Projects using Fusion 360 in LagosProjects using Fusion 360 in LagosA concept-to-prototype industrial design project for a compact handheld scent device designed to store and release a single fragrance in a practical, durable, and easy-to-use form.
The design process explored the product form, ergonomics, internal mechanism, component architecture, CAD development, prototyping, material considerations, and manufacturing feasibility.
The goal was to balance a refined consumer-product appearance with practical mechanical construction, intuitive handling, reliable scent delivery, and a realistic path toward physical prototyping and production.
My focus included:
Industrial and product design
Handheld ergonomics and form development
3D CAD and mechanical development
Internal component architecture
Prototype development
Material and manufacturing considerations
Product refinement and visualization
The final concept brings the form, mechanism, and user experience together into a compact consumer product designed with real-world manufacturing in mind. Baby Silicone Hair Barrette Design | Industrial Design | CAD | Injection Molding | DFM
Designed a production-ready baby silicone hair barrette from concept to manufacturing. This project includes industrial design, concept sketches, 3D CAD modeling, engineering drawings, wall thickness analysis, DFM considerations, realistic product rendering, and manufacturing-ready documentation. Developed using food-grade silicone design principles for safety, flexibility, durability, and efficient injection molding for baby and children's products. Baby Silicone Teether Design | Industrial Design | CAD | Product Development | Injection Molding | DFM
Designed a baby silicone teether from concept to production-ready CAD with a focus on safety, ergonomics, and manufacturability. The project includes concept sketching, industrial design, 3D CAD modeling, engineering drawings, wall thickness analysis, DFM optimization, photorealistic rendering, and manufacturing documentation. Created using food-grade silicone design standards for injection molding, ensuring durability, comfort, and safe teething for infants. Smart Aroma Diffuser Design | Industrial Design, CAD Engineering & DFM
Designed a modern smart aroma diffuser from concept development through manufacturing-ready engineering, combining clean industrial design with practical mechanical design and Design for Manufacturing (DFM). The goal was to create a premium home wellness product with a calming aesthetic, intuitive user interaction, and an internal architecture optimized for efficient production and assembly.
The project included industrial design exploration, ergonomic form development, internal component packaging, ultrasonic misting system integration, injection molding optimization, wall thickness and draft angle analysis, engineering documentation, and realistic product visualization. Every design decision was made with manufacturing, assembly efficiency, serviceability, and product performance in mind.
This project demonstrates the complete product development workflow, from concept and engineering to manufacturing documentation and high-quality product visualization, making it suitable for consumer electronics, home appliances, and wellness product development. Smart Pump Room Design | Mechanical Engineering | P&ID | 3D CAD
Behind every reliable water distribution system is a well-engineered pump room. This project showcases the complete design of a hydro-pneumatic booster pump system, developed to deliver stable pressure, operational reliability, and simplified maintenance for industrial and commercial applications.
The project included the mechanical layout, piping arrangement, Process & Instrumentation Diagram (P&ID), General Arrangement (GA) drawing, equipment schedules, and high-quality 3D visualization. Every component, from the multistage pumps and filtration system to the pressure tank and control panel, was carefully positioned to ensure efficient operation, easy servicing, and future scalability.
Project Deliverables
✔ Pump Room Layout Design
✔ P&ID Development
✔ General Arrangement (GA) Drawing
✔ Mechanical & Piping Design
✔ Equipment & Valve Schedules
✔ Technical Engineering Documentation
✔ Photorealistic 3D Visualization
This project demonstrates my ability to transform engineering concepts into clear, manufacturing-ready documentation that supports fabrication, installation, and long-term operation.
Tools: SolidWorks | AutoCAD | Mechanical Design | P&ID | Engineering Drawings | Industrial Design | 3D Rendering
Keywords: Pump Room Design, Mechanical Engineering, Industrial Design, P&ID, General Arrangement Drawing, Piping Design, Hydro-Pneumatic System, Water Treatment, CAD Design, SolidWorks, AutoCAD, Industrial Equipment Design, Engineering Drawings, 3D CAD, Technical Documentation. Waterproof Protective Storage Case | Industrial Product Design & DFM
Every successful product starts with solving a real-world problem. For this concept, I designed a compact waterproof protective case intended to keep small valuables safe from water, dust, and impact during outdoor activities such as hiking, kayaking, camping, and travel.
The project began with user research and concept exploration to identify the features that would matter most in everyday use, easy one-handed access, reliable waterproof sealing, durability, portability, and a clean, modern appearance. After evaluating multiple design directions, I refined the selected concept into a production-focused solution that balances functionality, aesthetics, and manufacturability.
The product was developed as a fully parametric CAD model in SolidWorks with injection molding in mind. The enclosure incorporates consistent wall thickness, reinforcing ribs, generous fillets, draft angles, integrated sealing features, and a simplified part count to support efficient manufacturing while maintaining structural strength. I also created an exploded assembly, detailed section views, and design-for-manufacturing (DFM) documentation to validate the product's readiness for production.
This project demonstrates my complete product development workflow, from concept ideation and CAD engineering to manufacturing considerations, showcasing how I approach designing consumer products that are both visually refined and practical to manufacture.
Project Highlights
User-centered concept development
Industrial product design
SolidWorks parametric CAD modeling
Exploded assembly creation
Engineering section views
Injection molding design
Design for Manufacturing (DFM) review
Material and finish selection
Wall thickness and draft angle optimization
Production-ready product documentation
Tools Used
SolidWorks • Industrial Design • Product Design • 3D CAD Modeling • Design for Manufacturing (DFM) • Product Development • Injection Molding Design • Product Visualization Bench Grinder Mechanical Assembly | SolidWorks CAD & Engineering Documentation
This project showcases my end-to-end workflow for creating a manufacturing-ready mechanical assembly in SolidWorks. The goal was to accurately model a bench grinder while demonstrating the level of detail I bring to industrial equipment and mechanical product development.
Starting from the overall product architecture, I created a fully parametric 3D assembly with individually modeled components, realistic part relationships, and assembly constraints. Every major component, including the base, motor housing, grinding wheels, wheel guards, tool rests, shafts, and junction box, was designed to reflect practical engineering and manufacturability.
Beyond the CAD model, I produced detailed engineering documentation, including orthographic drawings, dimensional layouts, mounting details, and section views that reveal the internal shaft and bearing assemblies. These drawings communicate how the product is built, assembled, and manufactured while maintaining clear technical standards.
This project highlights my ability to transform a product concept into a clean, organized, and production-ready CAD package suitable for prototyping, engineering review, and manufacturing documentation.
Deliverables
Fully parametric SolidWorks 3D assembly
Individual mechanical part modeling
Assembly mates and constraints
Technical drawings with dimensions
Orthographic and isometric views
Section and detail views
Manufacturing-ready documentation
High-quality product rendering
Tools Used: SolidWorks • Mechanical Design • CAD Modeling • Engineering Drawings • Product Visualization.