
Lightweight Materials for Electric Vehicles by R Suresh
Lightweight Materials for Electric Vehicles serves as a comprehensive guide to the seamless integration of sustainable materials, advanced manufacturing techniques, and innovative solutions to tackle industry challenges. It underscores the pivotal role of academia in equipping the next generation of engineers with expertise in electric vehicle (EV) technologies. The book provides an in-depth exploration of the latest advancements in lightweight materials for EVs, focusing on their properties, applications, processing methods, and the challenges they present.
Furthermore, it examines emerging trends such as artificial intelligence-driven design, additive manufacturing, and the adoption of circular economy principles in automotive materials engineering. By addressing the evolving complexities of material selection and manufacturing, the book offers valuable insights into the future of EV innovation, extending its relevance to sectors beyond automotive, including aeronautics and aerospace.
Through case studies and research findings, the book also provides practical implementation strategies and actionable recommendations, while reinforcing the critical role of academia in driving progress and innovation in this transformative field.
Features:
- Discusses contemporary issues and challenges in the selection criteria of materials for EVs
- Explores various materials employed for EV batteries, such as lithium-ion, nickel-metal hydride, and solid-state batteries
- Overviews the use of lightweight materials, such as aluminum, carbon fiber-reinforced polymers, and magnesium alloys, in EV bodies
- Reviews different types of materials, their sustainability, feasibility of usage, and challenges
- Presents case studies on the application of different materials in EVs
This book is an essential resource for practitioners, research scholars, academicians, and students involved in the study and development of materials for EVs.
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Low-Dimensional Quantum Materials
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Smart Wearables, Nanofibers, and Textiles
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Waste Valorisation to Nanomaterials
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Sensors for Stretchable Electronics in Nanotechnology
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Engineered Nanoparticles as Drug Delivery Systems
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Scanning Probe Lithography
- Emerging Electrospun Materials
- Solar Cells Development and Fabrication
- Nanomaterials for Electrochemical Sensing
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Tribological Aspects of Additive Manufacturing
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Biopolymers and Biopolymer Blends
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Nanomaterials for Sustainable Hydrogen Production and Storage
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Hydrogen Production, Storage, and Utilization
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Applications of Hybrid Nanofluids in Science and Engineering
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MXenes for Energy Storage Applications
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Dielectric Materials for Capacitive Energy Storage
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Multifunctional Coordination Materials for Green Energy Technologies
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Advanced Materials for Pharmaceutical Wastewater Treatment
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Advanced Hybrid Nanomaterials for Energy Storage
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Metal–Organic Framework Derived Materials
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Nanotechnology in Green Energy Generation
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Application of Numerical Methods in Engineering Problems using MATLAB®
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Metal-Organic Frameworks for Anticorrosive Coatings
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Hybrid Nanofluids
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2D Semiconductors for Environmental Remediation
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2D Materials-Based Sensors
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Smart Micro- and Nanomaterials for Drug Delivery
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Thermo-Acoustics of Nanofluids and Transfer Processes
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Advancements in Nanomaterials for Energy Conversion and Storage
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Evaluation of Electrochemical Corrosion
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The Science and Applications of 3D Bioprinting
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Advanced Synthesis and Medical Applications of Calcium Phosphates
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Shape Memory Polymer Composites
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Biosorbents
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Materials for Energy Conversion and Storage
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Graphitic Carbon Nitrides
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Principles and Applications of Nanotherapeutics
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Non-Metallic Technical Textiles
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Bionanomaterials for Biosensors, Drug Delivery, and Medical Applications
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Calcium-Based Materials
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Energy Materials
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Phase Change Materials for Thermal Energy Management and Storage
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MXenes
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Mechanics of Auxetic Materials and Structures
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Lignin-Based Materials
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Selection of Nanoparticles for Targeted Applications
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Friction Stir Spot Welding
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Materials from Natural Sources
R. Suresh is a Full-time Professor in Department of Mechanical Engineering at M. S. Ramaiah University of Applied Sciences (RUAS), Bengaluru, India. With 28 years of experience spanning academia, research, and industry, his expertise lies in Hard and Refractory materials, Composites, Traditional and Non-traditional Machining process, Surface engineering, Solid-state Joining of metals, and Additive Manufacturing.
C. Durga Prasad is an Assistant Professor in the Department of Mechanical Engineering at RVITM, Bengaluru, since 2019. He has extensive research experience, specializing in thermal spray coatings, microwave processing of materials, wear, tribo-corrosion, bio-composites, and biofuels.
Satish Kumar is an Associate Professor in the Department of Robotic Engineering Symbiosis Institute of Technology at Symbiosis International (Deemed University), Pune, India. He has his expertise in application of Artificial Intelligence into a variety of crucial manufacturing processes, including quality enhancement, process improvement, and optimization.
K.N. Bharath is a Professor and Dean (Research and Innovation) at GM University, Davangere. With 16 years of teaching and five years of R&D experience, his expertise includes composite materials, bioplastics, and machine design.
Ajith G. Joshi is an Assistant Professor in Mechanical Engineering at Madanapalle Institute of Technology and Science, India. With extensive teaching experience, his research focuses on composite materials, tribology, and machining of difficult-to-cut alloys.
| SKU | Unavailable |
| ISBN 13 | 9781032975054 |
| ISBN 10 | 1032975059 |
| Title | Lightweight Materials for Electric Vehicles |
| Author | R Suresh |
| Series | Emerging Materials And Technologies |
| Condition | Unavailable |
| Binding Type | Hardback |
| Publisher | CRC Press |
| Year published | 2026-01-31 |
| Cover note | Book picture is for illustrative purposes only, actual binding, cover or edition may vary. |
| Note | Unavailable |












































