How does the angle of a tap's cutting face affect chip flow?
The cutting-face angle directs chips: a spiral point tap pushes chips downward into the hole, a spiral flute tap pulls chips upward out of the hole, and a straight flute tap allows chips to escape either direction depending on flow.
Which tap and chamfer should I use to reach full thread depth in a blind hole?
Use a bottoming chamfer tap (about one to two threads of lead-in) to reach full thread depth; pair it with a spiral-flute design to pull chips upward and avoid packing chips at the hole bottom.
Why not use spiral-flute bottoming taps for every hole?
They are more expensive and generate higher cutting forces because load concentrates on the initial threads, so they aren't necessary for many through-holes or low-force applications.
What thread counts define taper, plug and bottoming chamfers?
Typical chamfers: taper tap ≈ 8–9 threads, plug tap ≈ 4–5 threads, bottoming tap ≈ 1–2 threads of lead-in before full thread diameter.
How important is coolant during tapping?
Proper coolant concentration significantly reduces heat and tool wear; using a CSC booster or higher soluble concentration can extend tap life and improve chip evacuation.
Where do I find the correct tap drill diameter and what else should I check?
Refer to the Machinery's Handbook for tap drill sizes; also verify drill depth, account for drill/tap geometry and adjust programming feed/peck strategies as needed.