Industrial 3D Design of Delivery Robot
Budget: $1,500 – $3,000 USD
We are looking for an experienced 3D industrial designer to design the external body and chassis of a delivery robot. This robot will be used in real-world operational environments, so the design must balance aesthetics, manufacturability, durability, and serviceability. This project focuses on the robot body/enclosure, not navigation algorithms or electronics design.
Scope of Work
Design the outer shell / body of a delivery robot
Ensure the design is suitable for 3D printing and/or low-volume manufacturing
Incorporate constraints around:
Internal component mounting (robot base, battery, sensors, compute unit)
Cable routing, ventilation, and access panels
Structural rigidity and stability
Create a clean, modern, and professional industrial design suitable for commercial deployment
Iterate based on feedback
Deliverables
3D CAD files (preferred formats: STEP, IGES, Fusion 360, SolidWorks)
3D-printable files (STL)
Basic assembly structure or exploded view (if applicable)
Optional: high-quality renders for visualization (KeyShot / Blender / Fusion render)
Technical Requirements
Experience designing robot bodies, enclosures, or mechanical housings
Strong understanding of DFM / DFA, especially for 3D printing
Familiarity with materials commonly used in 3D printing (PLA, PETG, ABS, Nylon, etc.)
Ability to design around real-world constraints (mounting points, tolerances, service access)
Timeline
~2 weeks
Scope of Work
Design the outer shell / body of a delivery robot
Ensure the design is suitable for 3D printing and/or low-volume manufacturing
Incorporate constraints around:
Internal component mounting (robot base, battery, sensors, compute unit)
Cable routing, ventilation, and access panels
Structural rigidity and stability
Create a clean, modern, and professional industrial design suitable for commercial deployment
Iterate based on feedback
Deliverables
3D CAD files (preferred formats: STEP, IGES, Fusion 360, SolidWorks)
3D-printable files (STL)
Basic assembly structure or exploded view (if applicable)
Optional: high-quality renders for visualization (KeyShot / Blender / Fusion render)
Technical Requirements
Experience designing robot bodies, enclosures, or mechanical housings
Strong understanding of DFM / DFA, especially for 3D printing
Familiarity with materials commonly used in 3D printing (PLA, PETG, ABS, Nylon, etc.)
Ability to design around real-world constraints (mounting points, tolerances, service access)
Timeline
~2 weeks