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Beneficial stiffness design of a high-static-low-dynamic-stiffness vibration isolator based on static and dynamic analysis

机译:基于静态和动态分析的高静电低动态刚度隔振器的有益刚度设计

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摘要

A high-static-low-dynamic-stiffness (HSLDS) isolator has good application prospects in low-frequency vibration and micro-vibration isolation. The nonlinear stiffness of the vibration isolation system strongly influences its dynamic responses and vibration isolation performance. In this paper, for a HSLDS isolator model, a stiffness range parameter d and a static equilibrium position stiffness K-sep are introduced to indicate the different stiffnesses of the nonlinear isolator. The averaging method is employed to solve the nonlinear dynamic equation of the proposed system at steady state for each excitation frequency. The effects of the parameters d and K-sep on the dynamic responses and isolation effectiveness of the HSLDS isolator are clearly analysed. The results show that an increase in d and a reduction K-sep in improve the isolation performance of the system. Considering the application of the HSLDS isolator in micro-vibration environments, the beneficial stiffness design under various excitation amplitudes and damping conditions is discussed on the basis of the limited maximum response amplitude. Several useful guidelines for the stiffness design of the HSLDS isolator are developed, which help to improve the vibration isolation performance of the system. The results provide useful insight for the design, analysis and application of HSLDS vibration isolators.
机译:高静态 - 低动态刚度(HSLD)隔离器具有低频振动和微振隔离的良好应用前景。隔振系统的非线性刚度强烈影响其动态响应和振动隔离性能。本文针对HSLDS隔离器模型,引入刚度范围参数D和静态平衡位置刚度K-SEP以指示非线性隔离器的不同刚度。用于在每个激励频率的稳态下解决所提出的系统的非线性动态方程的平均方法。参数D和K-SEP对HSLD分离器的动态响应和隔离效果的影响清楚地分析。结果表明,D和减少K-SEP提高了系统的隔离性能。考虑到HSLDS隔离器在微振动环境中的应用,基于有限的最大响应幅度讨论各种激励幅度和阻尼条件下的有益刚度设计。开发了几种用于HSLD隔离器的刚度设计的有用指南,有助于提高系统的振动隔离性能。结果为HSLD振动隔离器的设计,分析和应用提供了有用的见解。

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