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Parametric modal analysis of an induced-strain actuated wing-like plate for pitch and heave coupling response

机译:诱导应变致动翼状板的参数模态分析,用于间距和升降耦合响应

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摘要

This article investigates the feasibility of a plate-like flapping wing with varying geometric and boundary conditions actuated by surface-bonded piezoelectric material devices. The most influential structural parameters that vary dynamic response and heave-pitch mode coupling are investigated. An analytically and experimentally validated dynamic finite element model is developed to analyze the structure. A parametric analysis is conducted by varying critical geometric parameters and boundary conditions, such as aspect ratio, actuator position, actuator angle, clamp size, and position; substrate thickness variation; and substrate-to-actuator-thickness ratio. Response metrics representing heave and pitch motions are taken as longitudinal curvature and lateral slope, respectively-the surface regression analysis and results leading to these choices are presented. Maximum longitudinal curvature and lateral slope amplitudes and phase shifts are reported for key parameter choices. Longitudinal curvature to lateral slope coupling is achieved with the introduction of a leading edge stiffener to the otherwise uniform thickness plate. Conditions and parameters that lead to and influence heave-pitch coupling are presented and discussed in detail. This article presents a unique approach to flapping mode of flight compared to the literature. The article proposes a purely induced-strain actuation approach rather than the typical "mechanisms" based approach.
机译:本文调查了板状拍打翼的可行性,其具有由表面键合压电材料装置致动的不同几何和边界条件的可行性。研究了变化动态响应和升降距模式耦合的最具影响力的结构参数。开发了一个分析和实验验证的动态有限元模型来分析结构。通过改变关键几何参数和边界条件,例如纵横比,致动器位置,致动器角度,夹具尺寸和位置来进行参数分析;基板厚度变化;和基板到致动器 - 厚度比。代表升降和俯仰运动的响应度量被呈现为纵向曲率和横向斜率 - 呈现出呈现出导致这些选择的表面回归分析和结果。报告了最大的纵向曲率和横向斜率幅度和相移进行关键参数选择。通过将前缘加强件引入其他均匀的厚度板来实现横向斜坡耦合的纵向曲率。详细介绍和讨论了导致和影响升降距耦合的条件和参数。本文介绍了与文学相比拍打飞行方式的独特方法。该文章提出了纯诱导的应变致动方法,而不是基于典型的“机制”方法。

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