From design to deposition
Flexam empowers next-generation additive manufacturing solutions across many industries.
Wire-arc cladding to put worn industrial parts back in service
Robotic WAAM toolpaths for one-off repair geometry — variable bead width, surface-following passes, fixture-aware reachability.
Continuous fiber laid along the load
Toolpath generation for continuous fiber-reinforced printing, with fiber continuity optimization and load-path alignment to maximize structural performance.
Reduce lead times with LFAM mould printing
large-format mould printing, with process-specific strategies for dimensional stability, surface quality, and reduced post-machining.
Patient-specific devices in flexible materials.
Non-planar toolpaths for form-fitting medical devices with complex organic geometries. Print along body contours in TPU and other elastomers for smoother surfaces, better conformity, and fewer supports.
Concrete printing that respects cure time and reinforcement.
Layer-time-aware path planning, reinforcement-aware seam placement, multi-axis paths for non-planar walls. Pre-fab to full envelopes.
Researching automated multi-axis slicing from CAD to reviewable toolpaths.
A research pipeline combining geometric analysis, intelligent segmentation, strategy recommendations, and multi-axis toolpath generation for defined machines and workflows.
Tackling complex challenges from start to finish
Geometry as input
Upload your STL or STEP file, receive machine instructions.
Complex Kinematics
Up to 12 axes, collision detection, fixturing and support avoidance.
Multiple strategies on the same part
One part, multiple strategies: mix planar, conformal, with fiber along the load.
Auditable Outputs
Traceable parameters, signed logs, repeatable parts across machines.
Have a use case of your own?
Bring us your machine, your part, and your constraints. We'll come back with what an automated multi-axis pipeline produces.