About Gabrielle
English
Native or bilingual
Experience
- Pure ElectricDesign EngineerMECHANICAL ENGINEERINGJuly 2021 - Today (4 years and 11 months)Bristol, United KingdomDuring my time at Pure Electric, I had the opportunity to contribute to a variety of projects as a CAD Designer and Mechanical Engineer. My roles and responsibilities included:- Leading the battery mechanical integration for next-generation e-scooters, utilising a systems engineering design approach and performing risk analysis using DFMEA to ensure functional safety requirements.- Engaging in reverse engineering of competitor designs, focusing on risk, usability, and design features of battery systems and human interactions.- Conducting user trials to evaluate the design impact on user journeys, considering important factors such as weight penalties and human factors.- Designing and developing mechanisms for transforming scooters into compact storage solutions, optimising user interactions during transitions and multi-modal commutes.- Undertaking extensive design verification tasks, including creating technical drawings, tolerance stacks, performing FEA simulations, and overseeing the inspection process of Parts Submission Warrants from manufacturers.
- Triumph MotorcyclesDesign EngineerMECHANICAL ENGINEERINGAugust 2019 - June 2020 (11 months)Leicester, United KingdomDesigned and tested motorcycle accessories, focusing on user interactions and touchpoints.Key Contributions:Designed accessories including fuel tank pad, bodywork protection bar bracket, and adjustable testing bracket for handlebar mounting.Used CAD tools, primarily Creo Parametric, to develop and verify designs.
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Education
- MEng Mechanical Engineering with Year in IndustryUniversity of Birmingham2021Dissertation: Redesigning a knee brace for patients suffering from knee osteoarthritis, I utilised Generative Design software to develop a range of optimised, patient-specific solutions. My innovative approach demonstrated the significance different braces can have on patients' quality of life and earned recognition with the Raymont- Osman Design Prize in 2021. These designs were tested using biomechanical force simulations, providing valuable insights into the necessary adaptations individuals must make to maintain an active lifestyle.