AUTO CAD
Dynamic Supply Chain Coordinator with L&T Construction, adept at optimizing procurement strategies and vendor negotiations. Achieved a 25% improvement in forecasting accuracy through innovative digital tools. Proven ability to enhance logistics coordination while fostering cross-functional collaboration, ensuring project success and compliance with industry standards. Strong analytical and communication skills drive results.
· Led end-to-end supply chain operations for ferrous and non-ferrous metals projects, including procurement, logistics, vendor management, and inventory planning.
· Developed and executed sourcing strategies for critical raw materials like iron ore, bauxite, copper, and aluminum, ensuring uninterrupted material flow to key project sites.
· Collaborated with cross-functional teams in engineering, procurement, and project execution to align supply chain activities with project timelines and cost targets.
· Negotiated contracts with domestic and international suppliers, optimizing cost, delivery schedules, and quality assurance metrics.
· Implemented digital tracking and reporting tools to enhance supply chain visibility, reduce lead times, and improve forecasting accuracy by 25%.
· Monitored market trends and commodity pricing to proactively manage procurement risks and maintain competitive advantage.
· Drove continuous improvement initiatives in logistics and warehousing, resulting in a 15% reduction in transit damage and a 10% increase in on-time delivery performance.
· Ensured full compliance with international trade regulations, sustainability goals, and safety standards across the supply chain network.
· Developed and implemented innovative structural optimization strategies for large-scale industrial projects, focusing on enhancing performance while minimizing material usage.
· Conducted advanced structural analysis and value engineering to identify design efficiencies, leading to a 5%–10% reduction in overall construction costs.
· Collaborated closely with multidisciplinary teams—including procurement, fabrication, and construction—to ensure design feasibility and alignment with project timelines and budgets.
· Coordinated and managed fabrication and erection planning activities for multiple ferrous and non-ferrous metal projects, ensuring timely execution and alignment with project specifications.
· Acted as the central interface between design, procurement, fabrication shops, and erection contractors to streamline workflow and resolve technical challenges across project phases.
· Prepared detailed work schedules and resource plans to optimise shop and site operations, reducing idle time and improving overall efficiency.
· Led vendor negotiations focused on specialised fabrication and erection services, achieving cost-effective contracts while maintaining high technical quality and safety standards.
· Assessed vendor capabilities through technical evaluations and plant visits, ensuring alignment with project-specific material handling, welding, and assembly requirements.
· Monitored project progress against key milestones, proactively resolving delays and minimizing schedule slippage through effective stakeholder coordination.
· Supported quality assurance activities, including inspection readiness and compliance with applicable codes (IS) for structural and process steel components.
As aN Assistant Professor, I teach Fluid mechanics & machinery, Fluid Power, Machine Design, Manufacturing Processes, Material Science, Thermal Engineering, Theory of Machine, Advance Strength of Material, Hydraulics & Pneumatics, Power Engineering, Fluid Mechanics Lab, Strength of Material Lab, Theory of Machine Lab, Hydraulics & Pneumatics Lab
Have experience in the inspection of the final product after fabrication
like- Crane girder, columns, rafter beam, bracings, gallery, bridge girder, beam, runner, and discharge chute as per drawing. Have experience on to check after fabrication product layout, water level, diagonal, and pioneer of the final product. Conduct daily routine on all welding activities if welding parameters in applicable WPS have been achieved such as cleaning, welding consumables type and size, bevel tolerances, welder qualification, welding equipment condition, preheating (if requires) and inter-pass temperature requirement, electrical characteristics(amps-volts), welding speed, welding size. Applied Mechanical problem-solving skills to develop creative solutions for quality products. Produced and maintained metal products and structures according to client specifications.
Supply chain management
AUTO CAD
MS EXCEL
Tableau
C PROGRAMING
POWER BI
AI APLICATION
MS POWER POINT
AUTO CAD
Currently I got CTC 7.0LPA(As a Fixed tarm contract in L&T construction in Materials and Minerals Business Unit(Kolkata)
Industrial Optimization
Industrial Optimization project in Jadavpur
University
(January 01, 2012 - April 01,2012)
Maximize the difference. Each engineering system design idea needs to be optimized to get the best desired output and then only alternatives are to be compared for selection of the best alternative. IE alternatives, that is alternative engineering solutions, need to be optimized. The discrete or continuous values which are possible due to various engineering elements used have to be operated at values that give maximum desired bene t. Industrial engineers develop engineering modifications to existing facilities and processes to increase productivity while maintaining current effectiveness intact. In the process chart-based process improvement, they identify operations - material processing, inspection, material handling, and storage to improve engineering of each of them to improve performance. Industrial Engineering Optimization Engineering optimization is development of mathematical
models of engineering decisions and mathematically determining desired maximum or minimum values of objective functions. Industrial engineers have to convert their engineering change ideas into mathematical models and find the best solution or optimal solution. But in industrial engineering studies, the best investigation is to find engineering changes that are possible. Then both the existing configuration and new possible configuration are subjected to engineering optimization procedure to findthe best result and then a decision is taken to stick to the current solution as optimized or new solution as optimized.
Python, PHP, Ruby, JavaScript
Comprehensive research project, investigating the impact of thermal management techniques
Thermal management techniques
(February 06, 2012 -December 06, 2012)
Developed and implemented a comprehensive research project, investigating the impact of thermal management techniques on the performance of engines, resulting in a published paper in a renowned scientific journal. • Led a team of 5 members in designing and building a prototype for a solar-powered vehicle, showcasing technical expertise and effective project management skills. • Utilized advanced computer aided design (CAD) software to create detailed engineering drawings and models for various mechanical components, ensuring accuracy and adherence to industry standards. • Actively participated in industry conferences and workshops, staying updated with the latest advancements in mechanical engineering and networking with professionals, fostering valuable connections within the field.
AUTO CAD