论文标题
轴向预载对粘弹性梁的弯曲振动的影响
Effect of an axial pre-load on the flexural vibrations of viscoelastic beams
论文作者
论文摘要
聚合物是适合多种应用的超ver材材料,因为它们可以适当地满足特定需求。然而,从机械角度来看,新化合物的实现也需要适当的实验表征,这通常是通过分析梁的振动来进行的,但对于众所周知的弹性梁动力学,仍然存在一些不清楚的方面。为了解决这一缺点,本文讨论了粘弹性束动力学的理论建模,并追求阐明在施加轴向预加载,抗压或拉伸的轴向振动时如何影响弯曲振动的基础。提出的分析模型能够阐明特殊的行为,这与粘弹性引起的频率依赖性阻尼密切相关。通过将作为一个真实聚合物,即合成橡胶,可以披露,在某些条件下,轴向预紧力可以增强或抑制光束谐振峰的振荡性对应物,这取决于复合物模量的频率分布和光束的长度。分析模型通过有限元模型(FEM)进行评估,事实证明,它是理解粘弹性光束动力学的重要工具,通常利用实验表征聚合物材料,并且可以简单地通过限制和随之而来的预先加载来实现巨大的变化。
Polymers are ultra-versatile materials that adapt to a myriad of applications, as they can be designed appropriately for specific needs. The realization of new compounds, however, requires the appropriate experimental characterizations, also from the mechanical point of view, which is typically carried out by analyzing the vibrations of beams, but which still have some unclear aspects, with respect to the well-known dynamics of elastic beams. To address this shortcoming, the paper deals with the theoretical modelling of a viscoelastic beam dynamics, and pursues the elucidation of underlying how the flexural vibrations may be affected when an axial preload, compressive or tensile, is applied. The analytical model presented, is able to shed light on a peculiar behaviour, which is strongly related to the frequency dependent damping induced by viscoelasticity. By considering as an example a real polymer, i.e. a synthetic rubber, it is disclosed that an axial preload, in certain conditions, may enhance or suppress the oscillatory counterpart of a resonance peak of the beam, depending on both the frequency distribution of the complex modulus and the length of the beam. The analytical model is assessed by a Finite Element Model (FEM), and it turns out to be an essential tool for understanding the dynamics of viscoelastic beams, typically exploited to experimentally characterize polymeric materials, and which could vary enormously simply through the application of constraints and ensued preloads.