Analyze your part, decompose it into regions, and generates non-planar, multi-axis toolpaths.
Robotic WAAM toolpaths for cladding worn industrial parts. Variable bead width, surface-following passes, fixturing-aware path planning.
Non-planar toolpaths for form-fitting medical devices with complex organic geometries. Print along body contours in TPU and elastomers.
Layer-time-aware path planning, reinforcement-aware seam placement, multi-axis paths for non-planar walls.
Upload an STL, STEP, or 3MF. The geometry is voxelized and analyzed for curvature, overhangs, load directions, and feature topology.
The part is automatically decomposed into print regions. An optimal strategy is chosen for thermal optimization, overhangs, material use.
Output G-code or vendor-specific motion programs. Collision-checked against your kinematics.
Mesh errors, self-intersections, unsupported overhangs, and unreachable regions are caught and repaired automatically.
use Flexam Digital Twin to preview the toolpath against your machine's kinematic model. Preview layer-by-layer, inspect print time, material usage, and reachability.
Layer progress, deposition parameters, and deviations from the planned path are tracked in real-time and recorded for certification.
Adapted to your kinematics. Don't see your device? We are working hard to expand our offering
Send us the file and the machine. We'll show you what an automated multi-axis pipeline produces.