▲ (ISO 13399)
Base: 3x longer tool life vs. carbide
Advanced: 50% lower downtime
Base: Requires skilled operators for setup

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The comparison data is based on manufacturer information and industry standards. Actual results may vary depending on individual use cases. It is advisable to verify details with the supplier for the most accurate information.