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Thermal Stability and Flammability of Epoxy Composites Filled with Multi-Walled Carbon Nanotubes Boric Acid and Sodium Bicarbonate

机译:环氧复合材料的热稳定性和易燃性填充多壁碳纳米管硼酸和碳酸氢钠

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摘要

Epoxy composites filled with 0.5 wt% of multi-walled carbon nanotubes (MWCNTs), 10 and 15 wt% of boric acid and sodium bicarbonate separately, as well as composites filled with a combination of MWCNTs-boric acid and MWCNTs-sodium bicarbonate were prepared. The thermal behavior of the prepared samples was investigated under heating in oxidative environment using thermogravimetric analysis. The hardness was measured using the Shore D hardness test. To evaluate the flammability of the samples, the ignition temperature and time-to-ignition were determined. It was concluded that sodium bicarbonate in the studied concentrations (10 and 15 wt%) is not appropriate for use as a filler capable of improving the thermooxidative stability and reducing the flammability of epoxy polymers. The improvement in the thermal properties can be achieved by using the combination of boric acid and multi-walled carbon nanotubes as fillers. The thermooxidative destruction of the samples filled with boric acid passes more slowly and more evenly via the formation of B2O3 as a result of its decomposition.
机译:制备填充有0.5wt%的多壁碳纳米管(MWCNT),10和15wt%的硼酸和碳酸氢钠的环氧复合材料,以及填充有MWCNTS-硼酸和MWCNTS-碳酸氢钠的组合的复合材料。使用热重分析在氧化环境中在加热下研究制备样品的热行为。使用肖氏D硬度测试测量硬度。为了评估样品的可燃性,确定点火温度和点火时间。结论是,研究浓度(10和15wt%)中的碳酸氢钠不适合用作能够改善热氧化稳定性并降低环氧聚合物的可燃性的填料。可以通过使用硼酸和多壁碳纳米管作为填料的组合来实现热性能的改善。由于其分解,通过形成B2O3,填充有硼酸的样品的热氧化破坏通过形成B2O3而更缓慢且更均匀。

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