PLANAXISPrecision machining / demo

DEMO — fictional range. Local brief only, NOT SENT. No personal data is collected or transmitted.

PROCESS

Every re-clamp adds a datum.

A part is made in setups, and each setup introduces a new reference. The error between two references is added to the part, which is why the setup count is a drawing decision rather than a machine decision.

Turning between centres
One axis for every diameter · the setup that keeps a shaft concentric
Chuck turning
Faster, but each re-chuck introduces a new axis
3-axis milling
Faces and pockets from one direction · one datum, one setup
4- and 5-axis milling
Features on several faces without re-clamping · fewer datums accumulated
Fixture design
What holds the part decides what can be reached and what distorts
Deburring
Always required, rarely drawn, and the step most often skipped

Why the setup count is worth designing for

A design that needs three setups is a design with three chances to drift. Where the part allows it, moving a feature so it can be reached in the same setup as the datum removes an error rather than tightening a tolerance to absorb it.

Close view of a milled housing showing a rectangular pocket, a through bore and a bevelled edge.
Original 3D render · fictional appearance concept
What a machine list cannot tell you.

Whether the process holds the tolerance on your geometry. A machine's published accuracy is measured in ideal conditions on a test piece, not on the part in front of it.

The question worth asking instead.

Which feature will be hardest to hold, and how will it be measured. A supplier who can answer that has thought about the part rather than about the equipment list.