首页> 外文会议>DSC-vol.75-2; American Society of Mechanical Engineers(ASME) International Mechanical Engineering Congress and Exposition; 20061105-10; Chicago,IL(US) >EXPERIMENTAL IDENTIFICATION OF LINEAR AND NONLINEAR DYNAMIC CHARACTERISTICS OF A FOAM AIRCRAFT MODEL FOR MORPHING APPLICATIONS
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EXPERIMENTAL IDENTIFICATION OF LINEAR AND NONLINEAR DYNAMIC CHARACTERISTICS OF A FOAM AIRCRAFT MODEL FOR MORPHING APPLICATIONS

机译:用于发泡应用的泡沫飞机模型的线性和非线性动力特性的实验识别

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摘要

The genesis of so-called morphing aircraft has been mandated by the need for an expanded flight envelope to fulfill a variety of flight objectives. In order to address the need for expanded flight envelopes, researchers must consider the possibility of dynamic instability due to morphing associated with complex aero-structural interactions during design, development, and flight. The linear and nonlinear dynamic response characteristics of a model aircraft structure are examined in this paper. To identify the linear modal characteristics, impact testing was conducted and the nominal frequency response functions were extracted. Nonlinear characteristics are identified using time-frequency, restoring force, and higher-order frequency response analysis of swept sine response data. The scale-model aircraft with reconfigurable pre-stressed components exhibits strong nonlinearity in the 20-40 Hz frequency range. A cubic stiffness nonlinearity is identified in one portion of the aircraft. In the 40-60 Hz frequency range, stiffness nonlinearities dominate and damping characteristics are primarily linear in nature. Effective characterization of the nonlinearity is a prerequisite for efficient reduced-order models that accurately predict dynamic instability.
机译:由于需要扩大飞行范围以实现各种飞行目标,因此要求所谓的变型飞机的起源。为了解决扩大飞行范围的需求,研究人员必须考虑由于在设计,开发和飞行过程中与复杂的航空结构相互作用而引起的变形而引起动态不稳定性的可能性。本文研究了飞机模型结构的线性和非线性动力响应特性。为了识别线性模态特征,进行了冲击测试并提取了标称频率响应函数。使用时频,恢复力和扫频正弦响应数据的高阶频率响应分析来识别非线性特征。具有可重构预应力组件的比例模型飞机在20-40 Hz频率范围内表现出很强的非线性。在飞机的一部分中识别出立方刚度非线性。在40-60 Hz频率范围内,刚度非线性度占主导地位,阻尼特性本质上主要是线性的。有效地表征非线性是精确预测动态不稳定性的有效降阶模型的前提。

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