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首页> 外文期刊>Journal of Sound and Vibration >Vibration-based estimation of boundary stiffness and axial tension in beams using added mass
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Vibration-based estimation of boundary stiffness and axial tension in beams using added mass

机译:基于振动的基于振动估计和使用额外的梁梁梁轴张力

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Boundary stiffness and axial tension for a uniform Euler-Bernoulli beam model can be estimated by applying non-linear Gauss regression to measured natural frequencies. However, there are two major drawbacks in this method: it requires many measured natural frequencies to obtain reliable estimates, and for a lengthwise uniform beam cross-section, the boundary stiffness parameters may converge to swapped boundaries without mode shape measurements. This work suggests a simple novel concept to overcome these shortcomings: By attaching an external boundary mass with rotational inertia to one end of the beam, the natural frequencies will change without changing the boundary stiffness and axial tension. Combined with measurements without additional mass, this provides additional information to be used in a regression model, without imposing more unknown parameters: The mass adds a known asymmetry, permitting a distinction between left and right, and for each added mass the number of measured natural frequencies needed to obtain a reliable estimate is roughly halved. Estimation of boundary stiffness and axial tension can be of interest in, e.g., bolted joints. A tightened bolt can be modeled as a beam, with unknown boundary parameters, where the main interest often would be to estimate the axial tension. Previously, an estimation method would be hard to apply in practice, as bolts are often mounted in complex structures with many interacting modes, making it difficult to measure many transverse natural frequencies of the bolt itself. By adding a mass, the method can potentially be applicable for estimating tension in bolted joints. The proposed method is validated using simulated noisy measurement data and tested with experimental measurements obtained for a real bolt tightened in a structure. (C) 2020 Elsevier Ltd. All rights reserved.
机译:通过将非线性高斯回归施加到测量的自然频率,可以估计均匀欧拉伯努利光束模型的边界刚度和轴向张力。然而,在该方法中存在两种主要缺点:它需要许多测量的自然频率来获得可靠的估计,并且对于纵向均匀的光束横截面,边界刚度参数可以收敛到没有模式形状测量的换边界。这项工作表明了一种简单的新颖概念来克服这些缺点:通过将外界边界质量与旋转惯性附接到光束的一端,在不改变边界刚度和轴向张力的情况下,自然频率将改变。结合没有额外质量的测量值,这提供了在回归模型中使用的附加信息,而不会施加更多未知的参数:质量增加了已知的不对称性,允许左右的区别,并且对于每个添加的质量,额外的质量获得可靠估计所需的频率大致减半。边界刚度和轴向张力的估计可能是有意义的,例如螺栓接头。拧紧的螺栓可以被建模为光束,具有未知的边界参数,其中主要兴趣通常是估计轴向张力。以前,估计方法是难以在实践中施加的,因为螺栓通常安装在具有许多相互作用模式的复杂结构中,使得难以测量螺栓本身的许多横向自然频率。通过增加质量,该方法可能适用于估计螺栓接头中的张力。使用模拟噪声测量数据进行验证所提出的方法,并用真实螺栓在结构中收紧的实验测量测试。 (c)2020 elestvier有限公司保留所有权利。

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