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Modeling of high damping rubber bearings under bidirectional shear loading

机译:双向剪切载荷下高阻尼橡胶轴承的建模

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摘要

The behavior of high damping rubber bearings is highly complex. The models that are currently available are generally limited to unidirectional motion and, in most cases, difficult to extend to general bidirectional loading. One of the major limitations is their inability to characterize the behavior of the bearings at different levels of shear deformation. In the present work, a set of bidirectional models are presented, obtained by combining relatively simple bi-dimensional formulations. The models are calibrated over a set of unidirectional test data and are shown to accurately describe the response of the bearings at low, intermediate and high strain levels using a single set of parameters. Validation is carried out using bidirectional displacement-controlled tests available in the literature and numerical simulations are performed of a base-isolated building subjected to free vibration and bidirectional earthquake excitation.
机译:高阻尼橡胶轴承的行为非常复杂。当前可用的模型通常仅限于单向运动,并且在大多数情况下,很难扩展到一般的双向载荷。主要限制之一是它们无法表征不同剪切变形水平下轴承的性能。在当前的工作中,提出了一组双向模型,通过组合相对简单的二维公式获得。这些模型在一组单向测试数据上进行了校准,并显示为使用一组参数准确地描述了轴承在低,中和高应变水平下的响应。使用文献中提供的双向位移控制测试进行验证,并对遭受自由振动和双向地震激励的基础隔离建筑物进行数值模拟。

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