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Clear and structured engineering documentation.
Engineering drawings and BOM (Bill of Materials)
Design documentation and reports
Assembly instructions and process documentation
Project documentation for manufacturing and testing
Turning ideas into working systems.
Rapid prototyping using 3D printing (FDM)
Iterative design improvements based on testing
Functional prototype development
System integration (mechanical + basic electrical)
Bridging design with real-world fabrication.
Process selection (machining, welding, 3D printing)
Fabrication support and supervision
Design optimization for cost and manufacturability
Tolerance and assembly considerations
Design decisions supported by engineering principles.
Load and stress calculations
Motor selection and power requirement estimation
Basic FEA (stress, deformation) using ANSYS
Design validation and performance evaluation
Design and development of custom mechanical machines.
Structural frame design and load consideration
Motion systems (shafts, bearings, motors, transmission)
Design of machines such as mixers, packaging systems, and CNC-based setups
Prototype development and iteration
Production-ready design using industry-standard tools.
3D CAD modeling using SolidWorks and Fusion 360
Assembly design with motion and fit considerations
Detailed 2D drawings with dimensions and tolerances
DXF generation for CNC, laser cutting, and fabrication
Design of practical, manufacturable mechanical systems from concept to production.
Concept development and mechanism design
Design for Manufacturing (DFM) and Assembly (DFA)
Material selection based on strength, cost, and application
Integration of mechanical systems with real-world constraints