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The rheological behavior of carbon nanofiber-reinforced thermoplastic composites.

机译:碳纳米纤维增强热塑性复合材料的流变行为。

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摘要

A rheological study of the thermoplastic HDPE filled with vapor grow carbon nanofiber (VGCNF) has been performed with a RheoStress 150 Tester. VGCNF having average 50 nm diameter were used. These nanofibers were purified to provide for an open network of high purity nanofibers. A rheomixer was used to disperse the nanofibers uniformly in the polyethylene matrix because of shear working conditions. The influence of fiber loading, frequency and temperature on the rheology was investigated. Studies were carried out in the temperature range of 160 to 210°C and frequency range of 0.062 to 628.3 rad/s. The rheological measurements show that the composites behave as pseudoplastic. Viscosity of the system decreased with increase of temperature. Significant modulus enhancement occurs at low temperature range due to stiffness imparted by the fiber and efficient stress transfer at the interface between nanofiber and matrix. The viscosity difference between composite and pure polyethylene drops steeply when frequency goes higher than 628.3 rad/s which shows that the difficulty of processing advanced electrical products with VGCNFs is not an issue at higher shear rates. In the mean time, it has been realized that the rheological behavior of VGCNF reinforced polymer system cannot be modeled by an existing single mathematical model.
机译:用RheoStress 150 Tester对填充有气相生长碳纳米纤维(VGCNF)的热塑性HDPE进行了流变学研究。使用具有平均50nm直径的VGCNF。这些纳米纤维被纯化以提供高纯度纳米纤维的开放网络。由于剪切工作条件,使用流变混合器将纳米纤维均匀地分散在聚乙烯基质中。研究了纤维负载,频率和温度对流变学的影响。在160至210°C的温度范围和0.062至628.3 rad / s的频率范围内进行研究。流变学测量表明该复合材料表现为假塑性。系统的粘度随着温度的升高而降低。由于纤维赋予的刚度以及纳米纤维与基质之间界面的有效应力转移,在低温范围内发生了明显的模量增强。当频率高于628.3 rad / s时,复合材料与纯聚乙烯之间的粘度差急剧下降,这表明在较高的剪切速率下,使用VGCNFs处理高级电气产品的困难不再是问题。同时,已经认识到,VGCNF增强的聚合物体系的流变行为不能通过现有的单一数学模型来建模。

著录项

  • 作者

    Zeng, Qiang.;

  • 作者单位

    The University of Texas - Pan American.;

  • 授予单位 The University of Texas - Pan American.;
  • 学科 Engineering Materials Science.; Plastics Technology.
  • 学位 M.S.
  • 年度 2002
  • 页码 51 p.
  • 总页数 51
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 工程材料学;整形外科学(修复外科学);
  • 关键词

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