I will do enclosure design, 3d cad model with solidworks for injection mold


About this gig
As a professional Mechanical and Industrial Design Engineer with 7+ years of experience, I deliver production-ready enclosure design, high-precision 3d cad model configurations. My expertise centers on optimizing complex geometry in solidworks for injection mold production, ensuring flawless manufacturing alignment.
Services I Offer
- Custom electronic enclosure design (plastic, sheet metal)
- Parametric 3d cad model generation, complex assemblies
- Solidworks design for injection mold tooling
- Draft analysis, uniform wall thickness optimization
- Snap-fit, screw boss, interlocking joint design
Tools I Use
SolidWorks, Autodesk Fusion 360, Ansys
File Formats Delivered
STEP, IGES, STL, SLDPRT, SLDASM
Why Work With Me?
- Unlimited Revisions for guaranteed functional precision
- Native engineering execution (no low-quality conversions)
- Strict DFM/DFA manufacturing compliance alignment
CONTACT ME NOW!
Delivery style preference
Please inform the freelancer of any preferences or concerns regarding the use of AI tools in the completion and/or delivery of your order.
Get to know Daniel Smith
Mechanical Design Engineer, 3D CAD Design, Product Development
- FromNigeria
- Member sinceJul 2026
- Avg. response time1 hour
- Last deliveryabout 6 hours
Languages
German, English, French, Spanish, Italian, Dutch
FAQ
What files or specifications are required to begin my enclosure design?
To initiate development, please provide your internal PCB dimensions, electronic component layouts (STEP or DXF), or detailed reference sketches. This allows for accurate configuration of the initial 3d cad model to align perfectly with your hardware footprint.
What primary engineering software is utilized for the design process?
All native development is conducted within solidworks to guarantee parametric precision and industrial-grade compatibility. This enables seamless editing, robust assembly management, and exact preparation for injection mold tooling fabrication.
How do you guarantee the 3d cad model is optimized for high-volume manufacturing?
Every technical enclosure design undergoes a strict Design for Manufacturing (DFM) verification loop. The geometry is engineered directly within solidworks with correct draft angles, nominal walls, and core-cavity considerations for the final injection mold.
Can your workflow handle multi-component systems and interlocking assemblies?
Yes, I specialize in multi-part structural architectures requiring complex mechanical constraints. The final 3d cad model features precise snap-fits, screw bosses, and sliding alignment tracks evaluated natively via solidworks interference detection.
How are structural modifications managed during the project lifecycle?
Every tier includes Unlimited Revisions to protect your development schedule and guarantee physical compatibility. If tolerances require fine-tuning, your solidworks file will be rapidly updated to maintain a flawless enclosure design.
What standard engineering deliverables are included upon completion?
You will receive production-ready STEP and IGES files for tooling, STL files for 3D printing, and native SLDPRT/SLDASM files for future solidworks engineering modifications. This covers all development phases from initial prototyping to final injection mold fabrication.
Do you account for material shrinkage, draft angles, and wall uniformity?
Absolute technical precision is maintained by embedding uniform nominal walls and proper draft angles optimized for your chosen polymer. This localized solidworks execution minimizes sink marks and warp defects during the mass-production injection mold cycle.

