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Vibration performance improvement of D/G-set employing inerter-rubber vibration isolator

机译:采用活动 - 橡胶振动隔离器D / G集的振动性能改进

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摘要

This paper investigated the benefits of vibration performance of diesel generator set (D/G-set) employing a kind of novel anti-vibration structure known as an inerter-rubber vibration isolator. We designed this vibration isolator in parallel with a rubber-part and a ball-screw inerter. Based on the inerter-rubber vibration isolator, the vibration system of an existing D/G-set (5DK-20) was built, and then the natural frequencies and vibration intensity of this D/G-set were analysed. The results show that the natural frequencies and the vibration intensity were both reduced employing inerter-rubber vibration isolators. Moreover, the anti-vibration performance of this D/G-set can be improved by more than 30% when the inertance-mass ratio is greater than 0.5. Therefore, the anti-vibration performance of the D/G-set can be significantly improved employing inerter-rubber vibration isolator. This work provides a new direction for vibration isolation design of power machinery, especially for the marine high-power low-speed D/G-set, which has practical engineering significance.
机译:本文研究了柴油发电机组(D / G集)的振动性能的好处,采用了一种新的抗振动结构,称为活动橡胶振动隔离器。我们设计了与橡胶部件平行的隔振器和滚珠丝杠。基于活动 - 橡胶隔振器,构建了现有的D / G集(5dk-20)的振动系统,分析了该D / G集的固有频率和振动强度。结果表明,采用离线橡胶振动隔离器的自然频率和振动强度均均降低。此外,当惯性质量比大于0.5时,可以提高该D / G集的抗振性能超过30%。因此,可以显着改善了不同的橡胶振动隔离器的D / G集的抗振动性能。这项工作为电力机械的隔振设计提供了新的方向,特别是对于海洋大功率低速D / G集,具有实用的工程意义。

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  • 来源
    《Journal of marine engineering and technology》 |2021年第4期|243-253|共11页
  • 作者单位

    School of Energy and Power Jiangsu University of Science and Technology Zhenjiang People’s Republic of China;

    School of Energy and Power Jiangsu University of Science and Technology Zhenjiang People’s Republic of China;

    School of Energy and Power Jiangsu University of Science and Technology Zhenjiang People’s Republic of China;

    School of Energy and Power Jiangsu University of Science and Technology Zhenjiang People’s Republic of China;

    chool of Energy and Power Jiangsu University of Science and Technology Zhenjiang People’s Republic of China;

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