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Analytical Solutions for Stochastic Vibration of Orthotropic Membrane under Random Impact Load

机译:随机冲击载荷作用下正交异性膜随机振动的解析解

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摘要

Orthotropic membrane materials have been applied in the numerous fields, such as civil engineering, space and aeronautics, and mechanical engineering, among others. During their serving lifespan, these membranes are always facing strong stochastic vibrations induced by the random impact load such as hail, heavy rain, and noise, among others. In this paper, the stochastic vibration problem of orthotropic membrane subjected to random impact load is investigated. The statistical characteristics of random impact load are initially obtained based on the stochastic pulse theory. Then, the Von Karman theory is applied to model the nonlinear vibration of membrane with geometric nonlinearity, which is then used to derive and solve the corresponding fokker–plank–kolmogorov (FPK). The theoretical model developed is validated by means of experiment study and monte carlo simulation (MCS) analysis. The effects of variables like pretension force, velocity of impact load, and material features on stochastic dynamic behavior of membranes are discussed in detail. This exposition provides theoretical framework for stochastic vibration control and design of membranes subjected to random dynamic load.
机译:正交异性膜材料已应用于众多领域,例如土木工程,太空和航空航天以及机械工程等。在使用寿命期间,这些膜片始终会受到随机冲击载荷(例如冰雹,大雨和噪音等)引起的强烈随机振动。本文研究了正交各向异性膜在随机冲击载荷作用下的随机振动问题。首先基于随机脉冲理论获得随机冲击载荷的统计特征。然后,将冯·卡曼理论应用于具有几何非线性的膜的非线性振动建模,然后将其用于推导和求解相应的福克-普朗克-科莫格洛夫(FPK)。通过实验研究和蒙特卡洛模拟(MCS)分析验证了开发的理论模型。详细讨论了诸如预应力,冲击载荷速度和材料特征等变量对膜的随机动态行为的影响。该博览会为随机振动控制和承受随机动态载荷的膜设计提供了理论框架。

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