首页> 外文期刊>Journal of bridge engineering >Roll Stiffness of Reinforced Neoprene Bearing Pads under Imposed Skew and Slope Angles
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Roll Stiffness of Reinforced Neoprene Bearing Pads under Imposed Skew and Slope Angles

机译:施加偏斜和斜角下的增强氯丁橡胶轴承垫的卷刚度

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摘要

During bridge construction, the flexible support conditions provided to precast, prestressed concrete girders by steel reinforced neoprene bearing pads allow for a rolling motion about an axis parallel to the span of the girders and may lead to girder instability. Imposed skew and/or slope angles significantly reduce the roll stiffness of bearing pads, which reduces the ultimate buckling capacity of the girders under the gravity loading condition. In this paper, roll stiffnesses for bearing pads under skew and slope conditions are derived from experimental data gathered from a test device designed to measure such values. The test device reproduces the forces acting on a bearing pad in the field while simultaneously permitting axial load, skew angle, and slope angle to be controlled independently, isolating the influence that each parameter has on bearing pad roll stiffness. A total of 108 tests were performed on three different standard bearing pads, with varying severity of imposed skew and slope angle.
机译:在桥梁结构期间,钢筋增强氯丁橡胶轴承垫提供的柔性支撑条件允许钢筋备注封装焊盘允许围绕平行于梁跨度的轴的滚动运动,并且可能导致梁不稳定性。施加的歪斜和/或斜率角度显着降低了轴承垫的辊刚度,这降低了重力负载条件下梁的最终屈曲容量。在本文中,围绕偏斜条件下的轴承垫的卷刚度源自从设计用于测量这些值的测试装置收集的实验数据。测试装置再现作用在现场轴承垫上的力,同时允许独立地控制轴向载荷,倾斜角度和斜角,隔离每个参数对轴承垫辊刚度的影响。在三个不同的标准轴承垫上进行总共108个测试,具有不同的偏斜角度和倾斜角度的变异性。

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