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ABS及其复合材料的热性能研究

Research on Thermal Properties of ABS and ABS Composites

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【作者】 唐昌伟李庆蛟王标兵傅轶彭志宏李小辉陈红兵刘志平

【Author】 TANG Chang-wei;LI Qing-jiao;WANG Biao-bing;FU Yi;PENG Zhi-hong;LI Xiao-hui;CHEN Hong-bing;LIU Zhi-ping;Guangdong Silver Age Sci. & Tech. Co. Ltd.;North University of China;

【机构】 广东银禧科技股份有限公司中北大学

【摘要】 通过熔融共混法制备了ABS、ABS/MH(氢氧化镁)及ABS/MH/BPS(溴化聚苯乙烯)/Sb2O3(氧化锑)阻燃复合材料。使用扫描电子显微镜(SEM)观察了燃烧样条的表面形貌,利用热重分析法(TG)研究了不同升温速率下复合材料的热降解过程,分析了其阻燃机理。结果表明:MH可以增加体系的热稳定性,而加入BPS/Sb2O3会使热稳定性降低;MH和BPS/Sb2O3共同阻燃时,Br-Sb阻燃体系占主导地位,在气相中发挥阻燃效果,MH则在凝聚相起辅助作用,产生物理隔绝和阻止熔融流动的效果。

【Abstract】 The flame retardant ABS composites were prepared through melt blending with hydrophobic MH nanoparticles and BPS /Sb2O3as composite flame retardants. The surface morphology and thermal properties of ABS,ABS /MH and ABS /MH /BPS / Sb2O3composites were studied through SEM and TG respectively,and the mechanism was analysised. The results showed that: the thermal stability and the degradation activation energy of ABS were higher than that of ABS /MH /BPS /Sb2O3,but lower than that of ABS/MH. When MH was used alone,it worked in the condensed phase,and the degradation activation energy was increased. But when the composite flame retardant was used,Br-Sb system with higher efficiency played the main role in the gas phase,which led to the decline of the degradation activation energy.

【关键词】 ABS阻燃热性能
【Key words】 ABSflame retardantthermal properties
  • 【文献出处】 合成材料老化与应用 ,Synthetic Materials Aging and Application , 编辑部邮箱 ,2014年03期
  • 【分类号】TQ325.2
  • 【被引频次】7
  • 【下载频次】180
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