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ATH/ADP配比对EVA阻燃性能及机理转变的影响

程博 安晓航 李定华 杨荣杰

无机材料学报2024,Vol.39Issue(5):509-516,8.
无机材料学报2024,Vol.39Issue(5):509-516,8.DOI:10.15541/jim20230502

ATH/ADP配比对EVA阻燃性能及机理转变的影响

Flame-retardant Properties and Transformation of Flame-retardant Mechanisms of EVA:Effect of ATH/ADP Ratio

程博 1安晓航 1李定华 1杨荣杰1

作者信息

  • 1. 北京理工大学 国家阻燃材料工程技术研究中心,材料学院,北京 100081
  • 折叠

摘要

Abstract

To improve the flame-retardant properties of ethylene-vinyl ecetate copolymer(EVA)with aluminum hydroxide(ATH),a blend of aluminum diethylphosphite(ADP)and ATH was used.The flame-retardant properties of the composites were evaluated by using vertical burning(UL-94),limiting oxygen index(LOI),and cone calorimeter(CONE)tests.The results indicated that at the mass ratio of ATH to ADP of 2∶1 and 1∶2,compared to the EVA/ATH composites,the vertical burning rating improved from no rating to Ⅴ-0,and the LOI increased from 34.5%to 37.8%and 42.8%,respectively.Different methods were used to analyze the flame-retardant mechanisms of samples with these two ratios.For the sample with a mass ratio of ATH to ADP of 2∶1,the content of phosphorus-containing compounds released during thermal decomposition was extremely low,and the formation of aluminum phosphate(AlPO4)strengthened the char layer,made it more continuous and dense,resulting in higher residue mass than theoretical value.Therefore,the proposed flame-retardant mechanism at this ratio is dominated by the condensed phase.For the sample with a mass ratio of ATH to ADP of 1∶2,the char layer had more pores,and the residue mass was lower than theoretical value,but high content phosphorus-containing compounds appeared in the gaseous products.Hence,the proposed flame-retardant mechanism at this ratio is dominated by gas phase.

关键词

氢氧化铝/二乙基次磷酸铝/乙烯-醋酸乙烯酯共聚物/阻燃机理

Key words

aluminum hydroxide/aluminum diethylphosphite/ethylene-vinyl acetate copolymer/flame-retardant mechanism

分类

通用工业技术

引用本文复制引用

程博,安晓航,李定华,杨荣杰..ATH/ADP配比对EVA阻燃性能及机理转变的影响[J].无机材料学报,2024,39(5):509-516,8.

基金项目

国家国际科技创新合作专项(2014DFA52900)International Science and Technology Cooperation Programme of China(2014DFA52900) (2014DFA52900)

无机材料学报

OA北大核心CSTPCD

1000-324X

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