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首页> 外文期刊>Journal of Applied Mechanics: Transactions of the ASME >On the Vibration Isolation of Flexible Structures
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On the Vibration Isolation of Flexible Structures

机译:柔性结构的隔振研究

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Although the study of vibration isolation has a very long history, when an isolated structure is so flexible that it cannot be properly approximated with a rigid body or a single-degree-of-freedom model, its vibration isolation brings about some new questions and problems. By transforming the dynamic equation of motion of the coupled structure formed by the isolator and the isolated structure into the modal space and following the tradition of studying features of the vibration transmissibility across the isolator, questions and problems associated with the flexible structure vibration isolation are studied. It is found from the study that a lower isolation frequency and a higher damping level can both increase the isolation effectiveness, the isolated structure is a vibration absorber to the isolator, and a combination of the vibration isolation and the vibration attenuation can be more effective in mitigating the vibration. A numerical example of the whole spacecraft vibration isolation has proved the above conclusions.
机译:尽管隔振的研究历史悠久,但是当隔振结构如此灵活以至于不能用刚体或单自由度模型正确近似时,其隔振带来了一些新的问题。 。通过将由隔震器和隔震结构形成的耦合结构的运动动力学方程转换为模态空间,并遵循研究隔震器的振动传递特性的传统,研究了与柔性结构隔震相关的问题和问题。 。从研究中发现,较低的隔离频率和较高的阻尼水平都可以提高隔离效果,隔离结构是隔离器的减震器,并且在将隔离器和减振器结合使用时,隔离器更有效。减轻振动。整个航天器隔振的数值例子证明了以上结论。

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