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VIBRATION AMPLITUDE AND FASTENER TORQUE DEPENDENCE OF DAMPING IN A JOINTED STRUCTURE

机译:铰接结构中阻尼的振动幅值和Fastner扭矩相关性

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摘要

The resonance frequency, stiffness, and damping of a structure with screws, bolts, or rivets is strongly influenced by the nonlinear interaction of connected faying surfaces. During the design phase of built-up systems, those system properties and their uncertainty must be understood to meet vibroacoustic design criteria. However, the frictional interaction of fastened joints is poorly understood, and hypotheses are still being made in an attempt to explain the causes of damping in fastened joints. Friction models that do exist either require onerous methods or are overly simplistic. To provide measured data to support future model development, this research uses experimental modal analysis and a time-domain approach to track damping via the ringdown of a pair of plates with a fastened joint with varying applied torques. Amplitude-dependent plots of the loss factor for several modes are provided, which represent the system better than their single-value counterparts. Frequency decrements due to increased fastener torque were less than one-half of a percent in the presented modes. Counterintuitively, increasing fastener torque in the experiment increased the loss factor and slightly reduced the resonance frequencies of the presented modes. Loss factors vary by 67-96%; in the case of the second mode, loss factor depends heavily on vibration amplitude.
机译:带有螺钉,螺栓或铆钉的结构的共振频率,刚度和阻尼受连接的搭接面的非线性相互作用的强烈影响。在组合式系统的设计阶段,必须了解这些系统属性及其不确定性,以符合振动声学设计标准。然而,对紧固接头的摩擦相互作用了解甚少,并且仍在进行假设以试图解释紧固接头阻尼的原因。确实存在的摩擦模型要么需要繁重的方法,要么过于简单。为了提供测量数据以支持未来的模型开发,本研究使用实验模态分析和时域方法,通过一对带有固定接头并具有不同施加扭矩的板的振铃来跟踪阻尼。提供了几种模式下损耗因子的幅度依赖图,它们比单值模型更好地代表了系统。在提出的模式中,由于增加的紧固件扭矩而导致的频率降低小于百分之一的一半。违反直觉,在实验中增加紧固件扭矩会增加损耗因子,并稍微降低所呈现模式的共振频率。损失系数相差67-96%;在第二种模式下,损耗因子在很大程度上取决于振动幅度。

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