Projects

  • Nose Landing Gear Development & Testing (Drone)
    August 2022
    SkyX Systems Corp. Toronto, Canada
    • Conducted ground impact and dynamic landing simulations to validate nose landing gear structural performance under nominal and off-nominal conditions, including high descent rates, increased MTOW, and simulated crosswind landings.
    • Instrumented the assembly with multi-axis strain gauge load cells (RCbenchmark system) to capture vertical, lateral, drag, and rebound loads, quantifying structural margins and shock absorption characteristics.
    • Performed flight test data correlation by analyzing onboard telemetry and load spectra to confirm compliance
    • Utilized Autodesk Simulation for finite element-based load path and force distribution analysis, supporting structural verification and design iteration.

Hydraulic Press Structural Frame Design
September 2020
Q1 Aviation Pvt. Ltd. Mississauga, Canada

• Designed and engineered a welded steel frame for a hydraulic press system used in removal of aircraft main and nose landing gear tires from wheel assemblies, ensuring robustness under high press loads.
• Performed finite element stress and load path simulations to verify structural integrity, safety factors, and compliance with aerospace maintenance requirements.
• Utilized Autodesk Inventor & Simulation for CAD modeling, structural optimization, and assembly design, while streamlining fabrication for ease of manufacturing and maintenance operations.

Designed automated air cooling mechanism using Arduino-based control for semi-truck
October 2018
Lakehead University Thunder Bay, ON, Canada

Brake Cooling System Design: Designed and analyzed a custom air compressor for brake drum cooling; performed thermal and airflow testing, validating performance through simulations and experiments.
• Vibration Energy Harvester: Developed a cantilever-based piezoelectric harvester; conducted vibration and dynamics analysis, simulations, and lab testing to correlate responses with power generation and durability.
• Conducted real-time thermal testing with prototype to monitor heat dissipation and system response
• Tools & Methods: Autodesk Inventor (CAD), Autodesk CFD (conjugate heat transfer simulation), Arduino IDE (embedded systems integration).

Bright living room with modern inventory
Bright living room with modern inventory
Bright living room with modern inventory
Bright living room with modern inventory