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Advanced lightweight materials for Automobiles: A review

Materials & Design · 2022 · Vol. 221 · pp. 110994–110994
Wen ZhangJun Xu

Abstract

The growing challenges on fuel economy improvement and greenhouse gas emission control have become the driving force for automakers to produce lightweight automobiles. Also, the weight reduction may contribute to superior recyclability and/or vehicle performance (e.g., improved driving economy, braking behaviors, and crashworthiness). One effective strategy is to develop and implement lightweight yet high-performance materials as alternative solutions for conventional automotive materials such as cast iron and steel. Herein, a systematic review of available lightweight materials to produce next-generation automobiles is provided, including light alloys, high-strength steels, composites, and advanced materials in the ongoing research. By investigating the entire life cycle of automotive materials, physical/mechanical properties, characterization, manufacturing techniques, and potential applications of specific lightweight materials are discussed. Both the advantages and drawbacks of the reviewed materials are summarized, yielding the appropriate application scenarios for different lightweight materials. Given the future challenges, on expectations, the development of versatile advanced materials or improvement of the manufacturing/treatment techniques can be rather promising to resolve the possible bottlenecks and, in turn, enables more capable, safer, durable, and environmental-friendly vehicles.

Aluminum Alloys Composites PropertiesCellular and Composite StructuresAdvanced ceramic materials synthesisAutomotive industryCrashworthinessMaterials scienceSAFERCharacterization (materials science)Fuel efficiencyGreenhouse gasManufacturing engineeringAutomotive engineeringMechanical engineering

Funding

  • University of North Carolina at Charlotte
Citations
955
FWCI
86.67
field-weighted impact
References
199
Percentile
100%
vs. same field & year
Citations per year
References
A review of laser welding techniques for magnesium alloys
Journal of Materials Processing Technology · 2005 · 605 citations
Research for a “new age of magnesium” in the automotive industry
Journal of Materials Processing Technology · 2001 · 914 citations
Recent advances in low‐cost carbon fiber manufacture from lignin
Journal of Applied Polymer Science · 2013 · 648 citations
New Approaches for High Energy Density Lithium–Sulfur Battery Cathodes
Accounts of Chemical Research · 2012 · 1,289 citations
Magnesium and its alloys applications in automotive industry
The International Journal of Advanced Manufacturing Technology · 2007 · 1,685 citations
Titanium alloys and their machinability—a review
Journal of Materials Processing Technology · 1997 · 1,654 citations
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