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首页> 外文期刊>Journal of Applied Polymer Science >Microstructure of Carbon Nanofiber/Thermotropic Liquid Crystalline Polymer Composites
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Microstructure of Carbon Nanofiber/Thermotropic Liquid Crystalline Polymer Composites

机译:碳纳米纤维/热致液晶聚合物复合材料的微观结构

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The properties and microstructure of a thermotropic liquid crystalline polymer (TLCP, Vectran V400P) were investigated in the presence of carbon nanofibers (CNF). The electrical conductivity of TLCP increased with an addition of CNFs. The thermal analysis of pure TLCP and its composites revealed that a glass transition at similar to 110 degrees C did not change significantly. However, a decrease of tensile modulus and strength was observed with the addition of CNFs. WAXD studies showed a decrease of Herman's orientation parameter, indicating reduction of anisotropy of TLCP. Further, the disruption of molecular orientation of TLCPs was inferred by SEM and TEM analysis. SEM micrographs revealed a fibrillar structure for pure TLCPs at a macro-scale (2-5 mu m). However, this structure was not observed in composites at the same scale even though micro-size fibrils (0.05 mu m) were found with the addition of CNFs. TEM micrographs displayed banded structures of pure TLCPs, but these structures were not significant in the vicinity of CNFs. These observations confirmed that a decrease of molecular alignment and disruption of fibrillar structure of TLCP, in the presence of nanofibers, are attributed to a significant decrease in tensile modulus and strength.
机译:在碳纳米纤维(CNF)存在下,研究了热致液晶聚合物(TLCP,Vectran V400P)的性能和微观结构。 TLCP的电导率随CNF的增加而增加。对纯TLCP及其复合材料的热分析表明,在接近110摄氏度的温度下,玻璃化转变没有明显变化。但是,添加CNF会导致拉伸模量和强度降低。 WAXD研究表明,Herman取向参数降低,表明TLCP的各向异性降低。此外,通过SEM和TEM分析推断TLCP的分子取向的破坏。 SEM显微照片揭示了纯TLCP的原纤维结构(2-5微米)。然而,即使在添加了CNF的情况下,即使发现了微米级的原纤维(0.05微米),也无法在相同规模的复合物中观察到这种结构。 TEM显微照片显示了纯TLCP的带状结构,但这些结构在CNF附近并不显着。这些观察结果证实,在存在纳米纤维的情况下,TLCP的分子排列减少和纤维状结构的破坏归因于拉伸模量和强度的显着降低。

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