0.2500" DIAMOND-CUT CARBIDE ROUTER BURR DOWN-CUT 1/4"DIA Kyocera Microtools 2121-2500.4100F
0.2500" DIAMOND-CUT CARBIDE ROUTER BURR DOWN-CUT 1/4"DIA Kyocera Microtools 2121-2500.4100F
Part Number: 2121-2500.4100F
SKU: 387144273333
Manufacturer: Kyocera Microtools
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PRODUCT STATS
DIAMETER | 0.2500" |
CUT DIRECTION | Down Cut |
LENGTH OF CUT | 1.0000" |
OVERALL LENGTH | 3.0" |
BRAND | Kyocera Microtools |
COATING | Uncoated |
CUTTING SIZE | 1/4" |
ENDS | Single |
END STYLE | Fish Tail |
FINISH TYPE | Bright |
FLUTE DIRECTION | Right Hand |
FLUTE STYLE | Diamond Cut |
MATERIAL | Solid Carbide |
MATERIALS CUT | Composite Materials, Fiberglass, Carbon Fiber, Wood |
MPN | 2121-2500.4100F |
SHANK SIZE | 0.25" |
SIZE | 1/4" |
These are down-cut design which helps prevent the lifting of material while routing.
Diamond-cut carbide router burrs are precision-engineered cutting tools designed for intricate and efficient material removal.
Made from industrial high-quality tungsten carbide, this tool design incorporates sharp, fine-grained diamond-cutting surfaces, allowing for precise and clean cuts across various materials such as wood, metals, plastics, and composites such as carbon fiber. Whether used in printed circuit board depanelization, woodworking, metalworking, or sculpting, these burrs showcase unparalleled hardness and wear resistance, ensuring extended longevity and consistent performance even under demanding conditions.
Moreover, their compatibility with different rotary tools and routers makes them a valuable asset for craftsmen, artisans, and professionals seeking high-quality and reliable cutting tools for intricate and demanding applications. Whether in hobbyist workshops or industrial settings, diamond-cut carbide router burrs stand out as indispensable tools for achieving precision and finesse in material shaping and removal.
The fishtail end style is designed to create flat-bottom cuts, with reduced splintering and reduced heat buildup (leading to decreased tool wear).
The down-cut flute design helps keep the material from lifting during routirng.