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Passive Vibration Control of Airborne Equipment using a Circular Steel Ring

机译:使用圆形钢环的机载设备的被动振动控制

摘要

Vibration isolation is needed to protect avionics equipment from adverse aircraft vibration environments. Passive isolation is the simplest means to achieve this goal. The system used here consists of a circular steel ring with a lump mass on top and exposed to base excitation. Sinusoidal and filtered zero-mean Gaussian white noise are used to excite the structure and the acceleration response spectra at the top of the ring are computed. An experiment is performed to identify the natural frequencies and modal damping of the circular ring. Comparison is made between the analytical and experimental results and good agreement is observed. The ring response is also evaluated with a concentrated mass attached to the top of the ring. The effectiveness of the ring in isolating the equipment from base excitation is studied. The acceleration response spectra of a single degree of freedom system attached to the top of the ring are evaluated and the results are compared with those exposed directly to the base excitation. It is shown that a properly designed ring could effectively protect the avionics from possible damaging excitation levels.
机译:需要隔振来保护航空电子设备免受不利的飞机振动环境的影响。被动隔离是实现此目标的最简单方法。此处使用的系统由一个圆形钢圈组成,该钢圈的顶部有一个块状物质,并受到基础激励。正弦和滤波后的零均值高斯白噪声用于激发结构,并计算出环顶部的加速度响应谱。进行实验以识别圆环的固有频率和模态阻尼。在分析结果和实验结果之间进行了比较,并观察到很好的一致性。环的响应也通过附着在环顶部的集中质量进行评估。研究了环在将设备与基础激励隔离中的有效性。评估了连接到环顶部的单自由度系统的加速度响应谱,并将结果与​​直接暴露于基础激励的结果进行了比较。结果表明,正确设计的环可以有效地保护航空电子设备免受可能的破坏性激励水平的影响。

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