Mech-Design Studio

Mech-Design Studio Mechanical Engineering Designs using SOLIDWORKS
3D Modeling • CAD Drafting • Simulation • FEA & CFD

🔥 Discipline Today.🚀 Freedom Tomorrow.👑 Excellence Always. 💯
21/06/2026

🔥 Discipline Today.
🚀 Freedom Tomorrow.
👑 Excellence Always. 💯

21/06/2026

The project titled “Design, Production and Optimization of Process Variables of a Vertical Palm Fruit Digester” is a Master’s-level engineering project focused on improving the efficiency of palm fruit digestion for small-to-medium-scale palm oil processing.
The system was designed and modelled using SOLIDWORKS , with emphasis on functional performance, manufacturability, and operational reliability.
Key design considerations included shaft and hammer configuration, material selection, structural layout, and ease of fabrication and maintenance.
In addition, critical process variables such as rotational speed, residence time, and load conditions were considered to enhance digestion efficiency while minimizing energy consumption and mechanical stress.
The design supports sustainable agro-processing and localized manufacturing solutions.
Project Credits:
Project Owner (Master’s Student): Alexander A. Offiong
Design Engineer: Ubong Saviour Umoren
Student Contributor (CAD Support): Wisdom Robinson

I still can’t fully explain how beautiful it feels watching my CAD journey in SOLIDWORKS grow like this 🌱⚙️📜I’m just out...
18/06/2026

I still can’t fully explain how beautiful it feels watching my CAD journey in SOLIDWORKS grow like this 🌱⚙️📜
I’m just out here adding a few more SOLIDWORKS flowers to the engineering garden 🌸📜 and honestly, every new certification means so much to me.
I remember when I was only trying to understand the basics of SOLIDWORKS, so seeing myself grow, improve, and become more confident in my CAD skills feels unreal 😮‍💨⚙️✨
I’m grateful for every late night, every tutorial, every challenge, and every small win that brought me here.
I’m deeply grateful to God for the strength, growth, and opportunities ❤️✨
I’m also sincerely grateful to everyone supporting me, encouraging me, and cheering me on through this journey.
I especially want to thank my friends Joseph-Celestine Donald, Precious Gladstone, Iniobong Inyang, Victor Okodi, Yhubee Jeremiah, Yhubee Jackson II, Wisdom Robinson, for the support, encouragement, and constant motivation. I truly appreciate. 🤝🏾⚙️
I want this to be a reminder that growth takes time, consistency, and patience. I know some days feel slow, but every small effort adds up. Keep learning, keep improving, and keep showing up for yourself. Your moment will come too 🚀🌱
Certified and still growing 🚀🌱😌

Project Title: Design and Production of an Electric Tricycle.Software Used: SolidWorksDesign Category: Product Modificat...
18/06/2026

Project Title: Design and Production of an Electric Tricycle.
Software Used: SolidWorks
Design Category: Product Modification and Development
📌Introduction
This project focuses on the design and production of an Electric-Powered Tricycle, utilizing SolidWorks CAD software for 3D modeling and simulation.
The project builds upon a prior conceptual design initiated by John Chidiebere; a hardworking and detail-oriented mechanical designer with strong proficiency in SolidWorks, whose preliminary framework laid the foundation for further improvements. The current design represents a progressive modification and enhancement of the original concept, incorporating energy-efficient technologies such as solar charging, optimized battery systems, and improved mechanical structures to increase performance, sustainability, and user ergonomics.
📌Main Components Involved
The electric tricycle comprises the following key mechanical, electrical, and structural components:
1. Chassis Frame– Fabricated from lightweight structural steel for load support and stability.
2. Electric Motor – Brushless DC motor (BLDC) integrated for propulsion.
3. Solar Panel – Photovoltaic module mounted for auxiliary energy harvesting.
4. Battery Pack – Rechargeable lithium-ion batteries for power storage and supply.
5. Controller Unit – Power electronic device to regulate motor speed and torque.
6. Throttle System – Handlebar-based accelerator control.
7. Suspension System – Front fork and rear shock absorbers for ride comfort.
8. Wheels and Tires – Pneumatic tires mounted on spoked rims for road traction.
9. Braking System – Disc brakes (mechanical or hydraulic) for effective stopping.
10. Drive Mechanism – Chain or belt drive system to transmit power to the rear axle.
11. Lighting System – Headlamp, tail light, and indicators for visibility and safety.
12. Ergonomic Seat and Canopy – For rider comfort and weather protection.
📌Client’s Goal
The client's goal is to develop a sustainable, cost-effective, and energy-efficient mode of transportation tailored for short- to medium-distance commuting. The vehicle should minimize reliance on fossil fuels by incorporating solar charging capabilities and be suitable for low-income environments with limited electricity access.
Additionally, it should be easy to maintain, structurally durable, and user-friendly for a wide demographic, including the elderly and small-scale vendors.
📌Designer’s Goal
The designer aims to refine and optimize the existing concept through advanced CAD modeling and mechanical design techniques using SolidWorks.
📌Objectives include:
📍Improving Aerodynamics, Structural Integrity, and overall performance.
📍Integrating Renewable Energy systems (solar-battery hybrid) seamlessly into the design.
📍Enhancing component efficiency and mechanical reliability through simulation-based validation.
📍Ensuring that the final model adheres to engineering design standards while remaining economically viable and manufacturable with locally available materials.





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No. 2 Bamgbose Close Off Kadiri, Alausa
Lagos
100212

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