Airless vs Conventional Tires
Led a one-year graduation project team investigating vibration behavior between airless and conventional tires.
Designing, building, and turning engineering ideas into working systems.
Led a one-year graduation project team investigating vibration behavior between airless and conventional tires.
Designed a mechanical pump system for crude oil extraction and validated flow performance and structural integrity.
Built a three-axis solar tracking system achieving approximately 10% net energy gain, with the third axis mainly targeted at wind-load stability.
Designed, 3D-printed and programmed a functional six-legged walking robot using Arduino.
Designed, modeled and 3D-printed a functional three-axis gyroscopic mechanism from concept to finished product.
Built a device to measure the sound absorption / insulation coefficient of unfamiliar or unlisted materials.
Engineered a vehicle concept designed for stable mobility across rugged, rubble-covered terrain.
Designed and 3D-printed eyewear frames from recycled plastic and sold products online.