Projects

Launcher Design and Fabrication

Designed and developed a launcher prototype using CATIA for 3D modelling and design visualization. Utilized multiple CATIA workbenches including:

-Part Design

-Mechanical Design

-Sheet Metal Design

-Assembly Design

-Drafting

I ensured the model while ensuring sketches and assemblies were fully constrained for dimensional accuracy and stability. The project also involved producing 2D engineering drawings to communicate overall dimensions and design intent. Engineering constraints such as riveting points, bending limitations, structural stability, and size restrictions were considered throughout the design process while optimizing launch performance and consistency. Multiple testing iterations were conducted to refine the design and improve overall functionality.

Glider Design & Fabrication

Developed a glider prototype using CATIA Mechanical Design workbenches, including:

Part Design,

Assembly Design,

Drafting,

I used the drafting feature for aerodynamic modelling of the aero foil. The project involved designing and refining an aero foil profile for the wings to improve lift performance and flight stability. Surface and skin modelling applications were utilized to create smooth aerodynamic wing geometries and optimize overall airflow characteristics.

Engineering considerations such as structural strength, weight distribution, wing alignment, and dimensional constraints were incorporated throughout the design process. Fully constrained sketches and assemblies were maintained to ensure modelling accuracy and design consistency. Multiple design iterations and flight tests were conducted to evaluate glide performance and refine the final configuration.

Catapult Seat Concept

Designed and developed a catapult seat assembly using Autodesk Inventor for 3D CAD modelling, assembly integration, and engineering visualization. The project involved creating detailed components and fully constrained assemblies while applying design for manufacturing principles throughout the development process.

2D technical drawings and dimensional layouts were generated to support drafting documentation and configuration updates. The project also incorporated 3D printing for rapid prototyping and physical analysis and  evaluation, improving my understanding of tolerancing, manufacturability, and assembly with respect to the catapult. Engineering considerations such as structural support, component alignment, weight distribution, and part integration were evaluated through multiple design iterations to improve functionality and reliability.

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