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Control of internal resonances in vibration isolators using passive and hybrid dynamic vibration absorbers

机译:使用被动和混合动态减振器控制隔振器的内部共振

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This paper discusses methods to improve isolator performance by controlling Internal Resonances (IRs), also referred as wave effects, in vibration isolators. The IRs are associated with the isolators' internal elastic motions that are due to the inertia existing in practical vibration isolators. It is well known that the IRs degrade the isolator performance as predicted by ideal massless isolator models. This degradation could be as high as 20-30dB in the force transmissibility at the IR frequencies and 10-20dB in the overall noise radiation from the foundation in the audible frequency range. This paper proposes two approaches of using dynamic vibration absorbers (DVAs) directly embedded into the isolator to attenuate the IRs. The first approach uses passive DVAs (PDVA). The effectiveness of this approach is investigated analytically using a 3 dof vibration model. It is shown that the PDVAs are very effective in attenuating the IRs and improve the isolator's performance at high frequencies. However, the PDVAs are less effective at low frequencies. To complement the effectiveness of the PDVA, an active control force is added, forming the hybrid DVA (HDVA) approach. The effectiveness of both the PDVA and the HDVA approaches, as well as the significance of the IRs in a commercial rubber mount, is also demonstrated experimentally. It is shown that an enhanced isolator with DVAs outperforms the original isolator without DVAs. Compared to the original isolator, in the isolation region of the experimental system, the PDVA approach reduces force transmissibility by 18.5% and overall noise radiation by 4.3 dB. The HDVA approach reduces the force transmissibility and radiated noise by 92.2% and 9.1 dB, respectively. (c) 2004 Elsevier Ltd. All rights reserved.
机译:本文讨论了通过控制振动隔离器中的内部共振(IR)(也称为波效应)来提高隔离器性能的方法。 IR与隔离器的内部弹性运动相关,该内部弹性运动是由于实际振动隔离器中存在的惯性引起的。众所周知,IR会降低理想的无质量隔离器模型所预测的隔离器性能。在可听频率范围内,这种衰减在红外频率下的力传递能力可能高达20-30dB,在来自基础的总噪声辐射中可能高达10-20dB。本文提出了两种使用直接嵌入隔离器中的动态吸振器(DVA)衰减IR的方法。第一种方法使用无源DVA(PDVA)。使用3自由度振动模型对这种方法的有效性进行了分析研究。结果表明,PDVA在衰减IR和提高隔离器的高频性能方面非常有效。但是,PDVA在低频时效果较差。为了补充PDVA的有效性,添加了主动控制力,形成了混合DVA(HDVA)方法。还通过实验证明了PDVA和HDVA方法的有效性以及IR在商业橡胶支架中的重要性。结果表明,带有DVA的增强型隔离器要优于没有DVA的原始隔离器。与原始隔离器相比,在实验系统的隔离区域中,PDVA方法将力的传递性降低了18.5%,总噪声辐射降低了4.3 dB。 HDVA方法分别将力传递率和辐射噪声降低了92.2%和9.1 dB。 (c)2004 Elsevier Ltd.保留所有权利。

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