家电科技 ›› 2025, Vol. 0 ›› Issue (zk): 508-513.doi: 10.19784/j.cnki.issn1672-0172.2025.99.105

• 第五部分 材料与零部件 • 上一篇    下一篇

高分子材料无卤阻燃剂研究进展

徐传芳1, 刘杰1, 迈志远2, 宋洋2, 刘岐2, 王晗2, 王伯燕2   

  1. 1.安徽中认倍佳科技有限公司 安徽滁州 239000;
    2.中家院(北京)检测认证有限公司 北京 100176
  • 发布日期:2025-12-30
  • 通讯作者: 王伯燕,E-mail:wangby@cheari.com。
  • 作者简介:徐传芳,高级工程师,硕士学位,安徽中认倍佳科技有限公司,研究方向:家电材料安全、一致性、RoHS检测和技术标准方向的研究。E-mail:289076619@qq.com。

Research progress on halogen-free flame retardant of polymer materials

XU Chuanfang1, LIU Jie1, MAI Zhiyuan2, SONG Yang2, LIU Qi2, WANG Han2, WANG Boyan2   

  1. 1. Anhui CQC-CHEARI Technology Co., Ltd. Chuzhou 239000;
    2. CHEARI(Beijing) Certification & Testing Co., Ltd. Beijing 100176
  • Published:2025-12-30

摘要: 全球法规限制含卤阻燃剂使用,因其燃烧释放有害气体。综述磷系、硅系、无机氢氧化物和膨胀体系四类无卤阻燃剂。AHP可高效阻燃,但有迁移性和毒性问题;DOPO衍生物与APP协同能提升环氧树脂性能,不过含氯磷酸酯有神经毒性。SiO2@DPP和POSS分别用于聚碳酸酯和环氧树脂阻燃,需与其他阻燃剂联用。ATH和MH复配可减少添加量,但损害材料力学性能;APP协效体系能提高不饱和聚酯氧指数。DNA可阻燃,但依赖含磷组分且有环境风险。在家电行业,无卤阻燃剂广泛用于电路板、外部壳体等关键部件,以满足安全和环保要求。未来研究聚焦纳米复合材料、生物基材料和智能化设计,以实现高效环保阻燃目标。

关键词: 高分子材料, 无卤阻燃剂, 氧指数

Abstract: Global regulations restrict the use of halogenated flame retardants due to their harmful gas emissions upon combustion. This review categorizes four types of halogen-free flame retardants: phosphorus-based, silicon-based, inorganic hydroxides, and intumescent systems. AHP demonstrates high flame retardancy but faces migration and toxicity issues; DOPO derivatives synergize with APP to enhance epoxy resin performance, though chlorinated phosphates exhibit neurotoxicity. SiO2@DPP and POSS are applied to polycarbonate and epoxy resins respectively, requiring combination with other flame retardants. ATH and MH blends reduce additive requirements but impair mechanical properties; APP synergistic systems improve the oxygen index of unsaturated polyester. DNA offers flame retardancy but relies on phosphorus-containing components with environmental risks. In the home appliance industry, halogen-free flame retardants are widely used in critical components like circuit boards and external casings to meet safety and environmental standards. Future research focuses on nanocomposites, bio-based materials, and intelligent design to achieve efficient and eco-friendly flame retardancy goals.

Key words: Polymer material, Halogen-free flame retardant, Oxygen index

中图分类号: