I design and build hardware across propulsion, autonomous systems, and wearable devices — from a rocket blast disk to a shape-memory posture corrector. This sheet indexes the drawings below.
I'm a sophomore studying Mechanical Engineering at Duke, building hardware where propulsion, autonomy, and wearable design overlap. Most of it starts in Duke AERO or an independent build and ends up on a bench getting tested. The four sheets below are the current cross-section of that work.
Rupture disk for a Duke AERO rocket's pressure relief system — sized to fail predictably under overpressure and protect the propulsion stack.
Mechanical and autonomy stack for a rover platform — chassis, suspension, and sensor mounting designed for unassisted navigation.
Wearable IMU-based device measuring bar velocity in real time for velocity-based strength training feedback.
Shape-memory alloy wearable that applies gentle corrective force, using nitinol's transition behavior instead of rigid bracing.
Drop your lab or research experience here — PI, focus area, and what you contributed. Even one line reads well next to the project index above.
Space for the projects not listed on this sheet — coursework builds, hackathon entries, or anything still in progress. Link out to a full archive as it grows.