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Response of a multi-degree-of-freedom system with a pounding vibration neutralizer to harmonic and random excitation

机译:一种多程度自由度系统与敲击振动中和器的响应,以谐波和随机励磁

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Exact steady-state solutions are obtained for the motion of a multi-degree-of-freedom system (MDOF) that is provided, at an arbitrary location within the primary structure, with a highly-nonlinear auxiliary mass damper which resembles a conventional linear dynamic vibration neutralizer (DVN) whose relative motion with respect to the primary system is constrained to remain within a specified gap, thus operating as a "pounding DVN." This configuration of a conventional DVN with motion-limiting stops could be quite useful when a primary structure with a linear DVN is subjected to transient loads (e.g., earthquakes) that may cause excessive relative motion between the auxiliary and primary systems. Under the assumption that the motion of the composite nonlinear MDOF system under harmonic excitation is undergoing steady-state motion with two symmetric impacts per period of the excitation, an exact, closed-form solution is obtained for the motion of the MDOF as well as the nonlinear damper. This solution is subsequently used to develop an approximate analytical procedure to estimate the stationary response of the pounding DVN when subjected to random excitation with white spectral density and Gaussian probability distribution. Since the vibration control effectiveness of auxiliary mass dampers, whether linear or not, deteriorates considerably when dealing with transient dynamic loads, an extensive investigation is provided for assessing the influence and interaction effects of the major nonlinear system parameters, so as to provide useful guidelines for quantifying the tradeoffs in selecting a suitable strategy to enhance the mitigation capabilities of the subject class of dampers, under stationary as well as nonstationary deterministic and random dynamic environments. (c) 2020 Elsevier Ltd. All rights reserved.
机译:用于在主要结构内的任意位置处提供的多程度自由度系统(MDOF)的运动来获得精确的稳态解决方案,其具有高度非线性辅助质量阻尼器,其类似于传统的线性动态相对运动相对于主系统的振动中和器(DVN)被约束为保持在特定间隙内,因此操作为“敲击DVN”。当具有线性DVN的主要结构经受可能导致辅助和主系统之间的过度相对运动的瞬态负载(例如,地震)时,具有运动限制停止的传统DVN的这种配置非常有用。在假设中,在谐波激发下的复合非线性MDOF系统的运动经历稳态运动,每周两个对称的冲击发生两个对称的冲击,可以获得精确的闭合形式的溶液,用于MDOF的运动以及非线性阻尼器。随后使用该解决方案来开发近似分析过程,以估计当经受白谱密度和高斯概率分布的随机激发时倾斜DVN的静止响应。由于辅助质量阻尼器的振动控制效能,无论是线性的,如果在处理瞬态动态载荷时会显着恶化,则提供了广泛的研究,用于评估主要非线性系统参数的影响和交互影响,以提供有用的指导原则在稳定性以及非间断确定性和随机动态环境下,量化选择合适的策略来选择合适的策略,以提高阻尼器的主题类的缓解能力。 (c)2020 elestvier有限公司保留所有权利。

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