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Experimental determination of the lateral stability and shear failure limit states of bridge rubber bearings

机译:桥梁橡胶支座横向稳定性和剪切破坏极限状态的试验确定

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This paper aims to increase the existing experimental knowledge base concerning the limit states of performance of natural rubber elements that are typically used as bearing pads and seismic isolators for bridges. A large experimental study is performed on 13 reduced-scale and 11 full-scale natural rubber specimens subjected to different types of shear-compression tests. Both lateral stability and shear failure under realistic axial compression forces are addressed in the study, together with an investigation of different isolator sizes, shape factors and slenderness ratios. Stability curves are obtained from tests using the constant displacement method, and shear failure data from tests using the direct method are presented. Predictions of the critical buckling loads from different versions of the reduced area method are compared to the experimental stability curves, indicating that these commonly used estimates are not always conservative depending on the geometry of the bearing. Several buckling and shear failure test results obtained in this study specifically highlight the fact that the slenderness ratio is the most critical parameter when determining the ultimate limit states of rubber bearings, although this parameter is often neglected. The intermediate limit states before buckling or shear failure are also investigated. It is shown that such limit states of performance are nearly impossible to define experimentally because most bearings do not exhibit any visual damage before failure, although experimental data indicate that slight to moderate damage obviously occurs in bearings under large displacements.
机译:本文旨在增加有关天然橡胶元件性能极限状态的现有实验知识库,天然橡胶元件通常用作桥梁的支撑垫和地震隔离器。一项大型实验研究是对13种缩小比例的天然橡胶标本和11种完全比例的天然橡胶标本进行不同类型的剪切压缩试验。研究中讨论了在实际轴向压缩力下的横向稳定性和剪切破坏,并研究了不同的隔离器尺寸,形状因子和细长比。通过使用恒定位移方法的测试获得稳定性曲线,并提供使用直接方法的测试所得的剪切破坏数据。来自不同版本的减小面积方法的临界屈曲载荷的预测值与实验稳定性曲线进行了比较,表明这些常用的估计值并不总是保守的,具体取决于轴承的几何形状。在这项研究中获得的一些屈曲和剪切破坏测试结果特别突出了这样一个事实,即长宽比是确定橡胶轴承极限极限状态时最关键的参数,尽管该参数经常被忽略。还研究了屈曲或剪切破坏之前的中间极限状态。结果表明,这样的极限性能状态几乎不可能通过实验来确定,因为大多数轴承在失效之前都没有表现出任何视觉损伤,尽管实验数据表明,在大位移情况下,轴承显然会发生轻微至中度的损伤。

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