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Functional Drive Component — 2025

Planetary Gearbox

A 27:1 reduction stage printed in carbon-filled nylon, running continuously on a test rig for over two hundred hours without measurable backlash growth.
CARBON FIBERFDMEngineering

Preparing 3D view

Loading geometry and materials.

Project
Planetary Gearbox
Material
CARBON FIBER
Technology
FDM
Print Time
26 hours
Layer Height
0.12 mm
Weight
410 g
Dimensions
120 x 120 x 95 mm
Industry
Engineering

01 / Challenge

Challenge

A robotics team needed a reduction gearbox that could survive a demonstration season. Off-the-shelf units were either too heavy or eight weeks out.

02 / Design

Design

Helical tooth profiles were generated to spread load across more contact, and the ring gear was printed as a single piece to avoid a seam in the load path. Bearing seats were modelled 0.15 mm undersize for a press fit.

03 / Printing Process

Printing Process

Carbon-filled nylon printed at 0.12 mm through a hardened 0.4 mm nozzle, dried immediately before printing and annealed after to relieve internal stress.

04 / Final Result

Final Result

Two hundred hours of continuous rig time with backlash growth under 0.3 degrees. The team ran the same gearbox through the full competition season.

Gallery

Through the build

Four moments from the job, in the order they happened.

  • 01
    Sun and planet gears before assembly
  • 02
    Ring gear, printed as one piece
  • 03
    Assembled stage on the test rig
  • 04
    Tooth contact after 200 hours
Planetary Gearbox

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