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End mill 27
corner radiussolidindexing

End mill - 27  - KYOCERA SGS Precision Tools - corner radius / solid / indexing
End mill - 27  - KYOCERA SGS Precision Tools - corner radius / solid / indexing
End mill - 27  - KYOCERA SGS Precision Tools - corner radius / solid / indexing - image - 2
End mill - 27  - KYOCERA SGS Precision Tools - corner radius / solid / indexing - image - 3
End mill - 27  - KYOCERA SGS Precision Tools - corner radius / solid / indexing - image - 4
End mill - 27  - KYOCERA SGS Precision Tools - corner radius / solid / indexing - image - 5
End mill - 27  - KYOCERA SGS Precision Tools - corner radius / solid / indexing - image - 6
End mill - 27  - KYOCERA SGS Precision Tools - corner radius / solid / indexing - image - 7
End mill - 27  - KYOCERA SGS Precision Tools - corner radius / solid / indexing - image - 8
End mill - 27  - KYOCERA SGS Precision Tools - corner radius / solid / indexing - image - 9
End mill - 27  - KYOCERA SGS Precision Tools - corner radius / solid / indexing - image - 10
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Characteristics

Geometry
end mill, corner radius
Construction
solid, indexing
Type
finishing, roughing, profiling
Material
coated, diamond
Treated material
for plastics, for composites
Other characteristics
cutting edge, variable helix, for the aeronautical industry, high-rigidity, with cylindrical shank, for automobiles, for molds, for medical equipment
Diameter

Max.: 16 mm
(0.63 in)

Min.: 6 mm
(0.24 in)

Length

Max.: 115 mm
(4.53 in)

Min.: 63 mm
(2.48 in)

Description

Slow helix design adds strength to the edge allowing easy milling of highly abrasive materials. Available with Di-NAMITE diamond coating. Di-NAMITE is the hardest coating available with the best abrasion resistance. Features Helix Slow helix design adds strength to the edge allowing ease for milling highly abrasive materials. Two levels of chatter suppression: variable helix and indexing. This rigid design of a slow helix is complimented with a variable helix to help reduce vibration and deflection. Flute Four flute end mill series engineered for machining non-ferous materials. Design The stable configuration and full cutting-edge leads to improved surface finishes. Excels at roughing (slotting, profiling) and finishing in a variety of plastics and composites. The design creates a short path for material evacuation during machining. Balanced geometry reacts positively to address the complexity of the composite fiber matrix. Coatings This is the hardest coating available with the best abrasion resistance. It is carbon based so it is limited in application capabilities. This coating is suitable for machining highly abrasive, non-ferrous materials such as CFRP and graphite.
*Prices are pre-tax. They exclude delivery charges and customs duties and do not include additional charges for installation or activation options. Prices are indicative only and may vary by country, with changes to the cost of raw materials and exchange rates.