论文标题

非线性粘弹性隔离以减轻地震振动

Nonlinear viscoelastic isolation for seismic vibration mitigation

论文作者

Menga, N., Bottiglione, F., Carbone, G.

论文摘要

本文的目的是评估非线性粘弹性阻尼在控制基础激发振动中的有效性。具体而言,重点是研究由于广泛的激发光谱,在控制系统响应中非线性碱基隔离性能的鲁棒性。动态模型被得出来研究一个简单的结构,其基本隔离是通过橡胶层滚子轴承(RLRB)(RLRB)(刚性圆柱体在具有高度阻尼橡胶涂层的刚性板上滚动的刚性圆柱体),配备了非线性立方弹簧,从而呈现出非线性阻尼和刚度。我们发现,在周期性载荷下,由于粘弹性滚动接触引起的非主体钟形粘弹性阻尼,主要发生不同的动态状态,这主要取决于是否克服了阻尼峰。有趣的是,在前一种情况下,陡峭的阻尼减小可能会触发衰减的自我激发振动。此外,为了研究隔离性能的鲁棒性,我们考虑了一组真实的地震激励,表明与通用线性隔离器相比,调谐的非线性RLRB在更广泛的激发光谱中提供了隔离。这非常适合于在先验的特定激发谱的应用程序(例如地震和故障工程)中,必须采用统计数据的盲目设计。

The aim of this paper is to assess the effectiveness of nonlinear viscoelastic damping in controlling base-excited vibrations. Specifically, the focus is on investigating the robustness of the nonlinear base isolation performance in controlling the system response due to a wide set of possible excitation spectra. The dynamic model is derived to study a simple structure whose base isolation is provided via a Rubber-Layer Roller Bearing (RLRB) (rigid cylinders rolling on rigid plates with highly damping rubber coatings) equipped with a nonlinear cubic spring, thus presenting both nonlinear damping and stiffness. We found that, under periodic loading, due to the non-monotonic bell-shaped viscoelastic damping arising from the viscoelastic rolling contacts, different dynamic regimes occur mostly depending on whether the damping peak is overcome or not. Interestingly, in the former case, poorly damped self-excited vibrations may be triggered by the steep damping decrease. Moreover, in order to investigate the robustness of the isolation performance, we consider a set of real seismic excitations, showing that tuned nonlinear RLRB provide loads isolation in a wider range of excitation spectra, compared to generic linear isolators. This is peculiarly suited for applications (such as seismic and failure engineering) in which the specific excitation spectrum is unknown a priori, and blind design on statistical data has to be employed.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源