Print-ready geometry.
Every model that goes to a printer needs to be checked, repaired, and configured. This is where that work happens — methodically, with a group that knows what breaks and why.
and prepared
Numbers from actual work
Consistency is harder to fake than a single result. The figures below come from repeated cycles of model intake, diagnosis, repair and print verification — not from one-off projects.
Most models arrive with at least one structural issue. Non-manifold edges, inverted normals, and wall thicknesses below 0.8 mm are the most common. The group process catches these before a single gram of filament is wasted.
SLA
SLS Print technologies covered in preparation


Two things that actually matter
Group diagnosis
Errors that one person misses are caught when several people review the same geometry. The group format is not a teaching exercise — it is a quality mechanism. A single reviewer develops blind spots. A group does not.
Structured process
Each model moves through a defined sequence: intake, audit, repair, verification. Nothing is skipped because a participant is confident. The structure exists precisely because confidence is not the same as accuracy.
Documented decisions
Every repair choice and slicer setting is recorded. When a print fails two weeks later, there is a record of what was decided and why. That record is what makes iteration possible rather than starting over from scratch.
Hulnavek processWhat the work actually takes
Preparation work is not passive. You will review other participants' models, document your own repair decisions, and complete each stage before the group moves forward.
This is not a course where you watch and absorb. The group moves at a pace set by the slowest unresolved issue — which means your attention to detail directly affects everyone else's timeline.
- Active participation in each session
- Peer review of submitted models
- Written repair documentation
- Completion of assigned prep stages
- Familiarity with at least one 3D file format
Time per cycle
Three to four sessions per model preparation cycle. Each session runs 90 minutes. Participants who fall behind a stage are flagged before the next session begins — not during it.
Who fits well
Designers who produce models regularly and want systematic quality checks. Engineers moving from CAD to physical parts for the first time. Anyone who has had a print fail and wants to understand exactly where the preparation went wrong.
