Bharath Sampath Kumar
Research Assistant Fellow @Wmg, University Of Warwick
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WORK HISTORY
Research Assistant Fellow @Wmg, University Of Warwick
Coventry, GB
Project 1: Scrap OptimiserI played a key role in developing a Scrap Optimisation Model that streamlined steelmaking processes. Built a user interface using Python to enhance the Scrap Optimiser\'s functionality. Incorporated phosphorus balance to improve dephosphorisation in primary EAF steelmaking. Automated costing calculations for each ton of steel produced, aiding in financial planning.4. Responsible for service, management and lab trials support on Vertical Tube Furnace, High Temperature Confocal Laser Scanning Microscopy and Mass spectroscopy. Team player by supporting fellow researchers and PhD students in experimental methodology, inventory management and experimental set-up.Project 2: Slag FeO reduction by Carbon material injection1. Key participant in developing the experimental methodology and experimental set-up to carry out high temperature slag FeO reduction2. Mass balance analysis using the off-gas data and building thermodynamic and kinetic analysis.3. Support in writing journal paper and presentation of the results to the stakeholders.
EDUCATION
University of Warwick
PhD, Materials Sciences
Jönköping University
Master’s Degree, Product Development and Materials Engineering
City Engineering College
Bachelor's Degree, Mechanical Engineering
ABOUT BHARATH SAMPATH KUMAR
With a solid background in battery analysis and metallurgy, my role at WMG, University of Warwick, involves pushing the frontiers of battery ageing research. My work encompasses SEM characterization, sample preparation for SEM analysis, and rigorous electrical testing to simulate real-world battery usage conditions. Integrating MATLAB for data analysis underscores my commitment to precision and excellence in research outcomes.Previously, as a PhD Researcher, I delved deep into the dynamics of FeOx materials within HIsarna slag foaming. This research was pivotal in enhancing our understanding of material behaviours in high-temperature environments, contributing to advancements in direct reduction iron-making processes. My competencies in materials characterization, including EDS, XRD, and XRF analyses, have shaped my research journey and reinforced my role as a key contributor to the field of material science.
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