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Damping analysis of a free aluminum plate

机译:自由铝板的阻尼分析

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摘要

An analysis of the energy dissipation sources acting in a vibrating aluminum plate is presented in this paper. In the first step, the contact-free modal analysis of a suspended plate is conducted using a laser vibrometer and an acoustic excitation to obtain reference data. The thin nylon suspension set-up guarantees a low boundary damping, which is assumed to be negligible. In the second step, a number of damping sources are modeled. Acoustic damping due to the noise radiation of the nonbaffled plate is computed using the boundary integral method and a light fluid approximation to express the vibroacoustic coupling in analytical terms. The damping due to the sheared air flow along the free-plate borders is determined on the basis of a simple two-dimensional boundary layer model. Thermoelastic damping is assessed using a Fourier series expression for the temperature field along with a perturbation technique to take thermoelastic coupling into account. Since no robust model is available so far to quantify viscoelastic material damping in aluminum, it is determined in a last step by subtracting measured values of damping from those previously computed. Aluminum viscoelastic damping turns out to be very small and almost independent of frequency.
机译:本文对振动铝板上的能量耗散源进行了分析。第一步,使用激光振动计和声激励对悬吊板进行无接触模态分析,以获得参考数据。稀薄的尼龙悬挂装置确保了低边界阻尼,这被认为是可以忽略的。第二步,对多个阻尼源进行建模。使用边界积分法和光流体近似来计算由于无挡板板的噪声辐射引起的声阻尼,以解析的方式表示振动声耦合。基于沿自由板边界的剪切气流的阻尼是基于简单的二维边界层模型确定的。使用针对温度场的傅里叶级数表达式以及考虑了热弹耦合的微扰技术来评估热弹阻尼。由于到目前为止还没有鲁棒的模型可用于量化铝中的粘弹性材料阻尼,因此在最后一步中通过从先前计算的值中减去阻尼的测量值来确定。铝的粘弹性阻尼非常小,几乎与频率无关。

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