振动
声学
还原(数学)
结构工程
刚度
材料科学
动力减振器
传输(电信)
透射系数
噪音(视频)
放大系数
工程类
物理
计算机科学
数学
几何学
电气工程
放大器
图像(数学)
CMOS芯片
光电子学
人工智能
作者
Wenjie Guo,Xian Hong,Wenjun Luo,Pengfei Zhang,Jian Yang,Jianwei Yan
标识
DOI:10.1142/s0219455423501353
摘要
Functionally graded material (FGM) beams are widely used in engineering as moving components. Nevertheless, their generated vibrations usually become annoying. To realize multi-broadband vibration reduction of FGM beams, an enhanced multiple dynamic vibration absorber (EMDVA), which utilizes an amplification mechanism, is proposed in this study. The devices are periodically arranged on the FGM beams. The dispersion and vibration transmission characteristics of the structure are investigated using the energy method and nullspace technique. The accuracy of the model is verified using the finite element method. The effects of parameter on its vibration damping performance are also analyzed. Finally, the relationship between the amplification coefficient and the operating performance of the EMDVA is revealed in terms of both the impedance principle and the energy method. The results show that the amplification mechanism can amplify the stiffness, damping, and mass of the MDVA by a factor of square of the amplification coefficient. Therefore, the proposed EMDVA has a wider damping band and stronger attenuation performance compared to the conventional MDVA. This study provides a simple and easy-to-implement solution for multi-band vibration reduction in FGM beams, which is useful for the engineering application of FGM beams in vibration and noise reduction.
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