Highly resourceful Mechanical Engineering with 8 years of diverse experience and technical excellence in the design, analysis, simulation, and testing of different systems across different industries. Ensures conversion of business requirements into total systems solutions within technical, schedule, and cost constraints. Practiced at short and long-term troubleshooting for potential engineering system issues; possess strong time management, communication, interpersonal, engineering, and problem-solving abilities. Expert in service delivery, administration, contractor management, team leadership, and procedural compliance. An experienced problem-solver with comprehensive coordinating skills, and expediting all engineering functions from planning, development, and metrics to full team leadership and team building.
I spearheaded the fabrication and evaluation of an efficient fork lifter. The project involved the comprehensive verification and computational modelling of the proposed design, considering various materials and parameters for optimal performance. I successfully assembled the forklift using modelling applications, AutoCAD & SolidWorks, and conducted simulations to derive multiple outcomes. To ensure cost-effectiveness, I analysed the overall cost of the fork lifter, emphasizing optimal assembly operational capacity. Additionally, I integrated actuators for the chain and scissor, along with a pulley mechanism. Further, I conducted a market analysis of fork lifters to validate their performance and optimal assembly operational capacity. The resulting design proved to be reliable and safe, showcasing my skills in design, analysis, and project management.
I focused on the examination and investigation of a bracket configuration design. Rigorous attention was given to material selection, composition, software integration, and properties to ensure an effective design. The modelling and simulation phases were conducted using ANSYS software, specifically utilizing ANSYS Workbench and Mechanical APDL for simulation interface. The project involved obtaining various results, which were meticulously compared through a comprehensive evaluation process. Ultimately, I successfully achieved an efficient design for the bracket frame model, demonstrating my proficiency in design, simulation, and analytical evaluation, as well as my ability to optimize for deformation and stress values.
I successfully led a university project focused on designing and fabricating a fully automated rotary smart car parking system. Utilizing SolidWorks for detailed component modelling and ANSYS for rigorous analysis, I ensured the structural integrity and performance reliability of the system. The project culminated in the fabrication phase, where I oversaw the manufacturing processes and conducted comprehensive testing of the rotation mechanism powered by a 12V window motor. Through iterative design improvements and optimization, I achieved an efficient and reliable prototype, showcasing my skills in project management, 3D modelling, simulation, and hands-on testing.