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Experimental investigation of modulation effects for contact-type interfaces in vibro-acoustic modulation tests

机译:振动声调制试验中接触式界面调制效应的实验研究

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摘要

This study is an experimental research on non-linear effects occurring in vibro-acoustic modulation tests. The work focuses on the analysis of the modulation type. The modulation of the response signal is due to interaction between low- and high-frequency excitation and damage surfaces, which results in the formation of higher harmonics and sidebands. The analysis of the sidebands is an extremely important issue. Their presence may indicate damage in structure. In many cases, the sidebands can be used to determine the damage index. However, not always, the distribution of the sidebands and their evaluation with excitation amplitude allow for an unambiguous interpretation. This may be the result of various damage-related non-linearity sources, which depend on the amplitude of the excitation. Because different types of non-linearities are manifested in different ways, the change in non-linearity type can cause, for example, the disappearance of odd sidebands and/or even harmonics or change in modulation type. To analyse the indicated issues, the sample with prepared contact surfaces was tested in experimental works. Two excitation types, low and high frequencies, are introduced into the structure via electromagnetic shaker and piezoelectric transducer, respectively, to produce contact-related non-linear effects. The contact surfaces are driven to move relative to each other. For a given scenario, the analysis of modulation sidebands is performed based on signal response. The instantaneous frequency approach is used to evaluate modulation type. The results show that the changes in the amplitude of the excitation change the modulation type of response signal. The probable causes of this phenomenon are given.
机译:该研究是在振动声调制试验中发生的非线性效应的实验研究。工作侧重于调制类型的分析。响应信号的调制是由于低频和高频激励和损坏表面之间的相互作用,这导致更高的谐波和边带的形成。对边带的分析是一个非常重要的问题。他们的存在可能表明结构损坏。在许多情况下,可以使用边带来确定损坏索引。然而,并不总是,通过激励幅度分布边带的分布及其评估允许明确的解释。这可能是各种损坏相关的非线性源的结果,这取决于激发的幅度。因为以不同方式表现出不同类型的非线性,所以非线性类型的变化可能导致例如奇数边带和/或甚至谐波或调制类型的变化的消失。为了分析所指示的问题,在实验工程中测试了具有制备的接触表面的样品。通过电磁振动器和压电传感器分别引入结构的两个励磁类型,低频和高频率,以产生与接触相关的非线性效果。接触表面被驱动以相对于彼此移动。对于给定的场景,基于信号响应执行调制边带的分析。瞬时频率方法用于评估调制类型。结果表明,激励幅度的变化改变了响应信号的调制类型。给出了这种现象的可能原因。

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