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A Mechanical Model For Elastomeric Seismic Isolation Bearings Including The Influence Of Axial Load

机译:含轴向载荷影响的弹性隔震轴承力学模型

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For the purpose of predicting the large-displacement response of seismically isolated buildings, an analytical model for elastomeric isolation bearings is proposed. The model comprises shear and axial springs and a series of axial springs at the top and bottom boundaries. The properties of elastomeric bearings vary with the imposed vertical load. At large shear deformations, elastomeric bearings exhibit stiffening behavior under low axial stress and buckling under high axial stress. These properties depend on the interaction between the shear and axial forces. The proposed model includes interaction between shear and axial forces, nonlinear hysteresis, and dependence on axial stress. To confirm the validity of the model, analyses are performed for actual static loading tests of lead-rubber isolation bearings. The results of analyses using the new model show very good agreement with the experimental results. Seismic response analyses with the new model are also conducted to demonstrate the behavior of isolated buildings under severe earthquake excitations. The results obtained from the analyses with the new model differ in some cases from those given by existing models.
机译:为了预测隔震建筑物的大位移响应,提出了一种弹性隔震支座的解析模型。该模型包括剪切弹簧和轴向弹簧,以及在顶部和底部边界处的一系列轴向弹簧。弹性轴承的性能随施加的垂直载荷而变化。在较大的剪切变形下,弹性轴承在低轴向应力下表现出刚度,而在高轴向应力下表现出屈曲。这些特性取决于剪切力和轴向力之间的相互作用。提出的模型包括剪切力和轴向力之间的相互作用,非线性滞后以及对轴向应力的依赖性。为了确认模型的有效性,对铅-橡胶隔离轴承的实际静态载荷测试进行了分析。使用新模型的分析结果与实验结果非常吻合。还使用新模型进行了地震响应分析,以证明严重地震激发下孤立建筑物的行为。在某些情况下,使用新模型进行分析所获得的结果与现有模型所给出的结果有所不同。

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