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首页> 外文期刊>Rheologica Acta >On the determination of elastic properties of composites of polycarbonate and multi-wall carbon nanotubes in the melt
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On the determination of elastic properties of composites of polycarbonate and multi-wall carbon nanotubes in the melt

机译:聚碳酸酯与多壁碳纳米管在熔体中复合材料弹性性能的测定

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摘要

In this work, the elastic properties of melts of polycarbonate (PC)/multi-wall carbon nanotubes (MWCNT) composites were studied by means of rotational and capillary rheometry. Linear viscoelastic shear oscillations combined with simultaneous electrical measurements, creep recovery experiments in shear and extrudate swell measurements were performed. The application of the fractional Zener model for the phenomenological description of the viscoelastic properties of PC/MWCNT composites in the linear regime is discussed. The modulus of the spring of the fractional Zener model is a measure of elasticity and increases with carbon nanotubes concentration. The results of creep recovery experiments reveal that the microstructure strongly influenced the viscosity and the reversible deformation of the nanocomposites. Below the rheological percolation threshold, agglomeration of carbon nanotubes generally led to an increase of the reversible deformation up to a maximum value. Above the rheological percolation threshold, a larger concentration of carbon nanotubes caused a decrease of the recoverable deformation. As revealed by capillary rheometry, the extrudate swell of the PC/MWCNT composites at shear rates above 100 s − 1 was lower than the extrudate swell of neat polycarbonate which indicates the decrease of reversible deformation caused by the addition of MWCNT in capillary flows (large stress regime). The experimental data are discussed in the context of the current understanding of the rheological properties and the microstructure of polymer composites with carbon nanotubes.
机译:在这项工作中,通过旋转和毛细管流变法研究了聚碳酸酯(PC)/多壁碳纳米管(MWCNT)复合材料熔体的弹性性能。进行了线性粘弹性剪切振动与同时的电学测量,剪切和挤出物溶胀测量中的蠕变恢复实验。讨论了分数齐纳模型在线性状态下PC / MWCNT复合材料粘弹性的现象学描述中的应用。分数齐纳模型的弹簧模量是弹性的量度,并随碳纳米管浓度的增加而增加。蠕变恢复实验的结果表明,微观结构极大地影响了纳米复合材料的粘度和可逆变形。在流变渗透阈值以下,碳纳米管的团聚通常导致可逆形变增加到最大值。在流变渗透阈值以上,较大浓度的碳纳米管引起可恢复形变的减小。如毛细管流变仪所揭示的,PC / MWCNT复合材料在高于100 s -1 的剪切速率下的挤出膨胀比纯聚碳酸酯的挤出膨胀低,这表明在CNT中添加MWCNT引起的可逆形变减小。毛细流动(大应力状态)。在当前对具有碳纳米管的聚合物复合材料的流变性质和微观结构的理解的背景下讨论了实验数据。

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  • 来源
    《Rheologica Acta》 |2011年第6期|p.503-518|共16页
  • 作者单位

    Department of Polymer Engineering, Faculty of Engineering Science, University of Bayreuth, Universitätsstrasse 30, 95447, Bayreuth, Germany;

    Department of Polymer Engineering, Faculty of Engineering Science, University of Bayreuth, Universitätsstrasse 30, 95447, Bayreuth, Germany;

    Bayer MaterialScience AG, CAS-INN-Physics, 51368, Leverkusen, Germany;

    Bayer MaterialScience AG, CAS-INN-CNT, 51368, Leverkusen, Germany;

    Department of Polymer Engineering, Faculty of Engineering Science, University of Bayreuth, Universitätsstrasse 30, 95447, Bayreuth, Germany;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Carbon nanotubes; Elasticity; Electrical conductivity; Fractional calculus;

    机译:碳纳米管;弹性;电导率;分数阶微积分;

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