Innovative Mechanical R&D Engineer with over 5 years of experience in design, analysis, and project management within the manufacturing and marine engineering sectors. Demonstrated ability to lead the development and reverse engineering of new products, ensuring compliance with quality standards and environmental regulations. Proficient in CAD, prototype testing, and IP management with a strong foundation in materials science and microfabrication. Adept at collaborating with cross-functional teams to achieve project objectives and enhance product performance.
Software Proficiency
Thesis Title: Fabrication of Polymer Surface Micro-Structure Using Liquid-Assisted CO2 Laser Ablation for the Enhancement of Triboelectric Effect
Institution: National Cheng Kung University, Micro Nano Material Lab
Year: 2015-2016
Description:This Master's thesis investigates the enhancement of the triboelectric effect through the precision fabrication of micro-structures on polymer surfaces using liquid-assisted CO2 laser ablation. Conducted at National Cheng Kung University’s Micro Nano Material Lab, the study emphasizes developing advanced laser techniques and analyzing the improved triboelectric properties for potential applications in energy harvesting technologies. The research provides significant insights into optimizing material properties for better energy efficiency and functionality.
Thesis Title: Increase the Thermal Efficiency of Oil-Fired Furnace by Recovering the Waste Heat and Preheating the Fuel (Furnace Oil) and Air
Institution: Shardlow India Limited, A Member of Amalgamations Group
Year: 2013-2014
Description:This Bachelor’s thesis at Shardlow India Limited explored the enhancement of thermal efficiency in oil-fired furnaces through strategic recovery and utilization of waste heat. The research centered on designing a sophisticated heat recovery system that preheats furnace oil and air, thereby optimizing the combustion process. By implementing this system, the project successfully reduced energy consumption and minimized environmental impact, achieving substantial improvements in furnace operational efficiency. The findings offer valuable insights into cost-effective energy management strategies and underscore the potential for significant advancements in industrial furnace technology.
Product Testing
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