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Investigation of Modal Iwan Models for Structures with Bolted Joints

机译:用螺栓接头构造模态IWAN模型的调查

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Structures with mechanical joints are difficult to accurately model; even when the natural frequencies of the system remain essentially constant, the damping introduced by the joints is often observed to depend nonlinearly on amplitude. Although models for individual joints have been employed with some success, the modeling of a structure with many joints remains a significant obstacle. This work explores whether nonlinear damping can be applied in a modal framework, where instead of modeling each discrete joint within a structure, a nonlinear damping model is used for each mode of interest. This approach assumes that the mode shapes of the structure do not change significantly with amplitude and that there is negligible coupling between modes. The nonlinear Iwan joint model has had success in modeling the nonlinear damping of individual joints and is used as a modal damping model in this work. The proposed methodology is first evaluated by simulating a structure with a small number of discrete Iwan joints (bolted joints) in a finite element code. A modal Iwan model is fit to simulated measurements from this structure and the accuracy of the modal model is assessed. The methodology is then applied to actual experimental hardware with a similar configuration and a modal damping model is identified for the first few modes of the system. The proposed approach seems to capture the response of the system quite well in both cases, especially at low force levels when macro-slip does not occur.
机译:具有机械接头的结构难以精确模型;即使当系统的自然频率仍然恒定时,由关节引入的阻尼也会被观察到以非线性地依赖于幅度。尽管各个关节的模型已经取得了一些成功,但是具有许多关节的结构的建模仍然是一个重要的障碍。该工作探讨了非线性阻尼是否可以应用于模态框架中,而不是在结构内建模每个离散接头,则非线性阻尼模型用于每个感兴趣模式。该方法假设结构的模式形状不会随着幅度显着变化,并且模式之间存在可忽略不计的耦合。非线性IWan联合模型在建模各个关节的非线性阻尼方面取得了成功,并用作这项工作中的模态阻尼模型。首先通过在有限元码中模拟具有少量离散IWAN关节(螺栓连接)的结构来评估所提出的方法。模态IWAN模型适合模拟这种结构的测量,并评估模型模型的准确性。然后将方法应用于具有类似配置的实际实验硬件,并且识别模态阻尼模型以用于系统的前几种模式。拟议的方法似乎在两种情况下捕获了系统的响应,特别是当没有发生宏观滑移时的低力水平。

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