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Effect of the system imperfections on the dynamic response of a high-static-low-dynamic stiffness vibration isolator

机译:系统缺陷对高静低动态刚度隔振器动力响应的影响

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The dynamic response of a high-staticlow- dynamic stiffness (HSLDS) isolator formed by parallelly connecting a negative stiffness corrector which uses compressed Euler beams to a linear isolator is investigated in this study. Considering stiffness and load imperfections, the resonance frequency and response of the proposed isolator are obtained by employing harmonic balance method. TheHSLDS isolator with quasi-zero stiffness characteristics can offer the lowest resonance frequency provided that there is only stiffness or load imperfection. If load imperfection always exists, there is no need to make the stiffness to zero since it cannot provide the lowest resonance frequency any longer. The reason for this unusual phenomenon is given. The dynamic response will exhibit softening, hardening, and softening-tohardening characteristics, depending on the combined effect of load imperfection, stiffness imperfection, and excitation amplitude. In general, load imperfection makes the response exhibit softening characteristic and increasing stiffness imperfection will weak this effect. Increasing the excitation level will make the isolator undergo complex switch between different stiffness characteristics.
机译:本研究研究了通过将使用压缩欧拉梁的负刚度校正器并联连接到线性隔振器而形成的高静态低动态刚度(HSLDS)隔振器的动态响应。考虑到刚度和载荷的不完美,采用谐波平衡法获得了所提出的隔振器的共振频率和响应。如果仅存在刚度或负载缺陷,则具有准零刚度特性的HSLDS隔离器可以提供最低的谐振频率。如果始终存在负载缺陷,则无需将刚度设为零,因为它不再能够提供最低的共振频率。给出了这种异常现象的原因。动态响应将表现出软化,硬化和软化硬化特性,具体取决于载荷缺陷,刚度缺陷和激励幅度的综合作用。通常,载荷缺陷会使响应呈现出软化特性,而刚度缺陷的增加会削弱这种影响。增加激励水平将使隔离器在不同的刚度特性之间进行复杂的切换。

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