首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part C. Journal of mechanical engineering science >On the equivalent systems for concurrent springs and dampers - Part I: Small in-plane oscillations
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On the equivalent systems for concurrent springs and dampers - Part I: Small in-plane oscillations

机译:在并发弹簧和减振器的等效系统上-第一部分:平面内小振动

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摘要

In this work, concurrent linear springs placed in the system that performs small in-plane oscillations around the stable equilibrium position are considered. New theorems defining how they can be replaced by two mutually orthogonal springs are provided. The same concept is applied to find two mutually orthogonal linear viscous dampers that can replace a system of concurrent linear viscous dampers. The directions of such springs and dampers correspond to the principal stiffness and damping axes, respectively. So far unknown invariants related to the sum of stiffness coefficients and damping coefficient of the original and equivalent systems are presented. A few examples are given to illustrate the use and benefits of this approach. In addition, it is shown how the concept of two mutually orthogonal springs can be beneficially used for analysing problems concerned with oscillations of a particle on elastic frames.
机译:在这项工作中,考虑了放置在系统中的并发线性弹簧,这些弹簧在稳定的平衡位置周围执行小的面内振荡。提供了新的定理,该定理定义了如何用两个相互正交的弹簧代替它们。应用相同的概念来找到两个相互正交的线性粘性阻尼器,它们可以代替同时存在的线性粘性阻尼器的系统。这种弹簧和阻尼器的方向分别对应于主刚度和阻尼轴。到目前为止,提出了与原始系统和等效系统的刚度系数和阻尼系数之和有关的未知不变量。给出了一些例子来说明这种方法的使用和好处。另外,示出了如何将两个相互正交的弹簧的概念有益地用于分析与弹性框架上的粒子的振动有关的问题。

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