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FE modelling of fiber reinforced elastomeric isolators (FREI): Mesh verification and validation

机译:纤维增强弹性体隔离器(FREI)的FE造型:网格验证和验证

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Seismic isolation is an effective technical solution to reduce the vulnerability of new and existing structures. It can mitigate the negative impact of an earthquake by shifting the period of the structure in that range of the spectrum where the spectral acceleration is low. A well known and relatively cheap seismic isolation device is the so-called elastomeric isolator. The fabrication cost of such isolator can be reduced by the utilization of fiber lamina instead of steel. In this work, finite element (FE) modeling of fiber reinforced elastomeric isolators is discussed. In numerical modelling, the main characteristic of elastomeric materials is the hyperelasticity, which can be taken into account in the commercial FE code that was used in the present study (namely ABAQUS). In this paper, an interesting issue highlighted is the mesh verification on FE models of an elastomeric material embedded into a seismic isolator.
机译:地震隔离是一种有效的技术解决方案,可降低新的和现有结构的脆弱性。它可以通过在光谱加速度低的范围内移动结构的时间来减轻地震的负面影响。众所周知的和相对便宜的地震隔离装置是所谓的弹性体隔离器。通过利用纤维层而不是钢,可以减少这种隔离器的制造成本。在这项工作中,讨论了纤维增强弹性体隔离器的有限元素(FE)建模。在数值建模中,弹性体材料的主要特征是一种超弹性,可以在本研究中使用的商业FE代码中考虑(即ABAQUS)。在本文中,突出的一个有趣的问题是嵌入地震隔离器中的弹性体材料的Fe模型的网格验证。

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