Dagdag Omar, Kim Hansang
Department of Mechanical Engineering, Gachon University, Seongnam 13120, Republic of Korea.
Molecules. 2024 Dec 19;29(24):5996. doi: 10.3390/molecules29245996.
This review examines recent advancements in flame retardant technologies for epoxy and bio-epoxy resins, focusing on the chemical grafting of hexachlorocyclotriphosphazene (HCCP) onto carbon fibers (CFs) and the use of reactive flame retardant agents in composite materials. It covers various grafting techniques and analyzes mechanisms behind property enhancements, exploring how these approaches improve thermal stability and flame resistance while addressing sustainability challenges. This review discusses the synergistic effects of bio-based materials and innovative grafting methods. It presents applications of flame-retardant epoxy-carbon fiber composites, demonstrating the potential of HCCP-CF composites as high-performance, environmentally friendly structural materials. Additionally, this review evaluates the impact on mechanical properties and interfacial bonding, crucial aspects often affected by flame retardant treatments. This comprehensive overview provides valuable insights, identifying current challenges, future directions, and potential breakthroughs in the field of advanced composite materials.
本综述探讨了用于环氧树脂和生物环氧树脂的阻燃技术的最新进展,重点关注六氯环三磷腈(HCCP)在碳纤维(CFs)上的化学接枝以及复合材料中反应性阻燃剂的使用。它涵盖了各种接枝技术,并分析了性能增强背后的机制,探讨了这些方法如何在应对可持续性挑战的同时提高热稳定性和阻燃性。本综述讨论了生物基材料和创新接枝方法的协同效应。它介绍了阻燃环氧-碳纤维复合材料的应用,展示了HCCP-CF复合材料作为高性能、环保结构材料的潜力。此外,本综述评估了对机械性能和界面结合的影响,这是通常受阻燃处理影响的关键方面。这一全面概述提供了有价值的见解,确定了先进复合材料领域当前的挑战、未来方向和潜在突破。