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Nonlinear Geometric Response of Structure with Piezoelectric Actuator by Reduced Order Modeling using a Temperature Analogy.

机译:压电致动器结构的非线性几何响应,通过使用温度模拟的降阶建模进行。

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摘要

The focus of this investigation is on the formulation and a validation of reduced order models (ROMs) for the prediction of the response of structures with embedded piezoelectric actuators. The ROMs considered here are those constructed in a nonintrusive manner from a commercial finite element software, NASTRAN is adopted here. Notwithstanding the popularity of piezoelectric materials in structural dynamics related applications such as structural health monitoring and energy harvesting, not all commercial finite element software allow directly their modeling. In such cases, e.g., with NASTRAN, one can proceed with an analogy and replace the electric actuation in the piezoelectric material by a fictitious thermal effect producing the same strain. This process recasts the determination of a ROM for a structure with embedded piezoelectric actuator into a similar ROM but for a heated structure, the framework of which has recently been developed. Yet, the temperature field resulting from the analogy would be quite different from the one considered in past effort and would excite a broad array of structural modes. Accordingly, as a preamble to considering a beam with a piezoelectric layer, a simpler plate model is considered that is subjected to a uniform temperature but a complex pressure loading that excites the entire set of modes of the plate in the broad frequency band considered. The very good match of the predictions obtained by this ROM in comparison to their full finite element counterparts provides the necessary confidence to next address a beam with embedded piezoelectic actuator. The test model considered for this validation is a built-up nano beam analyzed recently in nonlinear geometric conditions by full finite elements and by a non-intrusive ROM procedure under harmonic variations of the piezoelectic voltage. This structural model and its loading conditions are very different from those considered in past applications of nonintrusive ROMs, thus the excellent results obtained here provide further support of the broad generality of the nonintrusive ROM methodology, including of the appropriateness of the "dual modes" basis functions.
机译:这项研究的重点是用于预测和预测嵌入式压电致动器结构响应的降阶模型(ROM)的制定和验证。这里考虑的ROM是由商业有限元软件以非介入方式构造的ROM,此处采用NASTRAN。尽管压电材料在与结构动力学相关的应用(例如结构健康监测和能量收集)中很受欢迎,但并非所有的商业有限元软件都可以直接对其建模。在这种情况下,例如使用NASTRAN,可以进行类比,并通过产生相同应变的虚拟热效应来代替压电材料中的电驱动。该过程将确定具有嵌入式压电致动器的结构的ROM重新确定为类似的ROM,但对于加热的结构,则已确定其结构。然而,由该类比得出的温度场将与过去的努力所考虑的温度场完全不同,并且将激发各种各样的结构模式。因此,作为考虑带有压电层的梁的序言,可以考虑一个较简单的板模型,该模型经受均匀的温度,但是复杂的压力负载会激发所考虑的宽频带中的板的整个模式集。与完全有限元模型相比,此ROM获得的预测结果非常匹配,为下一步解决带有嵌入式压电致动器的光束提供了必要的信心。考虑用于此验证的测试模型是最近在非线性几何条件下通过全有限元和非侵入式ROM程序在压电电压的谐波变化下分析的组合纳米束。这种结构模型及其加载条件与非侵入式ROM过去的应用中所考虑的结构模型非常不同,因此,此处获得的出色结果为非侵入式ROM方法的广泛通用性(包括“双模”基础的适用性)提供了进一步的支持。功能。

著录项

  • 作者

    Vyas, Varun.;

  • 作者单位

    Arizona State University.;

  • 授予单位 Arizona State University.;
  • 学科 Engineering Mechanical.
  • 学位 M.S.
  • 年度 2014
  • 页码 54 p.
  • 总页数 54
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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