Finalize Fusion 360 Product Assembly
Budget: $250 – $750 USD
I have an almost-complete Fusion 360 design that needs a skilled touch so it can move from concept to a print-ready, manufacture-ready file set. The main geometry is roughed in, but the components still sit as loose parts, and the motion study is only sketched out.
Here’s the work that remains:
• Assemble every existing component inside Fusion 360 with proper joints, constraints, and motion links so the mechanism runs smoothly.
• Integrate the gears and pulleys that power the device, confirming correct pitch, clearance, and alignment so nothing clashes during simulation.
• Wrap the working core in a metal casing designed for a durable powder-coated finish, complete with ribs, bosses, venting, and mounting features where needed.
• Prepare and hand over a clean, fully referenced Fusion 360 file plus STEP and STL exports that are ready for 3-D printing or CNC fabrication.
• Include quick notes on suggested print orientation, tolerances, and fastener call-outs to guide my fabricator.
Acceptance criteria: the assembly opens in the current release of Fusion 360 with no broken links, passes an interference check, and shows full range-of-motion in the joints. Wall thicknesses, draft angles, and fillets must meet typical DFM guidelines for powder-coated metal parts.
I will supply my .F3D workspace, sketches, and gear data sheets as soon as we start. Let me know your timeline and any clarifying questions—looking forward to finishing this model together.
Here’s the work that remains:
• Assemble every existing component inside Fusion 360 with proper joints, constraints, and motion links so the mechanism runs smoothly.
• Integrate the gears and pulleys that power the device, confirming correct pitch, clearance, and alignment so nothing clashes during simulation.
• Wrap the working core in a metal casing designed for a durable powder-coated finish, complete with ribs, bosses, venting, and mounting features where needed.
• Prepare and hand over a clean, fully referenced Fusion 360 file plus STEP and STL exports that are ready for 3-D printing or CNC fabrication.
• Include quick notes on suggested print orientation, tolerances, and fastener call-outs to guide my fabricator.
Acceptance criteria: the assembly opens in the current release of Fusion 360 with no broken links, passes an interference check, and shows full range-of-motion in the joints. Wall thicknesses, draft angles, and fillets must meet typical DFM guidelines for powder-coated metal parts.
I will supply my .F3D workspace, sketches, and gear data sheets as soon as we start. Let me know your timeline and any clarifying questions—looking forward to finishing this model together.
Related categories:
CAD/CAM
Solidworks
Product Design
3D Modelling
3D Design
Fusion 360
3D CAD
3D Print Design