阻燃剂
镁
烧焦
粉煤灰
复合数
材料科学
氢氧化物
燃烧
碳化
核化学
化学工程
化学
复合材料
有机化学
冶金
扫描电子显微镜
工程类
作者
Lianglian Zhao,Xiuli Xu,Weixun Ma,Heng Zhang,Xuelin Chen,Shilan Qiao,Xinghong Duo
摘要
ABSTRACT Magnesium hydroxide (Mg(OH) 2 , MH) exhibits excellent flame‐retardant properties, but its poor interface compatibility with the resin matrices limits its application. In this study, β‐cyclodextrin (CD) was employed to coat MH, successfully preparing a microencapsulated CD‐MH flame retardant. Various mass ratios of CD‐MH m @FA n /PVC composites were further prepared. The maximum specific optical density (pkmax) of CD‐MH 0.2 @FA 0.1 /PVC composites decreased to 7.80%, the total smoke release (THR) reduced by 26%, and residual char increased to 28.76%. The LOI increased to 27.3%, reaching the HB grade. These results demonstrate that the synergistic effect of CD‐MH and FA promotes the formation of a continuous dense carbon layer in the PVC composite during combustion, significantly reducing heat and gas exchange, thereby enhancing flame retardancy. This study provides a reference for the collaborative design of flame retardants and their application in matrix resins with high flame‐retardant properties.
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