Precision cutting tools for solid surface materials.
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66-000 Series Solid Carbide – Edge Rounding CNC Router Bits | Onsrud
£58.75 – £134.93 +VATAluminium router bit designed for rounding the edge of sheets or parts. -
62-800 Solid Carbide – O Flute, Downcut
£22.86 – £62.67 +VATDesigned to provide a smooth finish in hard plastics with downward chip removal. -
62-700 Solid Carbide – O Flute, Downcut
£27.23 – £152.19 +VATDesigned to provide a smooth finish in hard plastics with downward chip removal. -
57-600 Solid Carbide – O Flute, Downcut
£30.07 – £108.65 +VATDesigned to cut plastic with a smooth finish and downward chip flow. -
56-450 Series Solid Carbide – Straight V Flute Router Bit | Onsrud
£44.41 – £121.65 +VATThe Onsrud 56-450 straight v flute router bit is designed specifically to rout harder and more rigid plastics, composite materials and solid surfaces. -
56-400 Series Straight Double Edge Router Cutter | Onsrud
£20.81 – £55.01 +VATThe Onsrud straight double edge router cutter is designed for precision cutting of various materials, including composite plastics, hard plastics, solid surface materials, and foam. -
60-200 Solid Carbide – Low Helix Finisher
£47.50 – £328.40 +VATDesigned for perfect balance and ultra smooth finish over a wide speed range. -
52-600 Solid Carbide – O Flute, Upcut
£23.74 – £325.38 +VATLow helix geometry designed to cut soft and hard plastic with a smooth finish and upward chip flow. -
52-500 Series Solid Carbide – Straight Single Edge Router Cutter | Onsrud
£59.11 – £84.34 +VATA solid carbide single straight edge router cutter for aluminium machining. -
52-000 Series Solid Carbide -Spiral, Upcut Router Bits | Onsrud
£19.35 – £93.07 +VATDesigned as a general purpose spiral with several times the life of their high speed steel counterparts. They are used when upward chip flow is… -
52-700 Series Solid Carbide – Upcut O Flute Router Bit | Onsrud
£50.96 – £415.70 +VATThis upcut o flute router bit is designed to cut soft plastic with a smooth finish and upward chip flow. Special point geometry for improved…