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首页> 外文期刊>Journal of structural engineering >Vibration-Based Estimation of Tension Stress in Steel Eyebars
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Vibration-Based Estimation of Tension Stress in Steel Eyebars

机译:基于振动的钢眼杆拉伸应力估计

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摘要

To support the repair and maintenance of steel eyebars in bridges, tension stresses are sometimes estimated from the observed member natural frequencies. Although the ends of such eyebars are often essentially fixed, a pin-ended model has typically been used to predict tensions because closed-form solutions do not exist for any other end conditions. An approximation that reflects vibrating stretched wires with fixed ends has also been used, but this still incurs considerable error at lower member slenderness and stress levels. To provide for better estimates of eyebar tensions from observed vibrations, this paper presents exact tabular solutions for determining the direct tension stress in undamped steel bars, generalized for any length or thickness, where both ends of the member are fixed or where one end is fixed and the other pinned. Approximation equations derived from these exact solutions are also developed. Examples demonstrate the application of these new tools and the potential increase in accuracy over the former methods.
机译:为了支持桥梁中钢眼杆的修理和维护,有时会根据观察到的构件固有频率来估算拉应力。尽管此类眼轴的端部通常基本上是固定的,但通常使用销端模型来预测张力,因为对于任何其他端部条件,都不存在封闭形式的解决方案。也已经使用了近似的方法来反映固定端的振动拉伸线材,但是在较低的构件细长度和应力水平下仍然会产生相当大的误差。为了从观察到的振动中更好地估计眼杆的拉力,本文提出了精确的表格解决方案,用于确定无阻尼钢筋中的直接拉应力,一般适用于任何长度或厚度,构件的两端均固定或一端固定的情况。另一个固定。还开发了从这些精确解导出的逼近方程。实例演示了这些新工具的应用以及与以前方法相比准确性的潜在提高。

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