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Modeling, simulation, and validation of a pendulum‐pounding tuned mass damper for vibration control

机译:振动控制摆型调谐质量阻尼器的建模,仿真和验证

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This paper proposes a new passive control device, pendulum-pounding tuned mass damper (PPTMD), to mitigate the response of lightly damped structures under various excitations. The proposed PPTMD consists of a tuned pendulum mass and a pounding boundary next to the equilibrium position of the pendulum mass. Moreover, a layer of viscoelastic materials called high energy-dissipation rubber is attached on the pounding boundary to dissipate the vibration energy through impacts. A simplified impact force model was developed for modeling the pounding behavior of the high energy-dissipation rubber pounding layer, and parameters in the simplified model were identified from free pounding experiments. The validation of the numerical method to simulate the dynamic behavior of the PPTMD was provided. The effectiveness of the PPTMD to control a single degree-of-freedom structure was numerically and experimentally studied under free vibration and forced vibration. The effects of the frequency tuning ratio, the coefficient of restitution, the excitation force amplitude, and the mass ratio were studied, respectively. Finally, the control performance of the PPTMD was compared with the classic tuned mass damper under free vibration, forced vibration, and several earthquake records. It is shown that the PPTMD can significantly increase the damping ratio of the controlled structure and effectively reduce the response of the controlled structure around the resonant frequency range. Furthermore, the PPTMD still achieves considerable control performance even if the frequency of the controlled structure varied in a wide range. Due to the different vibration control mechanism, the PPTMD outperforms the classic resonant frequency range in controlling the structural displacement response.
机译:本文提出了一种新的被动控制装置,敲击调谐质量阻尼器(PPTMD),以减轻各种激励下轻微阻尼结构的响应。所提出的PPTMD包括调谐的摆锤质量和摆动柱状物质的平衡位置旁边的敲击边界。另外,粘弹性材料层附着在撞击边界上,以通过冲击散发振动能量。开发了一种简化的冲击力模型,用于建模高能耗散橡胶侵入层的冲击行为,并从自由敲击实验中鉴定了简化模型中的参数。提供了模拟PPTMD动态行为的数值方法的验证。 PPTMD控制单一自由度结构的有效性在自由振动和强制振动下进行了数值和实验研究。分别研究了频率调谐比,恢复系数,激发力幅度和质量比的影响。最后,将PPTMD的控制性能与在自由振动,强制振动和几种地震记录下的经典调谐质量阻尼器进行比较。结果表明,PPTMD可以显着提高受控结构的阻尼比,并有效地降低控制结构围绕谐振频率范围的响应。此外,即使受控结构的频率在宽范围内变化而变化,PPTMD也仍然实现了相当大的控制性能。由于不同的振动控制机构,PPTMD在控制结构位移响应时优于经典的谐振频率范围。

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