首页> 外文会议>International Forum on Aeroelasticity and Structural Dynamics >NONLINEAR GROUND VIBRATION IDENTIFICATION OF AN F-16 AIRCRAFT - PART II: UNDERSTANDING NONLINEAR BEHAVIOUR IN AEROSPACE STRUCTURES USING SINE-SWEEP TESTING
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NONLINEAR GROUND VIBRATION IDENTIFICATION OF AN F-16 AIRCRAFT - PART II: UNDERSTANDING NONLINEAR BEHAVIOUR IN AEROSPACE STRUCTURES USING SINE-SWEEP TESTING

机译:F-16飞机的非线性地面振动识别 - 第二部分:使用正弦扫描测试了解航空航天结构中的非线性行为

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Although they are generally modelled as linear systems, aircraft structures are known to be prone to nonlinear phenomena. A specific challenge encountered with fighter aircraft, besides aeroelastic nonlinearity, is the modelling of the wing-to-payload mounting interfaces. For large amplitudes of vibration, friction and gaps may be triggered in these connections and markedly impact the dynamic behaviour of the complete structure. In this series of two papers, the nonlinear dynamics of an F-16 aircraft is investigated using rigorous methods applied to real data collected during a ground vibration test campaign. The present work focuses on the analysis of sine-sweep measurements in order to get an insightful understanding about the nonlinear behaviour of the aircraft. To this extent, restoring force surface and wavelet transform methods are applied both on the collected GVT data and simulation results performed on a simple numerical model of the F-16 wing and its payload.
机译:虽然它们通常被建模为线性系统,但是已知飞机结构容易出现非线性现象。除了空气弹性非线性之外,防火架遇到的特定挑战是翼状到有效载荷安装接口的建模。对于大振动的振动,可以在这些连接中触发摩擦和间隙,并显着影响完整结构的动态行为。在这一系列的两篇论文中,使用应用于在地面振动测试活动期间收集的真实数据的严格方法来研究F-16飞机的非线性动力学。目前的工作侧重于分析正弦扫描测量,以便对飞机的非线性行为进行有敏感的理解。为此,在对F-16机翼的简单数值模型及其有效载荷上执行的收集的GVT数据和模拟结果,应用恢复力表面和小波变换方法。

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