Unit Outlines
Introduction To Automotive Engineering Technology
AI Generated
Intermediate
60 hours
9 topics
Learning Objectives
5 objectives- Understand the historical development and evolution of automotive engineering.
- Gain foundational knowledge of automotive mechanics, electrical systems, and design principles.
- Analyze materials, manufacturing processes, and their impact on vehicle performance and sustainability.
- Examine engine technologies, vehicle dynamics, control systems, and environmental regulations.
- Explore future trends shaping the automotive industry including electric and autonomous vehicles.
Content Outline
PreviewUnit 3640: Comprehensive Automotive Engineering
1. History of Automotive Engineering
1.1 Early Innovations
- Invention of the first automobile
- Key inventors and milestones
1.2 Evolution Through the 20th Century
- Mass production and the assembly line
- Introduction of safety and performance standards
1.3 Modern Advancements
- Technological innovation (electronics, computerization)
- Environmental considerations and fuel efficiency
2. Basics of Automotive Mechanics
2.1 Engine Operation
- Internal combustion engine principles
- Four-stroke and two-stroke cycles
2.2 Transmission Systems
- Manual and automatic transmissions
- Clutch, gearbox, and differential functions
2.3 Braking Systems
- Disc and drum brakes
- Anti-lock braking system (ABS)
2.4 Suspension and Steering
- Types of suspension systems
- Steering mechanisms and power steering
3. Automotive Electrical Systems
3.1 Battery and Power Supply
- Battery types and maintenance
- Electrical power distribution
3.2 Alternators and Charging Systems
- Alternator function and components
- Voltage regulation
3.3 Wiring and Circuitry
- Wiring harnesses
- Fuses and relays
3.4 Electronic Control Units (ECUs)
- Role of ECUs in modern vehicles
- Sensors and actuators integration
4. Introduction to Automotive Design
4.1 Aerodynamics
- Principles of airflow and drag reduction
- Impact on fuel efficiency and performance
4.2 Aesthetics and Ergonomics
- Exterior and interior design elements
- Human factors and user comfort
4.3 Safety Considerations
- Crashworthiness
- Crumple zones and safety cages
5. Materials and Manufacturing in Automotive Engineering
5.1 Materials Used
- Metals (steel, aluminum, magnesium)
- Polymers and composites
5.2 Manufacturing Processes
- Casting, forging, stamping
- Assembly line techniques and automation
5.3 Impact on Performance and Sustainability
- Weight reduction and fuel economy
- Recycling and environmental impact
6. Engine Technology and Performance
6.1 Engine Types
- Gasoline, diesel, hybrid, and electric engines
6.2 Fuel Systems
- Carburetors, fuel injection systems
- Alternative fuels
6.3 Ignition Systems
- Conventional and electronic ignition
6.4 Performance Tuning
- Turbocharging, supercharging
- Engine mapping and diagnostics
6.5 Emissions Control
- Catalytic converters
- Exhaust gas recirculation (EGR)
7. Vehicle Dynamics and Control Systems
7.1 Principles of Vehicle Dynamics
- Forces acting on a vehicle
- Weight transfer and traction
7.2 Handling and Stability Control
- Electronic Stability Control (ESC)
- Traction control systems
7.3 Integration of Electronic Systems
- Anti-lock braking system (ABS)
- Adaptive suspension and active safety features
8. Environmental and Safety Regulations in Automotive Engineering
8.1 Emissions Regulations
- Global standards (EPA, Euro standards)
- Testing procedures
8.2 Safety Standards
- Crash testing protocols
- Safety feature requirements
8.3 Role of Automotive Engineers
- Compliance strategies
- Innovation within regulatory frameworks
9. Future Trends in Automotive Engineering
9.1 Electric Vehicles (EVs)
- Battery technology and charging infrastructure
9.2 Autonomous Driving
- Sensors and AI technologies
- Levels of automation
9.3 Connected Cars
- Vehicle-to-vehicle (V2V) and vehicle-to-infrastructure (V2I) communication
9.4 Sustainable Practices
- Green manufacturing
- Alternative energy sources
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