Dental Endoactivator Prototype CAD
Budget: $10 – $30 USD
I’m developing a next-generation dental endoactivator and need a production-ready 3D design that a manufacturer can pick up without extra re-engineering. The model must show every intricate internal mechanism, locking feature, and fluid pathway so mold tooling and tolerance analysis can be completed straight from your files.
Key design notes
• The intent is a prototype for manufacturing, not just a visual render, so dimensional accuracy and proper draft angles for injection-moulded, medical-grade plastic components are essential.
• I require high detail: tiny moving parts, sealing grooves, and any luer or contra-angle interfaces should be modelled exactly.
• My baseline material is medical-grade plastic; if you see advantages in stainless-steel or ceramic inserts for strength or vibration efficiency, flag them and we can discuss.
Deliverables
• Native CAD plus neutral STEP/IGES files of each part and full assembly
• Print-ready STL for initial in-house validation
• Two or three high-resolution renders (orthographic + exploded) to brief the manufacturing team
• Short build note or annotation layer calling out critical tolerances, material specs, and surface finishes
I work in SolidWorks but am happy with Fusion 360, Creo, or similar as long as exports remain clean. Rapid, clear communication is important—I’m ready to answer questions about canal dimensions, ergonomic constraints, or ISO tip sizes as soon as we start.
Key design notes
• The intent is a prototype for manufacturing, not just a visual render, so dimensional accuracy and proper draft angles for injection-moulded, medical-grade plastic components are essential.
• I require high detail: tiny moving parts, sealing grooves, and any luer or contra-angle interfaces should be modelled exactly.
• My baseline material is medical-grade plastic; if you see advantages in stainless-steel or ceramic inserts for strength or vibration efficiency, flag them and we can discuss.
Deliverables
• Native CAD plus neutral STEP/IGES files of each part and full assembly
• Print-ready STL for initial in-house validation
• Two or three high-resolution renders (orthographic + exploded) to brief the manufacturing team
• Short build note or annotation layer calling out critical tolerances, material specs, and surface finishes
I work in SolidWorks but am happy with Fusion 360, Creo, or similar as long as exports remain clean. Rapid, clear communication is important—I’m ready to answer questions about canal dimensions, ergonomic constraints, or ISO tip sizes as soon as we start.