Substrate and grade (carbide grain size, cobalt %, cermet, ceramic, CBN, PCD)
Sets the hardness / toughness trade-off. Fine grain and low cobalt resist wear; coarser grain and higher cobalt survive interruption and vibration.
Deal-breakerCoating (AlTiN, TiAlN, TiCN, AlCrN, DLC, diamond, uncoated polished)
Governs usable surface speed and thermal behaviour. The wrong coating on aluminium or titanium costs more than an uncoated tool would.
Deal-breakerEdge geometry — rake, helix and edge prep (hone, T-land, chamfer)
Decides cutting force and edge strength. A sharp edge shears gummy material; a honed or T-landed edge survives hardened steel and interrupted cuts.
KeyFlute count and chip gullet
Chip evacuation against edge engagement. Too many flutes in aluminium packs chips and welds; too few in steel leaves finish and productivity on the table.
KeyCorner radius / nose radius
The biggest single lever on edge strength and on achievable internal corner detail — and it sets the finish at a given feed.
KeyShank and machine interface (Weldon, hydraulic, shrink, HSK / CAT / BT)
Runout at the tool tip is dominated by the interface, not the tool. It decides whether all flutes actually cut.
Nice-to-knowThrough-tool coolant capability and required pressure
Deep holes, titanium and stainless are evacuation problems before they are cutting problems. Some tools are only rated with coolant through the tool.
Nice-to-knowManufacturer cutting data by ISO material group (P / M / K / N / S / H)
The starting Vc and fz window. Without it you are guessing, and the first guess is what breaks the tool.
Nice-to-know