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Finite-Element and Experimental Investigation of the Post- Buckling Stability of an Elastomeric Seismic Isolation Bearing

机译:弹性隔震支座屈曲后稳定性的有限元和实验研究

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An important consideration for the design of seismic isolation systems composed of elastomeric bearings is the safety of individual bearings for maximum considered earthquake shaking. One assessment of bearing safety requires the bearing be stable at the maximum displacement. Although there exists no codified procedure for assessing stability in the laterally deformed configuration most engineers use the overlapping area method whereby the critical load capacity at zero lateral displacement is reduced by the ratio of the overlapping area between the top and bottom bearing end plates to the total bonded rubber area. This paper presents the results of a finite-element and experimental investigation aimed at improving the understanding of the stability of elastomeric bearing in the deformed configuration. The results of detailed nonlinear FE analysis and experimental testing of an elastomeric bearing with shape factor equal to 10 suggest the overlapping area method is overly conservative in predicting the critical load capacity in the deformed configuration.
机译:设计由弹性轴承组成的隔震系统的重要考虑因素是单个轴承在最大程度考虑地震震动方面的安全性。对轴承安全性的一种评估要求轴承在最大排量下保持稳定。尽管没有用于评估横向变形构造中稳定性的规范化程序,但大多数工程师还是使用重叠面积法,即通过将上下轴承端板之间的重叠面积与总面积之比降低,可以在零横向位移时降低临界载荷。粘合橡胶区。本文介绍了有限元和实验研究的结果,旨在增进对弹性轴承在变形状态下的稳定性的理解。详细的非线性有限元分析结果和形状因子等于10的弹性轴承的实验测试表明,重叠区域法在预测变形构型的临界载荷能力时过于保守。

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