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Analysis and design of a nonlinear stiffness and damping system with a scissor-like structure

机译:剪状结构非线性刚度阻尼系统的分析与设计

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An n-layer Scissor-Like Structured (SLS) vibration isolation platform is studied in this paper, focusing on the analysis and design of nonlinear stiffness, friction forces and damping characteristics for an advantageous vibration isolation performance. The system nonlinear stiffness and damping characteristics are theoretically investigated by considering the influence incurred by different structural parameters, friction forces and link inertia. Since stiffness and damping properties are both asymmetrical nonlinear functions, and Coulomb friction is piecewise nonlinear function, Perturbation Method (PM) and Average Method (AM) are applied together to achieve better solutions. The vibration isolation performance of the SLS platform is compared with known quasi-zero-stiffhess vibration isolators in the literature, and a typical application case study as a vehicle seat suspension is also conducted, subjected to different load masses, and base excitations. The results show that much better vibration isolation performance and loading capacity can be easily achieved with the SLS platform by designing structural parameters, and the scissor-like structure provides a very powerful, practical and passive solution to design and realization of beneficial nonlinear stiffness and damping characteristics in vibration control.
机译:本文研究了一种n层剪式结构(SLS)隔振平台,着重于非线性刚度,摩擦力和阻尼特性的分析和设计,以实现良好的隔振性能。通过考虑不同结构参数,摩擦力和连杆惯性的影响,从理论上研究了系统的非线性刚度和阻尼特性。由于刚度和阻尼特性都是非对称非线性函数,而库仑摩擦是分段非线性函数,因此将摄动法(PM)和平均法(AM)结合使用以实现更好的解决方案。将SLS平台的隔振性能与文献中已知的准零刚度隔振器进行了比较,并且还进行了一个典型的应用案例研究,即车辆座椅悬架,承受不同的负载质量和基本激励。结果表明,通过设计结构参数,可以轻松地使用SLS平台实现更好的隔振性能和承载能力,并且类似剪刀的结构为设计和实现有益的非线性刚度和阻尼提供了非常强大,实用和被动的解决方案。振动控制的特性。

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