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Vibrational analysis of structures with stochastic interfaces in the medium-frequency range: Experimental validation on a touch screen

机译:具有中频范围内随机界面的结构的振动分析:触摸屏上的实验验证

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摘要

This paper proposes a dedicated approach and its experimental validation when dealing with structures (including stochastic parameters, such as interface parameters) in medium-frequency vibrations. The first ingredient is the use of a dedicated approach - the Variational Theory of Complex Rays (VTCR) - to solve the medium-frequency problem. The VTCR, which uses two-scale shape functions verifying the dynamic equation and the constitutive relation, can be viewed as a means of expressing the power balance at the different interfaces between substructures. The second ingredient is the use of the Polynomial Chaos Expansion (PCE) to calculate the random response. Since the only uncertain parameters are those which appear in the interface equations (which, in this application, are the complex connection stiffness parameters), this approach leads to very low computation costs. This method is validated on a new kind of touch screen. The simulated mobilities are compared with experimental ones obtained with a laser vibrometer and a good agreement is founded on a large medium-frequency bandwidth.
机译:当处理中频振动中的结构(包括随机参数,例如界面参数)时,本文提出了一种专用方法及其实验验证。第一个要素是使用专用方法-复射线变分理论(VTCR)-解决中频问题。使用验证动力学方程和本构关系的两尺度形状函数的VTCR可被视为表达子结构之间不同界面处的功率平衡的一种手段。第二个因素是使用多项式混沌扩展(PCE)来计算随机响应。由于唯一不确定的参数是出现在界面方程式中的参数(在此应用中为复杂的连接刚度参数),因此该方法导致非常低的计算成本。该方法已在新型触摸屏上得到验证。将模拟迁移率与通过激光振动计获得的实验迁移率进行比较,并在较大的中频带宽上建立了良好的协议。

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