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首页> 外文期刊>Carbon: An International Journal Sponsored by the American Carbon Society >Influence of carbon nanotubes on the thermal, electrical and mechanical properties of poly(ether ether ketone)/glass fiber laminates
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Influence of carbon nanotubes on the thermal, electrical and mechanical properties of poly(ether ether ketone)/glass fiber laminates

机译:碳纳米管对聚醚醚酮/玻璃纤维层压板的热,电和机械性能的影响

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摘要

Novel poly(ether ether ketone) (PEEK)/single-walled carbon nanotube (SWCNT)/glass fiber laminates incorporating polysulfone as a compatibilizing agent were fabricated by melt-blending and hot-press processing. Their morphology, mechanical, thermal and electrical properties were investigated and compared with the behavior of similar non-compatibi-lized composites. Scanning electron micrographs demonstrated better SWCNT dispersion for samples with polysulfone. Thermogravimetric analysis indicated a remarkable improvement in the thermal stability of PEEK/glass fiber by the incorporation of SWCNTs wrapped in the compatibilizer, ascribed to a significant thermal conductivity enhancement. Differential scanning calorimetry showed a decrease in the crystallization temperature and crystallinity of the polymer with the addition of both wrapped and non-wrapped SWCNTs. The laminates exhibit anisotropic electrical behavior; their conductivity out-of-plane is lower than that in-plane. Dynamic mechanical studies revealed an increase in the storage modulus and glass transition temperature in the presence of polysulfone. Mechanical tests demonstrated significant enhancements in stiffness, strength and toughness by the incorporation of wrapped nanofillers, whilst the mechanical properties of non-compatibilized composites only improved marginally. Samples with laser-grown SWCNTs exhibit enhanced overall performance. This investigation confirms that SWCNT-reinforced PEEK/glass fiber compatibilized composites possess excellent potential to be used as multifunctional engineering materials in industrial applications.
机译:通过熔融共混和热压工艺制备了新型聚醚醚酮(PEEK)/单壁碳纳米管(SWCNT)/玻璃纤维层压板,其中以聚砜为增容剂。研究了它们的形态,机械,热和电性能,并与类似的非相容复合材料的性能进行了比较。扫描电子显微镜照片显示,聚砜样品具有更好的SWCNT分散性。热重分析表明,通过掺入包裹在增容剂中的SWCNT,可以显着提高PEEK /玻璃纤维的热稳定性,这归因于显着的热导率提高。差示扫描量热法显示,通过添加包裹的和未包裹的SWCNT,聚合物的结晶温度和结晶度降低。层压板表现出各向异性的电性能;它们的面外电导率低于面内电导率。动态力学研究表明,在存在聚砜的情况下,储能模量和玻璃化转变温度会增加。机械测试表明,通过结合包裹的纳米填料,刚性,强度和韧性得到了显着提高,而非相容性复合材料的机械性能仅得到了很小的改善。带有激光生长的SWCNT的样品表现出增强的整体性能。这项研究证实,SWCNT增强的PEEK /玻璃纤维相容的复合材料具有极好的潜力,可在工业应用中用作多功能工程材料。

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