Soon to be Mechanical Engineering graduate with a strong foundation in design, analysis, and hands-on problem-solving. Experienced in using industry-standard tools like SolidWorks, Patran/Nastran, and CFD simulation for product development and optimization. Proven ability to work collaboratively on complex engineering projects, from concept to testing, with a keen eye for detail and a passion for innovation. Eager to apply academic knowledge and practical skills to real-world engineering challenges while contributing to a dynamic team. Committed to continuous learning and professional growth in the fields of aerospace, automotive, or manufacturing engineering.
• Collaborated with team members on projects involving drone programming, sensor integration, and autonomous flight.
• Engaged in workshops and knowledge-sharing sessions, enhancing skills in drone assembly, maintenance, and troubleshooting.
• Partnered with club members on research projects, problem-solving technical challenges, and mentoring new members on drone assembly and operation.
Proficient in creating complex 3D models, parts, and assemblies using Solidworks and CATIA’s Part Design and Assembly Design workbenches
Familiar with conducting structural analysis, stress testing, and kinematic simulations to validate designs and the ability to prepare models for CNC machining, 3D printing, and other manufacturing processes using CATIA Software
Defined boundary conditions, material properties, and flow parameters to accurately model real-world scenarios and Conducted Computational Fluid Dynamics (CFD) simulations to analyze airflow over aircraft surfaces and optimize aerodynamic performance on Solidworks
Utilized MATLAB’s matrix operations to solve systems of linear equations, eigenvalue problems, and perform LU/QR decomposition
Created and simulated analog, digital, and mixed-signal circuits, ensuring accurate performance under various conditions and designed circuit schematics with a comprehensive library of electronic components, including resistors, capacitors, ICs, and microcontrollers using Multisim
Created detailed 3D models, applied materials, generated high-quality mesh (1D, 2D, and 3D elements), and optimized mesh density for accurate results and Performed structural analysis using Patran as the pre/post-processor and Nastran as the solver to assess stress, strain, deformation, and fatigue in basic structures