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  • Special Design CNC Cutting Tools Solid Carbide End Mill Bits Roland Milling Burs
  • Special Design CNC Cutting Tools Solid Carbide End Mill Bits Roland Milling Burs
  • Special Design CNC Cutting Tools Solid Carbide End Mill Bits Roland Milling Burs
  • Special Design CNC Cutting Tools Solid Carbide End Mill Bits Roland Milling Burs
  • Special Design CNC Cutting Tools Solid Carbide End Mill Bits Roland Milling Burs
  • Special Design CNC Cutting Tools Solid Carbide End Mill Bits Roland Milling Burs
Special Design CNC Cutting Tools Solid Carbide End Mill Bits Roland Milling Burs

Special Design CNC Cutting Tools Solid Carbide End Mill Bits Roland Milling Burs

  • 10 - 99 Pieces
    $6.89
  • 100 - 999 Pieces
    $4.89
  • >= 1000 Pieces
    $2.58

Customization:

Customized logo(Min.Order: 500 pieces)
Customized packaging(Min.Order: 500 pieces)
Graphic customization(Min.Order: 500 pieces)

Special Design CNC Cutting Tools Solid Carbide End Mill Bits Roland Milling Burs

Product overview

Core functionalities

Applicable scenarios

Unique advantages

  • Precision Material Removal: Designed for high-precision cutting, drilling, and engraving in CNC applications, with solid carbide construction ensuring sharpness and accuracy.
  • Versatile Coating Options: Available with multiple coatings (Tin, TiCN, TiAlN, AiTiN, AlTiN) to optimize performance for diverse materials like steel, aluminum, and non-ferrous alloys.

Key features

  • 1. Advanced Material Technology for Enhanced Durability

  • With solid carbide construction and advanced TiCN/TiAlN coatings, achieve long-lasting sharpness and resistance to high-temperature wear during prolonged machining. The gold-tipped design (likely tungsten carbide or titanium nitride) ensures precision and longevity in demanding applications.

  • 2. Precision-Engineered Performance for Versatile Use

  • With a precision-engineered end mill design, deliver consistent accuracy in cutting complex shapes and hard materials like steel or aluminum at high speeds. The cylindrical geometry minimizes deflection, ensuring clean cuts across diverse materials.

  • 3. Roland CNC Machine Compatibility

  • Designed specifically for Roland CNC machines, ensuring seamless compatibility and optimized performance for applications like engraving, milling, and detailing. The tools are tailored for precision in industries such as automotive, aerospace, and electronics.

  • 4. Outlast Standard Tools with Superior Durability

  • Outlast standard HSS tools by up to 50%* in continuous operation due to enhanced coating durability, reducing replacement frequency. [*Disclaimer: Based on internal testing; actual results may vary.]

  • 5. Versatile Material Adaptability

  • Versatile end mill geometry accommodates a wide range of materials—from plastics to hardened steels—with minimal deflection, ensuring consistent results across projects. The durable metallic handles and reinforced design ensure stability during high-speed operations.

Product details

Special Design CNC Cutting Tools Solid Carbide End Mill Bits Roland Milling Burs

Our Special Design CNC Cutting Tools are precision-engineered solid carbide end mill bits designed for high-performance milling applications. Featuring advanced coatings like TiCN, TiAlN, and AlTiN, these tools deliver exceptional durability, wear resistance, and cutting efficiency. The cylindrical design ensures optimal material removal, while the robust metallic handles and protective blue plastic holders guarantee stability and longevity.

Technical specifications

FeatureSpecificationBenefit
MaterialSolid CarbideHigh hardness (HRA 88-94) for long tool life
CoatingTin, TiCN, TiAlN, AlTiN, AlTiAlNEnhanced wear resistance and heat resistance
Tool GeometryCylindrical ShapeEfficient cutting action and precision
Handle MaterialSteel/AluminumDurable, stable grip for heavy-duty use
Holder TypeBlue PlasticOrganized storage and tip protection

Customization guide

Adjustable parameters include coating type (e.g., TiAlN for high-speed cutting or AlTiN for corrosion resistance) and handle length to meet specific application needs. Customized coatings can be tailored to optimize performance for materials like stainless steel, aluminum, or composites.

Get inspired

Ideal for precision machining in automotive, aerospace, and electronics industries, these tools ensure flawless cuts in challenging materials. Whether drilling intricate patterns or milling complex geometries, their advanced design and coatings deliver unmatched reliability.

Choose your model

ParameterBase ModelAdvanced ModelPro Model
Coating DurabilityBaseline+15%+30%*
Material HardnessHRA 88HRA 91HRA 94
Max Cutting Speed30 m/min35 m/min40 m/min
Tool Life100 min115 min130 min

Supplier's note

  1. Three Breakthroughs:

    • Pro Model’s TiAlN Coating: 30% higher wear resistance than industry standards, enabling prolonged use in abrasive materials.
    • Advanced Material Hardness: HRA 94 in the Pro Model ensures stability at high cutting speeds, reducing thermal deformation.
    • Speed Optimization: The Pro Model’s 40 m/min speed outperforms traditional tools by 33%, slashing production time.
  2. Version Selection Guide:

    • Base Model: Ideal for general-purpose machining (e.g., aluminum or plastics) where cost efficiency is prioritized.
    • Advanced Model: Suited for medium-duty applications (e.g., stainless steel) requiring enhanced durability and moderate speed.
    • Pro Model: Best for high-demand industries like aerospace or medical device manufacturing. With its TiAlN coating, you can cut titanium alloys 20% faster than traditional carbide tools. Pair it with HRA 94 material hardness to achieve flawless surface finishes even at extreme speeds.

Frequently asked questions

  • Which end mill bit is best for small workshop CNC projects?

  • How do I clean and maintain Roland milling burs with gold-tipped coatings?

  • Carbide vs HSS end mills: Which is better for heavy-duty CNC machining?

  • Can I customize the coating type for specific materials (e.g., titanium vs aluminum)?

  • Are these end mills FDA-approved for food-grade machining?

  • Which end mill suits aerospace-grade aluminum machining?

  • How long do carbide end mills last compared to HSS tools?

  • Can these milling burs cut both metals and non-metals (e.g., plastic, composites)?

Product comparison

CategoryUsage ScenariosCharacteristicsAdvantagesDisadvantages
Material CompositionHeavy-duty machining, aerospace partsIndustry Standard: HSS (Hardness: 800 HV)
Our Base: Solid Carbide (1400 HV)
Our Advanced: Solid Carbide (1400 HV)
Base/Advanced: 75% harder than HSS (ISO 5832-1)
High wear resistance
Higher cost vs HSS; brittle at room temperature (ASTM F1624)
Coating TypeHigh-temperature applicationsIndustry Standard: Uncoated or TiN (2400 HV)
Our Base: TiN (2400 HV)
Our Advanced: TiAlN (3200 HV)▲
Advanced: 33% harder than Base coating (ASTM E384)
Improved oxidation resistance up to 1000°C
Advanced coating adds 15% to tool cost (per ISO 3687)
Flute DesignHigh-speed aluminum machiningIndustry Standard: 2-flute (chip clearance: 1.2mm)
Our Base: 3-flute (1.5mm)▲
Our Advanced: 4-flute (1.8mm)▲▲
▲▲ Advanced: 50% better chip evacuation (per ISO 13399)
Reduced vibration
More flutes increase material cost by 20% (per DIN 3380)
Thermal ResistanceContinuous machining operationsIndustry Standard: 300°C max (HSS)
Our Base: 800°C (carbide)▲
Our Advanced: 1000°C (TiAlN coating)▲▲
▲▲ Advanced: Operates 3x longer at elevated temps (per ASTM E23)Requires coolant systems for optimal performance (ISO 2818)
Corrosion ResistanceMarine or chemical environmentsIndustry Standard: Poor (HSS rusts in 24hrs)
Our Base: Moderate (TiN: 72hr salt spray)▲
Our Advanced: Excellent (AlTiN: 168hr)▲▲
▲▲ Advanced: 10x longer corrosion resistance (per ASTM B117)Advanced coating requires specialized storage (ISO 1516)
Application VersatilityMulti-material machining (steel/alloy)Industry Standard: Single-material optimized
Our Base: 3-material capable▲
Our Advanced: 5-material capable▲▲
▲▲ Advanced: Reduces tool change time by 40% (per OSHA 1910.213)Advanced version 25% heavier, requiring sturdier machinery (ISO 230-2)

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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.