Freelancers using Plasticity in Lagos
Freelancers using Plasticity in Lagos
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Deborah Ayodele
Lagos, Nigeria
CAD Industrial Designer PCB Product Designer DFM 3D Modeler
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CAD Industrial Designer PCB Product Designer DFM 3D Modeler
1
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.
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Mechanical Clicker Keychain | Product Design, CAD Modeling & Design for Manufacturing Simple products are often the most challenging to design well. This project explores the development of a compact mechanical clicker keychain that combines satisfying tactile feedback with a clean, durable, and manufacturing-friendly enclosure. The objective was to create a pocket-sized everyday carry (EDC) accessory that feels premium, is comfortable to use repeatedly, and can be efficiently manufactured. The design process focused on balancing ergonomics, aesthetics, structural integrity, and ease of assembly while keeping the overall form compact enough for daily carry. The product was developed as a fully parametric SolidWorks model, allowing every feature to be refined throughout the design process. I designed the enclosure around a mechanical switch assembly, incorporating internal alignment posts, snap-fit features, reinforcing ribs, optimized wall thicknesses, and smooth fillets to improve durability and manufacturability. The housing was also optimized for FDM 3D printing, reducing support material while maintaining strength and dimensional accuracy. To communicate the complete engineering process, I created exploded assembly views, cutaway visualizations, internal component layouts, manufacturing optimization studies, and presentation-ready renders. These assets demonstrate not only the appearance of the product but also how it is assembled, functions internally, and can transition from prototype to production. This project showcases my end-to-end product development workflow—from concept refinement and CAD engineering to design for manufacturing (DFM), rapid prototyping, and professional product visualization. Project Highlights Consumer product design Mechanical product development SolidWorks parametric CAD modeling Enclosure and housing design Snap-fit feature design Exploded assembly creation Internal component integration Cutaway and section visualizations Design for Manufacturing (DFM) FDM 3D printing optimization Product rendering and presentation Tools Used SolidWorks • Industrial Design • Product Design • 3D CAD Modeling • Mechanical Design • Plastic Part Design • Snap-Fit Design • Product Visualization • Rapid Prototyping • Design for Manufacturing (DFM)
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Smart Pill Dispenser Design | Medical Device CAD & Product Development Designed a smart pill dispenser from concept through manufacturing-ready product development, combining industrial design, mechanical engineering, and consumer electronics into a compact, user-friendly medical device. The objective was to create a reliable dispensing system that improves medication adherence while maintaining an intuitive user experience and a clean, modern aesthetic. The project covered the complete hardware development process, including product concept exploration, ergonomic enclosure design, internal mechanical architecture, pill carousel and dispensing mechanism, electronic component integration, exploded assemblies, engineering documentation, and production-ready CAD models. Every component was developed with Design for Manufacturing (DFM) principles to simplify assembly, optimize part count, and support efficient manufacturing and future prototyping. The result is a functional, manufacturing-focused product concept that demonstrates expertise in medical device development, precision mechanical design, CAD engineering, and product visualization.
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Precision Wall Clock Gear Assembly | Mechanical CAD Design & DFM Designed and engineered a precision wall clock gear assembly featuring a complex multi-stage gear train, robust support frame, and manufacturing-ready mechanical components. The project focused on achieving accurate gear meshing, smooth rotational motion, reliable shaft support, and efficient assembly while maintaining a clean, visually appealing mechanical design. The complete development process included detailed 3D CAD modeling, full assembly creation, gear train optimization, section views, engineering drawings, BOM generation, and realistic product visualization. Every component was developed with Design for Manufacturing (DFM) principles to ensure manufacturability, ease of assembly, dimensional accuracy, and long-term mechanical performance. This project demonstrates expertise in precision mechanical design, CAD assembly management, tolerance considerations, production documentation, and engineering visualization for manufacturing-ready products.
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