Advanced Composite Materials for Automotive Applications: Structural Integrity and CrashworthinessJohn Wiley & Sons, 9 Okt 2013 - 472 halaman The automotive industry faces many challenges, including increased global competition, the need for higher-performance vehicles, a reduction in costs and tighter environmental and safety requirements. The materials used in automotive engineering play key roles in overcoming these issues: ultimately lighter materials mean lighter vehicles and lower emissions. Composites are being used increasingly in the automotive industry due to their strength, quality and light weight. Advanced Composite Materials for Automotive Applications: Structural Integrity and Crashworthiness provides a comprehensive explanation of how advanced composite materials, including FRPs, reinforced thermoplastics, carbon-based composites and many others, are designed, processed and utilized in vehicles. It includes technical explanations of composite materials in vehicle design and analysis and covers all phases of composite design, modelling, testing and failure analysis. It also sheds light on the performance of existing materials including carbon composites and future developments in automotive material technology which work towards reducing the weight of the vehicle structure. Key features:
Advanced Composite Materials for Automotive Applications: Structural Integrity and Crashworthiness is a comprehensive reference for those working with composite materials in both academia and industry, and is also a useful source of information for those considering using composites in automotive applications in the future. |
Isi
Development of LowCost Carbon Fibre for Automotive | 2-19 |
Acknowledgements | 4-3 |
Automotive Composite Structures for Crashworthiness | 4-28 |
Crashworthiness Analysis of Composite and Thermoplastic Foam | 5-30 |
Hybrid Structures Consisting of Sheet Metal and Fibre Reinforced | 7-2 |
Nonlinear Strain Rate Dependent MicroMechanical Composite | 7-29 |
Design Solutions to Improve CFRP CrashBox Impact Efficiency | 8-23 |
Fracture and Failure Mechanisms for Different Loading Modes | 9-25 |
Building Delamination Fracture Envelope under Mode IMode II | 9-93 |
Metal Matrix Composites for Automotive Applications | 9-112 |
Development of a Composite Wheel with Integrated Hub Motor | 9-152 |
and System Reliability | 14-19 |
Composite Materials in Automotive Body Panels Concerning | 14-27 |
Composite Materials for Automotive Braking Systems | 15-20 |
LowCost Carbon Fibre Applications Performance and Cost | 16-12 |
| 17-17 | |
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