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  • SPKN 1504 EDSKR YBC301 Lathe Cutting Tools Blade Alloy Carbide Milling Insert
  • SPKN 1504 EDSKR YBC301 Lathe Cutting Tools Blade Alloy Carbide Milling Insert
  • SPKN 1504 EDSKR YBC301 Lathe Cutting Tools Blade Alloy Carbide Milling Insert
  • SPKN 1504 EDSKR YBC301 Lathe Cutting Tools Blade Alloy Carbide Milling Insert
  • SPKN 1504 EDSKR YBC301 Lathe Cutting Tools Blade Alloy Carbide Milling Insert
SPKN 1504 EDSKR YBC301 Lathe Cutting Tools Blade Alloy Carbide Milling Insert

SPKN 1504 EDSKR YBC301 Lathe Cutting Tools Blade Alloy Carbide Milling Insert

$0.80-$5.00/ Piece|30 Piece/Pieces(Min. Order)

Customization:

Customized logo(Min.Order: 100 pieces)
Customized packaging(Min.Order: 100 pieces)
Graphic customization(Min.Order: 100 pieces)

SPKN 1504 EDSKR YBC301 Lathe Cutting Tools Blade Alloy Carbide Milling Insert

Product overview

Core functionalities

Applicable scenarios

Unique advantages

  • Precision Metal Cutting: Designed for high-precision face milling operations, enabling clean cuts and smooth finishes on various metal surfaces.
  • Durability & Heat Resistance: Equipped with a TiCN coating and constructed from tungsten cobalt alloy, carbide, and alloy steel, ensuring longevity and optimal performance in high-temperature machining environments.

Key features

  • 1. Material Technology

  • With a tungsten cobalt alloy and carbide construction, achieve superior durability and resistance to wear in heavy machining operations*. The combination of materials ensures longevity even under high-stress cutting conditions.

  • 2. Coating Advantages

  • Equipped with a TICN (Titanium Carbonitride) coating, maintain optimal performance in high-temperature environments and resist corrosion, extending tool life by up to 30% compared to uncoated inserts*.

  • 3. Performance Parameters

  • Engineered for high-speed cutting, enabling faster material removal rates and smoother surface finishes than standard steel tools*. The carbide edge ensures precision in demanding machining tasks.

  • 4. Scenario Solutions

  • Designed for face milling operations, this insert delivers precision in creating flat surfaces for industrial manufacturing applications. Its robust construction supports continuous use in heavy-duty environments like automotive or aerospace machining*.

  • 5. Material Versatility

  • The blend of carbide hardness and alloy steel toughness allows safe cutting of both soft and hard materials, outperforming tools made from single-material designs*. Ideal for multi-task workshops requiring adaptability.

Product details

SPKN 1504 EDSKR YBC301 Lathe Cutting Tools Blade Alloy Carbide Milling Insert

The SPKN 1504 EDSKR YBC301 lathe cutting tool blade is a high-performance face mill insert engineered for precision machining. Crafted from a robust tungsten cobalt alloy and carbide matrix, it features a TicN (Titanium Carbonitride) coating to enhance wear resistance and heat dissipation. Designed for heavy-duty applications, this insert ensures consistent performance in demanding metalworking environments.

Technical specifications

FeatureSpecificationApplication Scenario
Material CompositionTungsten Cobalt Alloy, Carbide, SteelMachining steel, cast iron, and tough alloys
CoatingTicN (Titanium Carbonitride)General machining requiring heat resistance
TypeFace Mill InsertPrecision flat surface machining and slotting

Customization guide

Adjustable material composition and coating thickness to meet specialized machining requirements for high-toughness or high-temperature applications.

Get inspired

With its TicN coating, this insert delivers 30% longer tool life in standard machining operations. The tungsten cobalt alloy matrix ensures fracture resistance, ideal for cutting hardened steels.

Choose your model

ParameterBase ModelAdvanced ModelPro Model
HardnessHRA 89+15% (HRA 92)+30% (HRA 95)*
Thermal Resistance1000°CEnhanced (1050°C)Premium (1100°C)
Edge Retention200 min+25% (250 min)+75% (350 min)

Supplier's note

  1. Technical Breakthroughs:

    • TicN Coating: Reduces wear by 30% compared to uncoated tools, extending tool life in standard operations.
    • Tungsten Cobalt Alloy Matrix: Enhances fracture resistance by 20% for stable cutting in tough materials like titanium.
    • Face Mill Geometry: Minimizes vibration by 15%, enabling smoother surface finishes.
  2. Version Selection Guide:

    • Base Model: Ideal for general workshops machining aluminum or mild steel.
    • Advanced Model: Optimized for high-speed aluminum machining, with 25% improved edge retention.
    • Pro Model: Designed for titanium and hardened steels. Its 1100°C thermal resistance allows 75% longer use in high-temperature environments. With Pro’s HRA 95 hardness, users can achieve precision cuts in aerospace-grade alloys.

Frequently asked questions

  • Which milling cutter model is best for machining aluminum alloys with the SPKN 1504 EDSKR YBC301?

  • How do I clean and maintain SPKN 1504 EDSKR YBC301 milling inserts to extend their lifespan?

  • What’s the advantage of TICN coating over other coatings for face mills like the SPKN 1504 EDSKR YBC301?

  • Can the SPKN 1504 EDSKR YBC301 inserts handle high-temperature machining?

  • How does the tungsten cobalt alloy in SPKN milling inserts improve tool life?

  • Are SPKN 1504 EDSKR YBC301 inserts compatible with CNC machining centers?

  • What certifications does the SPKN 1504 EDSKR YBC301 meet for industrial use?

  • How do carbide inserts in the SPKN 1504 EDSKR YBC301 compare to high-speed steel (HSS) tools?

Product comparison

CategoryUsage ScenariosCharacteristicsAdvantagesDisadvantages
Face Milling CuttersHeavy-duty flat surface machiningCoating: Ticn (2400 HV ▲) (Industry Standard: Al₂O₃ 2000 HV)
Material: Tungsten Cobalt Alloy (89 HRA ▲) (ISO 6508)
Design: ISO 13399-compliant face mill
Hardness: 2400 HV coating resists high temps
Durability: 89 HRA alloy withstands heavy cuts
Higher cost than Industry Standard; requires precise alignment
End MillsProfiling, detailed cutsCoating: TiAlN (2600 HV ▲▲) (Industry Standard: Uncoated)
Material: Solid Carbide (93 HRA ▲▲) (ASTM F2066)
Flutes: 4-flute helical design
▲▲ Tool Life: 2x longer than uncoated tools
▲▲ Versatility: 4-flute cuts complex geometries
Fragile; prone to chipping in brittle materials
Ball Nose Cutters3D contouring, complex surfacesCoating: DLC (3000 HV ▲▲) (Industry Standard: Uncoated)
Material: Solid Carbide (95 HRA ▲▲) (ISO 14406)
Radius: 0.5–10mm
▲▲ Finish Quality: Mirror-like surfaces for aerospace parts
▲▲ Precision: ±0.001mm tolerance
Brittle; limited to softer materials like aluminum
Slotting CuttersKeyway/groove cuttingMaterial: High-Speed Steel (HSS, 65 HRC) (Industry Standard)
Rake Angle: 15° optimized for slotting
Cost-effective; simple design for manual machiningLow durability at high speeds; requires frequent sharpening
Drill MillsCombined drilling + millingMaterial: Cobalt Steel (70 HRC ▲) (Industry Standard: HSS 60 HRC)
Diameter: 2–16mm (ISO 2364)
Helix Angle: 35°
Multi-Functionality: Reduces tool changes by 40%
Speed: 1500 RPM max
Limited to smaller diameters; less rigid than dedicated mills
Tapping CuttersThread cutting in holesMaterial: Stainless Steel (200 HB) (Industry Standard)
Threads: ISO 261-compliant precision threading
Speed: 15–30 RPM
Reliable threading in blind holes; minimal vibrationSlow operation; requires precise hole alignment

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