Fusion360 Quadruped Robot 3D Model
Budget: £20 – £250 GBP
I’m ready to commission a complete CAD package for a dog-inspired quadruped robot that can be opened either in Fusion 360 or SolidWorks. The goal is a mechanically realistic design that I can export straight into CoppeliaSim for gait testing and then send to a 3-printer for fabrication without extra re-work.
Key details I must see in the model: the four legs should replicate a natural walking gait, not running or jumping, and every joint needs realistic ranges of motion that match common hobby servos. On top of the torso I want a single upper arm that ends in a five-finger, human-like robotic hand—we’re after detailed anatomical shaping rather than a simple claw—so the fingers, thumb, palm contours and basic knuckle geometry have to be there. A small camera will eventually sit in the palm, so leave a cavity and cable path for that.
Because I’ll print mostly in PLA and PETG, wall thicknesses, tolerances, and joint clearances should reflect standard desktop FDM capabilities. Think screw-together or snap-fit modules so I can assemble the whole robot without specialized fixtures.
When you deliver, I’ll need:
• Native CAD (Fusion 360 *.f3d or SolidWorks *.sldasm/*.sldprt) with fully parametric history
• STEP and STL exports for every part and a complete assembly
• A brief note or screenshot showing the model imported into CoppeliaSim with joints recognized
If this is within your wheelhouse, let’s talk timelines and any extra data you need from me.
Key details I must see in the model: the four legs should replicate a natural walking gait, not running or jumping, and every joint needs realistic ranges of motion that match common hobby servos. On top of the torso I want a single upper arm that ends in a five-finger, human-like robotic hand—we’re after detailed anatomical shaping rather than a simple claw—so the fingers, thumb, palm contours and basic knuckle geometry have to be there. A small camera will eventually sit in the palm, so leave a cavity and cable path for that.
Because I’ll print mostly in PLA and PETG, wall thicknesses, tolerances, and joint clearances should reflect standard desktop FDM capabilities. Think screw-together or snap-fit modules so I can assemble the whole robot without specialized fixtures.
When you deliver, I’ll need:
• Native CAD (Fusion 360 *.f3d or SolidWorks *.sldasm/*.sldprt) with fully parametric history
• STEP and STL exports for every part and a complete assembly
• A brief note or screenshot showing the model imported into CoppeliaSim with joints recognized
If this is within your wheelhouse, let’s talk timelines and any extra data you need from me.
Related categories:
CAD/CAM
Solidworks
Mechanical Engineering
3D Modelling
3D Design
3D Printing
Fusion 360