Developed skills in high-standards manufacturing environment, specializing in quality assurance and control processes. Demonstrated ability to identify and resolve quality issues, ensuring compliance with stringent guidelines. Seeking to transition into new field, leveraging strong analytical and observational capabilities.
Conduct comprehensive inspections on products such as GFRP, Bartec, Groutec, Sonitec, and Rolltec couplers, ensuring strict adherence to engineering specifications and quality standards.
Identify and document non-conformance issues and collaborate with production and engineering teams to implement corrective actions.
Utilize precision measurement tools (calipers, micrometers, gauges) for verifying product dimensions and quality.
Maintain detailed inspection records, supporting compliance and continuous improvement initiatives.
Operate the Mitutoyo MeasurLink Console to log product details and execute final quality checks.
Inspected incoming and outgoing materials for accuracy and quality.
Communicated with production team members about quality issues.
Conducted quality inspections on various valves to ensure compliance with safety and durability standards.
Detected and reported quality defects, including leaks and material inconsistencies, facilitating prompt corrective actions.
Verified valve dimensions, surface finishes, and sealing mechanisms using specialized measurement tools.
Technical Skills: Quality Inspection, Defect Analysis, Product Testing, Precision Measurement
1. Experimental Analysis of Geyser and Solar Powered Vapour Adsorption Refrigeration System Using Silica Gel
Investigated a hybrid refrigeration system that combines traditional geyser heating with solar power to drive a vapor adsorption cycle, analyzing its performance and efficiency using silica gel as the absorbent.
2. Design and Development of Smart Shopping Cart
Engineered a shopping cart equipped with sensors and digital interfaces to enhance the retail experience, featuring real-time product tracking and improved user interaction.
3. Kinematic Analysis of Slider Crank Mechanism by Python Programming
Utilized Python to simulate and analyze the kinematic behavior of a slider-crank mechanism, optimizing design parameters for improved mechanical performance.
4. Pneumatic Powered Air Engine (Diploma Project)
Designed and tested a pneumatic powered air engine, exploring the feasibility of using compressed air as a sustainable energy source and evaluating its performance metrics