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CAD/CAM Engineering Program

Duration: 1 Year

• To provide advanced knowledge of CAD/CAM systems and digital manufacturing

• To develop professional skills in 3D modeling, simulation, and CNC programming

• To integrate design engineering with modern manufacturing technologies

• To prepare learners for industrial CAD/CAM engineering roles

  1. Develop advanced 3D CAD models and engineering assemblies
  2. Perform CNC programming and machining simulations
  3. Apply CAM strategies for manufacturing optimization
  4. Use CAD/CAM integration in product development
  5. Analyze manufacturing processes for efficiency and quality
  6. Execute a CAD/CAM engineering project
Module 1: Advanced Engineering Graphics and CAD Standards

• Engineering drawing standards (ISO/ANSI)
• Advanced drafting techniques
• GD&T (Geometric Dimensioning and Tolerancing)
• Parametric design principles

Module 2: Advanced 3D Modeling and Assembly Design

• Complex part modeling
• Assembly constraints and motion simulation
• Surface modeling techniques
• Design optimization

Module 3: CAD Customization and Engineering Applications

• CAD scripting and automation basics
• Design libraries and reuse engineering
• Product lifecycle integration (PLM basics)
• Industry applications

Module 4: CNC Programming and G-Code Applications

• Advanced G-code and M-code programming
• CNC lathe and milling operations
• Tool path optimization
• Machine setup and calibration

Module 5: CAM Toolpath Strategies

• 2D and 3D machining strategies
• Roughing and finishing operations
• High-speed machining concepts
• Simulation and verification

Module 6: Manufacturing Processes and Automation

• Modern manufacturing systems
• Additive manufacturing (3D printing)
• Flexible manufacturing systems (FMS)
• Industrial automation basics

Module 7: Product Design and Development

• Product development lifecycle
• Prototyping methods
• Design for manufacturing (DFM)
• Cost and material optimization

Module 8: Quality Control in CAD/CAM Manufacturing

• Inspection techniques in CNC production
• Tolerance analysis
• Reverse engineering basics
• Quality assurance in manufacturing systems

Final Project
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