Unit Outlines
Automotive Engineering Technology: Tools And Techniques
AI Generated
Intermediate
80 hours
8 topics
Learning Objectives
8 objectives- Understand the fundamental concepts and scope of automotive engineering technology.
- Identify and effectively use various automotive tools and diagnostic equipment.
- Analyze and troubleshoot automotive electrical systems and interpret wiring diagrams.
- Evaluate engine performance through testing, diagnostics, and tuning techniques.
- Explain vehicle dynamics and control systems including suspension, steering, and braking.
- Describe automotive materials, manufacturing processes, and quality control methods.
- Understand automotive safety standards, crash testing, and occupant protection systems.
- Explore emerging automotive technologies including electric vehicles and autonomous systems.
Content Outline
PreviewUnit 3643: Automotive Engineering Technology
1. Introduction to Automotive Engineering Technology
- Definition and scope of automotive engineering technology
- Importance in the automotive industry
- Historical development and evolution
- Key concepts and principles
- Roles and responsibilities of automotive engineers
2. Automotive Tools and Equipment
2.1 Diagnostic Tools
- OBD-II scanners and code readers
- Multimeters and oscilloscopes
- Emission analyzers
2.2 Power Tools
- Impact wrenches
- Pneumatic tools
- Drills and grinders
2.3 Hand Tools
- Wrenches, screwdrivers, pliers
- Torque wrenches
- Specialty hand tools
2.4 Specialized Equipment
- Engine analyzers
- Wheel alignment systems
- Hydraulic lifts and hoists
3. Automotive Electrical Systems
3.1 Components
- Batteries
- Alternators and starters
- Sensors and actuators
3.2 Circuits and Wiring
- Basic electrical theory
- Wiring diagrams interpretation
- Circuit protection devices (fuses, relays)
3.3 Troubleshooting Techniques
- Systematic diagnostic procedures
- Use of diagnostic equipment
- Common electrical faults and repairs
3.4 Electronics Integration
- Engine control units (ECUs)
- CAN bus and communication networks
- Electronic control systems
4. Engine Performance Analysis
4.1 Engine Testing
- Dynamometer testing
- Performance parameters measurement
4.2 Diagnostics
- Fault detection methods
- Sensor data analysis
4.3 Tuning and Optimization
- Fuel mixture adjustment
- Ignition timing
- Emission control strategies
5. Vehicle Dynamics and Control Systems
5.1 Vehicle Dynamics Fundamentals
- Forces and motion acting on vehicles
- Stability and handling characteristics
5.2 Suspension Systems
- Types of suspension
- Shock absorbers and springs
- Suspension geometry
5.3 Steering Mechanisms
- Steering system types
- Power steering components
- Steering geometry and alignment
5.4 Braking Systems
- Hydraulic and electronic braking
- Anti-lock braking systems (ABS)
- Brake wear and maintenance
5.5 Control Systems
- Traction control
- Electronic stability control
- Adaptive systems
6. Automotive Materials and Manufacturing Processes
6.1 Materials Used
- Metals: steel, aluminum, magnesium alloys
- Polymers and composites
- Advanced materials: carbon fiber, ceramics
6.2 Manufacturing Processes
- Casting, forging, machining
- Welding and joining techniques
- Surface treatments and coatings
6.3 Quality Control Methods
- Inspection techniques
- Statistical process control
- Testing standards
6.4 Advancements in Materials Science
- Lightweight materials
- Corrosion resistance
- Recyclability and sustainability
7. Automotive Safety and Regulations
7.1 Safety Standards and Regulations
- National and international safety standards
- Emission and environmental regulations
7.2 Crash Testing Procedures
- Types of crash tests
- Crash data analysis
- Safety ratings
7.3 Occupant Protection Systems
- Seat belts and airbags
- Child safety restraints
- Advanced safety features (e.g., collision avoidance)
7.4 Role of Engineers in Compliance
- Design for safety
- Documentation and certification
- Continuous improvement
8. Emerging Technologies in Automotive Engineering
8.1 Electric Vehicles (EVs)
- Battery technologies
- Electric drivetrains
- Charging infrastructure
8.2 Autonomous Driving Systems
- Sensors and perception
- Control algorithms
- Legal and ethical considerations
8.3 Connected Vehicles
- Vehicle-to-vehicle (V2V) communication
- Vehicle-to-infrastructure (V2I) communication
- Cybersecurity concerns
8.4 Alternative Fuels
- Hydrogen fuel cells
- Biofuels
- Hybrid powertrains
8.5 Impact on Future Design and Development
- Integration challenges
- Environmental benefits
- Market trends and opportunities
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