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首页> 外文期刊>International journal of non-linear mechanics >Vibrations of a lumped parameter mass-spring-dashpot system wherein the spring is described by a non-invertible elongation-force constitutive function
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Vibrations of a lumped parameter mass-spring-dashpot system wherein the spring is described by a non-invertible elongation-force constitutive function

机译:集总参数质量弹簧缓冲器系统的振动,其中弹簧由不可逆的伸长力本构函数描述

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The standard setting concerning vibrations of lumped parameter systems is based on the assumption that the mechanical response of the elements of the system is given explicitly in terms of kinematical variables. In. particular, the force in a spring element is assumed to be given a a function of the displacement from the equilibrium position. However, some simple mechanical systems such as linear springs with limited compressibility/extensibility do not fit into the standard setting. In this case the displacement must be written as a function of the force. In general, the mechanical response of such elements must be described by an implicit relation between the force and kinematical variables. We study the behaviour of a particular lumped parameter system whose mechanical response is given by a non-invertible expression for the displacement in terms of the force, under harmonic external force. We show that a solution to the original system wherein the displacement is given in terms of the force can be obtained as a limit of a sequence of approximate problems. The approximate problems are designed in such a way that they can be solved using standard numerical methods, and one can avoid using concepts such as set valued mappings. Moreover, we show that the "bounce back" behaviour of the system with linear spring with limited compressibility/extensibility is a direct consequence of the assumed constitutive relation. There is no need to a priori supply the rules for the bounce back (impact rules). Further, we show that the advocated approximation procedure is capable of describing the behaviour of the lumped parameter system even in the situations where the governing ordinary differential equation collapses to an algebraic equation. Representative results are demonstrated by a numerical experiment. (C) 2015 Published by Elsevier Ltd.
机译:关于集总参数系统的振动的标准设置是基于这样的假设,即根据运动学变量明确给出了系统元素的机械响应。在。特别地,假定弹簧元件中的力是相对于平衡位置的位移的函数。但是,某些简单的机械系统(例如,压缩/扩展性受限制的线性弹簧)不适合标准设置。在这种情况下,位移必须写为力的函数。通常,必须通过力与运动学变量之间的隐式关系来描述此类元件的机械响应。我们研究了特定集总参数系统的行为,该系统的机械响应由在谐波外力作用下力的位移的不可逆表达式给出。我们表明,可以得到对原始系统的解决方案,其中位移是根据力给出的,它是一系列近似问题的极限。设计近似问题的方式可以使用标准数值方法解决,并且可以避免使用诸如集值映射之类的概念。此外,我们表明具有有限可压缩性/可扩展性的线性弹簧系统的“反弹”行为是假定的本构关系的直接结果。无需事先提供反弹的规则(冲击规则)。此外,我们表明,即使在控制中的常微分方程崩溃为代数方程的情况下,提倡的近似过程也能够描述集总参数系统的行为。数值实验证明了代表性的结果。 (C)2015年由Elsevier Ltd.出版

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