Junling Wang: Flame-Retardant and Barrier Materials for Lithium Batteries, Gebunden
Flame-Retardant and Barrier Materials for Lithium Batteries
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- Publisher:
- Taylor & Francis Ltd, 12/2026
- Binding:
- Gebunden
- Language:
- Englisch
- ISBN-13:
- 9781041330592
- Item number:
- 12822594
- Volume:
- 704 Pages
- Release date:
- 15.12.2026
- Note
-
Caution: Product is not in German language
Blurb
The rapid expansion of lithiumbased energy storage has transformed nearly every aspect of modern life, from electric vehicles and renewable energy systems to portable electronics and industrial power solutions. As battery technologies scale in both energy density and deployment volume, the consequences of thermal runaway and fire incidents have become increasingly visible and urgent. Despite advances in electrochemistry and battery engineering, the industry still lacks a comprehensive, uptödate reference that systematically explains how flameretardant materials, structural barriers, and thermal management strategies can be integrated to prevent or contain catastrophic failure under realistic abuse conditions. This book fills that critical gap and provides a unified, crossdisciplinary understanding of the mechanisms, materials, and engineering principles that govern thermal runaway initiation, propagation, suppression, and isolation in lithium battery systems.
KEY FEATURES
- Bridges fundamental materials science with practical battery safety engineering by synthesizing advances in flameretardant chemistry, highperformance insulative materials, intumescent and ceramic barrier technologies, and systemlevel structural design
- Offers a clear and coherent framework for designing safer, more resilient energy storage systems
- Spans from the molecular level to the component, module, and pack levels, where these innovations must be translated into manufacturable, costeffective, and regulationcompliant solutions
- Explores experimental characterization techniques, modeling tools, and engineering case studies that allow readers to evaluate the performance and limitations of different safety strategies under realistic electrical, mechanical, and thermal abuse scenarios
This volume is intended for researchers exploring nextgeneration safety materials; engineers responsible for battery system design, validation, and certification; and policymakers or safety analysts seeking a deeper understanding of the technologies shaping future standards.