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Finite element study of effect of parameters on stress distribution of steel shim in elastomeric bearings

机译:有限元研究参数对弹性轴承钢垫钢岩应力分布的影响研究

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Elastomeric bearings are widely used in various structures as a type of seismic isolation device, and accurately assessing the state of their stress is an essential step in the design of elastomeric bearings. This article aims to better understand the influencing factors of stress distribution on the steel shims and the effect of steel shim thickness on the critical behaviour of elastomeric bearings. First, theoretical analysis is conducted for investigating the influencing factors of the bearing's critical load capacity and stress distribution on the steel shim thickness. Then, a series of finite element models is employed to study the influence of steel shim thickness on the global performance of bearings, the stress distribution on steel shims at different locations and the effect of steel shim thickness on stress distribution. Combining the results of theoretical analysis and finite element analysis, we conclude that steel shim thickness has little obvious effect on the mechanical properties of the bearing under normal working conditions, but it has a significant influence on the distribution and change of the local stress. Especially, when the vertical load and the horizontal displacement of the bearing increases, the growth rate of stress on the upper steel shims is very fast and may enter the yield state first or even resulting in local damage.
机译:弹性体轴承广泛用于各种结构中作为一种地震隔离装置,并且准确地评估其应力的状态是弹性体轴承设计的重要步骤。本文旨在更好地了解钢垫片上应力分布的影响因素及钢垫片厚度对弹性体轴承临界行为的影响。首先,进行理论分析,用于研究轴承临界负荷能力和钢垫片厚度应力分布的影响因素。然后,采用一系列有限元模型来研究钢垫厚度对轴承全球性能的影响,不同地点钢垫片的应力分布及钢垫厚度对应力分布的影响。结合理论分析和有限元分析的结果,我们得出结论,钢垫厚度对正常工作条件下轴承的力学性能几乎没有明显影响,但对局部应力的分布和变化具有显着影响。特别是,当垂直载荷和轴承的水平位移增加时,上钢垫片上的应力的生长速率非常快,并且可以首先或甚至导致局部损坏进入产量状态。

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