Applicaion of Sensitivity Formulation to Analyze the Dynamic Response due to the Excitation Force for the Undamped Vibration of Cantilever Beam

S. Yun
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Abstract

In this study, a sensitivity formulation was applied to analyze the dynamic response due to the effect of the excitation force for the undamped vibration of the cantilever beam. The theoretically fundamental formulations were derived considering an eigenvalue problem and its modal analysis to govern the second order algebraic differential equation in terms of the change in the modal coordinate with respect to the design parameters. A representative physical quantity pertaining to the dynamic response, that is, the rate of change in the dynamic displacement, was observed by changing the design variables, such as the cross-sectional area of the beam. The numerical results were obtained at various locations, considering the application of the external forces and observation of the dynamic displacement. When the detection position was closer to the free end of the cantilever beam, the sensitivity of the dynamic displacement was higher, as predicted through the oscillating motion of the beam. The presented findings can provide guidance to compute the dynamic sensitivity for a flexibly connected structure under dynamic excitations.
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应用灵敏度公式分析悬臂梁无阻尼振动在激励力作用下的动力响应
本文采用灵敏度公式分析了悬臂梁无阻尼振动时受激励力影响的动力响应。考虑特征值问题及其模态分析,推导了二阶代数微分方程的模态坐标随设计参数变化的理论基本表达式。通过改变设计变量(如梁的横截面积),可以观察到与动态响应有关的代表性物理量,即动态位移的变化率。在考虑外力作用和动态位移观测的情况下,得到了不同位置的数值结果。当检测位置越靠近悬臂梁的自由端时,动态位移的灵敏度越高,这与梁的振荡运动预测的结果一致。研究结果可为柔性连接结构在动力激励下的动力灵敏度计算提供指导。
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