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Development of Dielectric Elastomer Nanocomposites as Stretchable and Flexible Actuating Materials.

机译:介电弹性体纳米复合材料作为可拉伸和柔性驱动材料的开发。

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摘要

Dielectric elastomers (DEs) are a new type of smart materials showing promising functionalities as energy harvesting materials as well as actuating materials for potential applications such as artificial muscles, implanted medical devices, robotics, loud speakers, micro-electro-mechanical systems (MEMS), tunable optics, transducers, sensors, and even generators due to their high electromechanical efficiency, stability, lightweight, low cost, and easy processing. Despite the advantages of DEs, technical challenges must be resolved for wider applications. A high electric field of at least 10-30 V/um is required for the actuation of DEs, which limits the practical applications especially in biomedical fields. We tackle this problem by introducing the multiwalled carbon nanotubes (MWNTs) in DEs to enhance their relative permittivity and to generate their high electromechanical responses with lower applied field level. This work presents the dielectric, mechanical and electromechanical properties of DEs filled with MWNTs. The micromechanics-based finite element models are employed to describe the dielectric, and mechanical behavior of the MWNT-filled DE nanocomposites. A sufficient number of models are computed to reach the acceptable prediction of the dielectric and mechanical responses. In addition, experimental results are analyzed along with simulation results. Finally, laser Doppler vibrometer is utilized to directly detect the enhancement of the actuation strains of DE nanocomposites filled with MWNTs. All the results demonstrate the effective improvement in the electromechanical properties of DE nanocomposites filled with MWNTs under the applied electric fields.
机译:介电弹性体(DEs)是一种新型的智能材料,显示出有望的功能,如能量收集材料以及用于潜在应用的致动材料,例如人造肌肉,植入式医疗设备,机器人技术,扬声器,微机电系统(MEMS) ,可调光学器件,换能器,传感器,甚至是发生器,因为它们具有很高的机电效率,稳定性,轻巧,低成本且易于加工。尽管DE的优点,但必须解决更广泛应用的技术挑战。 DE的驱动需要至少10-30 V / um的高电场,这限制了实际应用,尤其是在生物医学领域。我们通过在DE中引入多壁碳纳米管(MWNT)来解决此问题,以提高其相对介电常数并在较低的施加电场水平下产生其高机电响应。这项工作介绍了填充有MWNT的DE的介电,机械和机电性能。基于微力学的有限元模型用于描述MWNT填充的DE纳米复合材料的介电常数和力学行为。计算出足够数量的模型,以达到介电和机械响应的可接受预测。此外,还将分析实验结果和仿真结果。最后,利用激光多普勒振动计直接检测填充有MWNTs的DE纳米复合材料的驱动应变。所有结果表明,在施加电场的条件下,填充了MWNT的DE纳米复合材料的机电性能得到了有效改善。

著录项

  • 作者

    Wang, Yu.;

  • 作者单位

    University of California, Irvine.;

  • 授予单位 University of California, Irvine.;
  • 学科 Engineering Materials Science.;Applied Mechanics.;Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2015
  • 页码 190 p.
  • 总页数 190
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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