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Spectral Analysis of Macro-Fiber Composites Measured Vibration of Double-Panel Structure Coupled with Solenoids

机译:宏观光纤复合材料的光谱分析测量双面板结构与螺线管相连的振动

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摘要

Noise may have a negative impact on humans health and well being. Noise is a direct result of the vibration of structures. Many industrial workers and people using household appliances may be exposed to these harmful factors. To minimize their negative consequences, different approaches to noise and vibration reduction may be applied, e.g., active, semi-active or passive methods. In this research, a semi-active approach to vibration reduction of a cubic rigid casing enclosing a noise- and vibration-generating device is presented. One of the casing walls consists of double thin steel panels, coupled with the use of electromagnetic dampers—solenoids installed in the space between the panels. Other casing walls are built of single plywood panels. Vibrations of the outer (radiating) panel of the wall are measured by Macro-Fiber Composite patches. Spectral analysis of structure vibration is carried out to identify the benefits of the proposed coupling solution in terms of vibration reduction of the wall. The frequency range, where vibration reduction is observed, depends on the number of activated solenoids and the duty cycle of a Pulse Width Modulation (PWM) signal. Advantages and drawbacks of the proposed method are discussed and future improvements of the examined setup are suggested.
机译:噪音可能对人类健康和良好存在产生负面影响。噪音是结构振动的直接结果。许多工业工人和使用家用电器的人可能会暴露于这些有害因素。为了最小化它们的负面后果,可以应用不同的噪声和振动的方法,例如,有源,半主动或无源方法。在该研究中,提出了一种封闭噪声和振动产生装置的立方刚性壳体的半主动方法。其中一个套管壁由双薄钢板组成,同时使用安装在面板之间的空间中的电磁阻尼器 - 螺线管。其他套管墙壁由单个胶合板面板构成。通过宏观纤维复合贴片测量壁的外(辐射)面板的振动。对结构振动的光谱分析进行,以识别所提出的耦合解决方案在墙壁的振动减少方面的益处。观察振动减小的频率范围取决于激活的螺线管的数量和脉冲宽度调制(PWM)信号的占空比。讨论了所提出的方法的优点和缺点,并建议了所检查设置的未来改进。

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