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首页> 外文期刊>Journal of nanoscience and nanotechnology >Improving Flame Retardancy of Epoxy Resin Nanocomposites by Carbon Nanotubes Grafted CuAI-Layered Double Hydroxide Hybrid
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Improving Flame Retardancy of Epoxy Resin Nanocomposites by Carbon Nanotubes Grafted CuAI-Layered Double Hydroxide Hybrid

机译:通过碳纳米管嫁接逐层双氢氧化物杂种碳纳米管覆盖环氧树脂纳米复合材料的阻燃性

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摘要

To solve the issues of the poor dispersion performance of the inorganic flame retardant filler in epoxy resin (EP) matrix, the three-dimensional (3D) hybrid carbon nanotubes-copper aluminum (sodium dodecyl sulfate) -layered double hydroxide (CNTs-OLDH) is designed and synthesized by co-precipitation. The results indicate that the CNTs-OLDH hybrid with 3D-structure is successfully fabricated and well dispersed in EP matrix. The thermostability of EP/CNTs-OLDH nanocomposites is raised and the residue is obviously increased. When the amount of CNTs-OLDH is only 4 wt%, limit oxygen index value of EP/CNTs-OLDH nanocomposites reaches 28.5. Compared with pure EP, the heat release, smoke and gas of EP/FePP nanocomposites are inhibited by CNTs-OLDH hybrid, and the PHRR, THR and SPR values of EP/4CNTs-OLDH nanocomposites decrease by 41.7%, 27.8% and 31.7%. The improved fire retardant performances and thermal stability are attributed to the excellent homogeneous dispersion, the network structure formed by the 3D hybrid in the matrix and the outstanding flame retardant effect of CNTs and OLDH.
机译:解决环氧树脂(EP)基质中无机阻燃填料的分散性能差的问题,三维(3D)杂化碳纳米管 - 铜铝(十二烷基硫酸钠) - 层双氢氧化物(CNTS-Oldh)由共沉淀设计和合成。结果表明,具有3D结构的CNTS-Oldh混合体成功制造并良好分散在EP矩阵中。提高了EP / CNTS-ObL-Obomposites的热稳定性,并且残留物明显增加。当CNTS-ObLH的量仅为4wt%时,EP / CNTS-ObL-ObSh纳米复合材料的极限氧指数值达到28.5。与纯EP相比,EP / FEPP纳米复合材料的热释放,烟雾和气体受到CNTS-Oldh杂种的抑制,EP / 4CNTS-ObL-ObOCHINININE的FHR,THR和SPR值降低41.7%,27.8%和31.7% 。改善的阻燃性能和热稳定性归因于优异的均匀分散,通过基质中的3D杂交形成的网络结构以及CNT和OLDH的出色阻燃效果。

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