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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part C. Journal of mechanical engineering science >Design and performance analysis of a nonlinear energy sink attached to a beam with different support conditions
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Design and performance analysis of a nonlinear energy sink attached to a beam with different support conditions

机译:附在不同支撑条件下的梁的非线性能量沉的设计与性能分析

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摘要

In this work, design and performance analysis of a nonlinear energy sink, attached to a beam (the primary system) with different support conditions, will be investigated. Here, the effects of both beam properties and external shock excitation are studied. For this purpose, equations of motion are derived by the Lagrange method. Then, parameters of the nonlinear energy sink are optimized by both sensitivity analysis and particle swarm optimization method. The results show that, increasing the first natural frequency of the primary system, on which an external impulse is imposed, will postpone the nonlinear energy sink activation. Also, increasing the amplitude of the shock excitation will tend to decrease the optimum value of the nonlinear energy sink stiffness. Using the particle swarm optimization method to obtain the optimized parameters of the nonlinear energy sink and its interaction with the primary system, which is a continuous one, is a new research area presented in this work.
机译:在这项工作中,将研究附着在具有不同支撑条件的梁(主系统)上的非线性能量宿的设计和性能分析。在此,研究了梁特性和外部激振的影响。为此,通过拉格朗日方法导出运动方程。然后,通过灵敏度分析和粒子群优化方法对非线性能量宿的参数进行优化。结果表明,增加施加外部脉冲的初级系统的第一个固有频率将推迟非线性能量吸收器的激活。同样,增加激振的幅度将趋于降低非线性能量宿刚度的最佳值。使用粒子群优化方法获得非线性能量汇的优化参数及其与连续系统的相互作用,是该工作的一个新研究领域。

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