Specializing in mechanical design, CAD modeling, and industrial automation with a focus on efficiency and sustainability.
Explore my portfolio of mechanical engineering projects
Custom-designed automated assembly system for manufacturing efficiency.
High-precision robotic arm for automated manufacturing.
IoT-enabled conveyor system for smart factories.
Proficient in CAD tools like SolidWorks and Fusion 360 for creating precise and innovative designs.
Experienced in Python, ROS, and motion planning for robotics and automation systems.
Skilled in rapid prototyping and bringing concepts to life through iterative design processes.
Expertise in integrating IoT sensors and automating industrial processes for efficiency.
Specialized in designing and programming robotic systems for manufacturing and automation.
Knowledgeable in haptic feedback systems and AI integration for advanced robotics.
Problem Statement: Simulating a sorting line to optimize material flow and reduce bottlenecks in production.
Role & Contributions: Developed a digital twin using simulation software, analyzed data, and proposed design improvements.
Tools & Technologies Used: Siemens NX, MATLAB, Python.
Results/Impact: Improved material flow efficiency by 25% and reduced downtime by 15%.
Problem Statement: Need for an efficient cleaning solution for vehicle components during engine overhaul and maintenance processes.
Role & Contributions: Designed the complete washing system including fluid circulation, component holding mechanism, and safety features.
Tools & Technologies Used: CATIA for 3D modeling, Fluid Dynamics Analysis, Mechanical Design.
Results/Impact: Created a functional design that significantly reduced cleaning time for engine components while improving safety and water efficiency.
Problem Statement: Addressing the need for affordable, multi-functional agricultural processing equipment for small-scale farmers to improve post-harvest efficiency.
Role & Contributions: Designed and prototyped a dual-function machine with modular operation modes (manual and motorized), conducted material analysis, and optimized the threshing/pulping mechanisms.
Tools & Technologies Used: CATIA for 3D modeling and simulation, Finite Element Analysis, Agricultural Engineering Principles, Prototype Fabrication.
Results/Impact: Developed a functional prototype that increased processing efficiency by 40% compared to traditional methods, with the flexibility of both manual and motorized operation to accommodate various farm conditions.