Designed and prototyped custom orthotic insoles with enhanced support and pressure reduction features, integrating foot biomechanics, mechanical engineering principles, and knowledge of podiatry.
Collaborated with team members to pre-process 3D printed parts using advanced 3D processing stations and post-process them using sand blasting machines. Operated HP MJF 3D printers to ensure high-quality output.
Utilized various forms of assemblies, such as laser cutting machines, CNC machines, grinding, and buffing machines, to meet specific customer requirements in orthotics manufacturing.
Applied troubleshooting skills to identify and resolve issues, conducted routine maintenance tasks, and performed necessary repairs to optimize the performance and durability of assemblies and 3D printing systems.
Proficient in operating different 3D printers, including the HP Multi Jet Fusion system and the Epsilon 3D printer, and selecting appropriate materials for optimal printing results.
Sand Casting Mold Design
University of Queensland
02.2023 - 06.2023
Independently designed sand casting molds, applying knowledge of casting principles and techniques to develop effective mold designs that fully consider the gating system and pour spout
Proficiently used Fusion 360 to design sand casting molds and 3D printing technology for printing
Analyzed the surface quality of 3D printed and cast components for quality optimization, in order to make design improvements and enhance the overall quality of the final product
Studied alternative casting and 3D printing methods, thought critically and creatively about design and manufacturing challenges, and identified potential solutions to these challenges.
Small Tractor Project
University of Queensland
08.2022 - 11.2022
Proficient in using Fusion 360 and Siemens NX to design and model chassis, using finite element and stress analysis to interpret stress load analysis, effectively incorporating force and load inputs into chassis design
Proficient in manufacturing processes such as cutting, drilling, milling, and forming, accurately producing chassis components to ensure accurate dimensions and perfect functionality
Successfully designed and built a tractor chassis, contributing to winning the championship
The chassis was lighter than the standard weight, further enhancing the tractor's performance and competitive advantage.
Small Tractor Systems Engineering Report
University of Queensland
02.2022 - 07.2022
Developed a comprehensive understanding of UCM and IDEF0, utilizing these systems to develop system and stakeholder requirements for the small tractor project.
Proficiently created S-curves, procurement plans, and risk plans, resulting in the successful completion of the project within the allocated budget and timeline.
Utilized the Work Breakdown Structure (WBS) for task decomposition and project organization, ensuring the fulfillment of all project requirements.
Rim Wheel Design
University of Queensland
07.2021 - 11.2021
Successfully designed, rendered, and assembled racing parts using Siemens NX, meeting requirements and specifications.
Mastered wheel stress simulation, performing comprehensive error checks and optimizing for cost-effectiveness and lightweight design.
Through interpreting, reading, and creating engineering drawings, researched and analyzed design ideas, reducing errors and improving project efficiency.
Gearbox Design
University of Queensland
07.2021 - 11.2021
Successfully designed and delivered a custom power transmission gearbox with V-belt drive that met the requirements and specifications
By identifying and mitigating potential mechanical failure risks during the design process, increased the reliability and safety of the gearbox, reducing the likelihood of accidents or downtime
Emphasizing sustainable design and social responsibility, reduced the environmental impact of the gearbox, contributing to the sustainability goals.
Education
Bachelor of Engineering - Mechanical Engineering
University of Queensland
Skills
Designing and Modelling using CAD software (Fusion 360, Solidwork)
Analysis using Ansys
Programming skills (Python, Matlab)
Microsoft Office skills (Word, Excel, PowerPoint, Outlook)