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Electrical, thermal, and mechanical properties of polyarylene ether nitriles/graphite nanosheets nanocomposites prepared by masterbatch route

机译:通过母料法制备的聚亚芳基醚腈/石墨纳米片纳米复合材料的电,热和机械性能

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摘要

Graphite nanosheets (GN) reinforced polyarylene ether nitriles (PEN) nanocomposites were successfully fabricated through masterbatch route and investigated for morphological, thermal electrical, mechanical, and rheological properties. The SEM images showed that GN were well coated by phthalonitrile prepolymer (PNP) and dispersed in the PEN matrix. Thermal degradation and heat distortion temperature of PEN/GN nanocomposites increased substantially with the increment of GN content up to 10 wt%. Electrical conductivity of the polymer was dramatically enhanced at low loading level of GN; the electrical percolation of was around 5 wt% of GN. The mechanical properties of the nanocomposites were also investigated and showed significant increase with GN loading. For 10 wt% of GN-reinforced PEN composite, the tensile strength increased by about 18%, the tensile modulus increased by about 30%, the flexural strength increased by about 25%, and the flexural modulus increased by 90%. Rheological properties of the PEN/GN nanocomposites also showed a sudden change with the GN loading content; the percolation threshold was in the range of 3–4 wt% of GN.
机译:通过色母粒工艺成功制备了石墨纳米片(GN)增强的聚亚芳基醚腈(PEN)纳米复合材料,并研究了其形态,热电,机械和流变性能。 SEM图像显示GN被邻苯二甲腈预聚物(PNP)很好地包覆并分散在PEN基质中。 PEN / GN纳米复合材料的热降解和热变形温度随着GN含量的增加(高达10 wt%)而显着增加。在GN的低负载水平下,聚合物的电导率显着提高;的电渗透约为GN的5 wt%。还研究了纳米复合材料的机械性能,并显示了随着GN负载的显着增加。对于10wt%的GN增强的PEN复合材料,抗张强度增加约18%,抗张模量增加约30%,抗弯强度增加约25%,并且抗弯模量增加90%。 PEN / GN纳米复合材料的流变特性也随GN含量的变化而突然变化;渗透阈在GN的3–4 wt%范围内。

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