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Morphing of bistable variable stiffness composites using distributed MFC actuators

机译:使用分布式MFC致动器对双稳态可变刚度复合材料进行变形

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摘要

The use of piezoelectrically controlled bistable composite laminates for morphing applications has received increased attention in recent years. So far, most existing investigations have explored the possibility to trigger snap-through using large-sized piezoelectric Macro Fibre Composite (MFC) actuators bonded at the centre of the bistable laminate. However, bonding large-sized MFCs at the centre of the plate leads to flattening of the midsection of the laminate, which can result in the loss of bistability. This study presents an alternative approach of bonding distributed smaller MFCs over the entire surface of the laminate and investigate the resulting stable shapes and the change in snap-through voltages. Self-resetting piezoelectrically controlled active laminates where the MFC patches are distributed over the laminate surface have been investigated. A semi-analytical model using the Rayleigh-Ritz technique is developed to account for the distributed actuation system. Results from the proposed semi-analytical framework are verified using a corresponding finite element model. The bistable shapes, as well as the snap-through and snap-back voltages, are calculated for different distributed MFC configurations and are compared with a single MFC laminate system. Snap-through voltage predictions from the proposed semi-analytical formulation and the finite element model are compared with the experimental results for a single MFC patch available from the literature. Further, the possibility to tailor the snap-through voltages of the proposed laminate-MFC configuration is explored by replacing conventional cross-ply laminates with variable stiffness (VS) laminates generated from curvilinear fibre alignments. A finite element parametric study is performed by tailoring the VS fibre orientation parameters to achieve a bistable laminate-MFC configuration with lower snap-through requirements where the designed laminate is actuated with distributed MFC patches.
机译:近年来,压电控制双稳态复合材料层合板在变形应用中的应用越来越受到关注。到目前为止,大多数现有研究都探索了使用粘合在双稳态层压板中心的大型压电宏纤维复合材料 (MFC) 致动器触发卡通的可能性。然而,将大尺寸MFC粘合在板的中心会导致层压板的中段变平,从而导致双稳态的丧失。本研究提出了一种在层压板的整个表面上粘合分布的较小MFC的替代方法,并研究了由此产生的稳定形状和直通电压的变化。已经研究了自复位压电控制的有源层压板,其中MFC贴片分布在层压板表面上。利用Rayleigh-Ritz技术建立了一个半解析模型来解释分布式驱动系统。使用相应的有限元模型验证了所提出的半解析框架的结果。计算了不同分布式MFC配置的双稳态形状以及直通和回弹电压,并与单个MFC层压板系统进行了比较。将所提出的半解析公式和有限元模型的直通电压预测与文献中提供的单个MFC贴片的实验结果进行了比较。此外,通过用曲线纤维排列产生的可变刚度 (VS) 层压板代替传统的交叉层压板,探索了定制所提出的层压板-MFC 配置的卡通电压的可能性。通过定制 VS 纤维取向参数进行有限元参数化研究,以实现具有较低卡通要求的双稳态层压板-MFC 配置,其中设计的层压板由分布式 MFC 贴片驱动。

著录项

  • 来源
    《Composite structures》 |2022年第6期|115396.1-115396.14|共14页
  • 作者单位

    Indian Inst Technol Madras, Dept Civil Engn, Struct Engn Div, Chennai 600 036, India|Leibniz Univ Hannover, Inst Struct Anal, Appelstr 9A, D-30167 Hannover, Germany;

    Indian Inst Technol BHU, Dept Civil Engn, Varanasi 221005, India;

    Leibniz Univ Hannover, Inst Struct Anal, Appelstr 9A, D-30167 Hannover, GermanyRotterdam Univ Appl Sci, Sch Engn & Appl Sci, GJ Jonghweg 4-6, NL-3015 GG Rotterdam, NetherlandsIndian Inst Technol Madras, Dept Civil Engn, Struct Engn Div, Chennai 600 036, India;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 英语
  • 中图分类
  • 关键词

    Bistable composites; Distributed MFC actuators; Finite element analysis; Semi-analytical models; Parametric studies;

    机译:双稳态复合材料;分布式MFC执行器;有限元分析;半分析模型;参数化算例;
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