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首页> 外文期刊>Journal of Vibration and Acoustics >Influence of the Internal State of a Maxwell Damper on Free Critically Damped Vibrations
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Influence of the Internal State of a Maxwell Damper on Free Critically Damped Vibrations

机译:麦克斯韦阻尼器内部状态对自由临界振动的影响

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摘要

A Maxwell damper with a damper spring in series with a viscous dashpot is a more physical model than a viscous dashpot because the Maxwell damper models the elasticity of the connecting links of the viscous dashpot. The system of a main spring in parallel with a Maxwell damper is known as the standard linear solid (SLS) in viscoelasticity. The response of this SLS attached to a mass for standard initial value problems: displacement (nonzero displacement with zero velocity) and velocity (zero displacement with nonzero velocity) have been analyzed a few times in the literature. However, different authors present different conclusions about the importance of modeling the damper spring. None of these authors have explored the influence of the initial internal state of the damper spring. Here it is shown that the initial internal state of the damper spring can significantly influence the response for both displacement and velocity initial value problems.
机译:带有阻尼弹簧和粘性阻尼器串联的麦克斯韦阻尼器比粘性阻尼器更具物理模型,因为麦克斯韦阻尼器模拟了粘性阻尼器连接连杆的弹性。与麦克斯韦阻尼器平行的主弹簧系统被称为粘弹性的标准线性实体(SLS)。对于标准初始值问题,此SLS附着在质量上的响应:位移(位移为零,速度为零时的非零位移)和速度(位移为非零速度时,零位移)已在文献中进行了几次分析。但是,不同的作者对阻尼弹簧建模的重要性提出了不同的结论。这些作者都没有探讨阻尼弹簧初始内部状态的影响。在此显示,减震器弹簧的初始内部状态会显着影响位移和速度初始值问题的响应。

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