Reverse-Engineer RHD Conversion Parts
Budget: $20,000 – $50,000 USD
I need a full ground-up reverse-engineering package that lets me turn a left-hand-drive vehicle into a right-hand-drive one without relying on any factory data. The physical parts that must be captured are the steering system, dashboard controls and pedal assembly. I will ship clean sample components (or high-resolution scans, depending on what we agree) so you can measure, model and iterate.
Because I have zero legacy drawings, every detail has to be recreated: parametric CAD that reflects proper wall thicknesses, fastening points, clearances for wiring and column angle, as well as ergonomic alignment for the pedal box and control clusters. Once the CAD is signed off, I need print-ready STL/STEP files and at least one functional 3D-printed prototype per component for a trial fit in my mule chassis.
Deliverables
• Native CAD files (SolidWorks, CATIA, Inventor or similar) with fully editable feature trees
• Neutral formats (STEP, IGES) plus STL optimised for FDM/SLS printing
• One test-fit 3D print of each component, dimensional accuracy ±0.2 mm, ready to bolt into the vehicle
• A brief build note explaining materials chosen for the prototypes and any issues discovered during fit-up
Acceptance criteria: parts must align with the OEM mounting points, allow full steering travel, unobstructed pedal motion and maintain original switchgear functionality once mirrored. I will verify by installing the printed parts and supplying photos and measurement reports; any interference will trigger one revision round.
If you are comfortable with tight tolerances, automotive ergonomics and rapid-prototype workflows, let’s get this conversion moving.
Because I have zero legacy drawings, every detail has to be recreated: parametric CAD that reflects proper wall thicknesses, fastening points, clearances for wiring and column angle, as well as ergonomic alignment for the pedal box and control clusters. Once the CAD is signed off, I need print-ready STL/STEP files and at least one functional 3D-printed prototype per component for a trial fit in my mule chassis.
Deliverables
• Native CAD files (SolidWorks, CATIA, Inventor or similar) with fully editable feature trees
• Neutral formats (STEP, IGES) plus STL optimised for FDM/SLS printing
• One test-fit 3D print of each component, dimensional accuracy ±0.2 mm, ready to bolt into the vehicle
• A brief build note explaining materials chosen for the prototypes and any issues discovered during fit-up
Acceptance criteria: parts must align with the OEM mounting points, allow full steering travel, unobstructed pedal motion and maintain original switchgear functionality once mirrored. I will verify by installing the printed parts and supplying photos and measurement reports; any interference will trigger one revision round.
If you are comfortable with tight tolerances, automotive ergonomics and rapid-prototype workflows, let’s get this conversion moving.
Related categories:
CAD/CAM
Solidworks
AutoCAD
3D Modelling
3D Printing
CATIA
3D CAD
Automotive Engineering