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首页> 外文期刊>Proceedings of the institution of mechanical engineers >Vibration absorbers for simply supported beams subjected to constant moving loads
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Vibration absorbers for simply supported beams subjected to constant moving loads

机译:振动吸收器,用于承受恒定移动载荷的简支梁

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摘要

Vibration suppression in simply supported beams traversed by constant moving loads is explored using linear vibration absorbers. Assuming the Euler-Bernoulli beam theory, the beam is modeled using its first ten modes. The problem is formulated in terms of dimensionless parameters to render the results generic which are obtained for a range of the beam modal damping ratios and the system mass ratio. The objective is to minimize the maximum beam displacement for all load speeds. It is shown that the optimal absorber is an undamped absorber which should be attached at a fixed location irrespective of the modal damping or mass ratios. The optimal stiffness ratio is calculated numerically and a convenient analytical expression is obtained by curve fitting the numerical results to a second-order polynomial. The maximum error between the analytical model and the numerical solution is found to be negligible. The results are validated through comparison with a numerical example which was considered in the literature.
机译:使用线性减振器研究了在恒定荷载作用下横穿的简单支撑梁中的振动抑制。假设Euler-Bernoulli光束理论,则使用其前十个模式对光束进行建模。根据无因次参数来表述问题,以使结果通用,该结果是针对一定范围的梁模态阻尼比和系统质量比而获得的。目的是使所有负载速度下的最大光束位移最小。结果表明,最佳吸收器是无阻尼吸收器,无论模式阻尼或质量比如何,都应将其安装在固定位置。通过数值计算最佳刚度比,并通过将数值结果与二阶多项式拟合得到方便的解析表达式。发现分析模型和数值解之间的最大误差可以忽略不计。通过与文献中考虑的数值示例进行比较来验证结果。

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