Carbide End Mills

Super Precision Products manufactures high-performance solid carbide end mills designed for precision milling operations across various industrial applications. Our end mills deliver exceptional accuracy, reliability, and cutting efficiency in a range of materials, from aluminum and mild steel to hardened steel, stainless steel, and high-temperature alloys.

Technical Features

Material Grade :

  • Premium-grade solid carbide ensuring superior strength, durability, and consistent performance.

Flute Geometry Options :

  • Available in 2-flute, 3-flute, 4-flute, 5-flute, 6-flute, 8-flute, 10-flute, and 12-flute variants.
  • Optimized for chip evacuation, material removal rate, and superior surface finish.

Helix and Cutting Designs :

  • Variable Helix design for vibration reduction and improved cutting stability.
  • Unequal Indexing to enhance machining efficiency and surface finish.
  • Cutting Configurations:
    • Left helix, right cutting.
    • Left helix, left cutting.
    • Right helix, right cutting.
    • Right helix, left cutting.

End Profiles :

  • Square-end.
  • Ball-nose.
  • Corner radius (customizable upon request).
  • Small corner chamfer for improved tool life.

Precision Tolerances :

  • Tolerance for cutting diameter h8
  • Tolerance for shank diameter h6.
  • Manufactured to tight tolerances (typically ±0.005 mm) for optimal dimensional accuracy and superior surface finishes.

Cutting Capabilities :

  • Suitable for non-ferrous materials to up to 65 HRC hard materials, including aluminum and stainless steel.
  • Long-neck end mills and ball nose for deep milling applications.
  • Polished flutes for non-ferrous materials and aluminum to enhance chip evacuation and reduce built-up edge.

Shank and Cutting Diameter :

  • Available in standard and custom diameters, typically ranging from 1 mm to 32 mm to suit diverse machining needs.
  • Also available with Weldon shank for secure tool holding and enhanced stability.

Performance Benefits :

  • Extended tool life.
  • High material removal rates.
  • Exceptional surface finishes.
  • Reduced machining vibration.
  • Lower operational costs.