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Towards an Understanding of the Transient Behavior of the Five-Parameter Iwan-Type Model

机译:了解五参数IWAN型模型的瞬态行为

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Mignolet (J Sound Vib 349:289-298, 2015) demonstrated mathematically that bis proposed five-parameter Iwan-type model weakens the coupling between the change in effective stiffness and change in effective damping of the model as vibration amplitude changes. Several experimental studies on bolted-joint structures have experienced difficulty in fitting a traditional Iwan model to match measurements, so this advantage is sorely needed. However, Mignolet's work only considered steady-state harmonic motion, and the stiction behavior of the internal sliders was not studied in great detail. In this work, the force-constitutive formulation of the five-parameter Iwan-type model is implemented computationally and then examined to understand its behavior in more general transient scenarios. The five-parameter model is found to have a complicated dependence on its displacement history. If the model reaches a maximum steady-state displacement after a ring-up response (such as occurs when the system is excited at resonance by a shaker), the stiffness and damping it exhibits is consistent with those formulated by Mignolet. When the vibration decays below the maximum-achieved displacement, however, the effective stiffness and damping revert to power-law behavior with amplitude. The power-law behavior is functionally similar to that of the four-parameter Iwan model (on which the five-parameter model is based), so the advantage of the weakened coupling between the stiffness and damping is lost in a ring-down response.
机译:Mignolet(J声音VIB 349:289-298,2015)在数学上展示,BIS提出的五参数IWan型模型削弱了有效刚度变化与模型的有效阻尼变化之间的耦合,作为振动幅度变化。关于螺栓连接结构的几项实验研究在拟合传统的IWAN模型中遇到困难以匹配测量,因此非常需要这种优势。然而,迈卡网的工作仅考虑了稳态谐波运动,并且内部滑块的哑铃行为没有详细研究。在这项工作中,五参数IWan型模型的力组成型制剂在计算上实施,然后检查以了解其在更通用的瞬态情景中的行为。发现五参数模型对其位移历史具有复杂的依赖性。如果该模型在敲响响应之后达到最大稳态位移(例如当系统通过振荡器以振荡器激发时),则其表现出的刚度和阻尼的刚度和阻尼是一致的,它与由迫使仪配制的那些。然而,当振动衰减低于最大达到的位移时,有效刚度和阻尼恢复到具有幅度的幂律行为。幂律行为在功能上类似于四参数IWAN模型(其中五参数模型为基础)的功能类似,因此在倒闭响应中丢失刚度和阻尼之间的磁化耦合的弱化的优点。

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