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Nonlinear modulation methods of structural damage detection based on dissipative nonlinear effects

机译:基于耗散非线性效应的结构损伤检测的非线性调制方法

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The nonlinear vibro-acoustic response of solid samples containing quite a small amount of defects can be anomalously high in magnitude compared to the case of undamaged intact solids. Functional dependencies of the nonlinear effects often exhibit rather interesting behavior which cannot be explained by manifestations of conventional nonlinear elasticity or hysteretic nonlinearity of the material. In this paper, experimental evidences of another, essentially nonlinear-dissipative mechanism responsible for nonlinear vibro-acoustic interactions in defect-containing solids are presented. In particular, experimental results on nonlinearity-induced cross-modulation of a high-frequency (HF) f=15...30 kHz signal by a low-frequency (LF) F=20-60 Hz vibration in an aluminium plate with a small single crack are reported. Comparison with a reference sample (the identical plate without a crack) has proven that the presence of such a small defect can be easily detected due to its nonlinear manifestations. It is demonstrated that under proper choice of the sounding signal parameters, the effect level can be so pronounced that the amplitude of the modulation side-lobes originated due to the nonlinearity exceeds the amplitude of the fundamental harmonic of the HF signal. Similar modulation effects were observed in polycrystalline metal samples using a new variant of modulation technique exploited amplitude-modulated intensive HF excitation instead of the LF vibration used in the first experiment. Main features of the observed phenomena are pointed out, their physical explanation based on a nonlinear-dissipative mechanism is suggested and some simulation results are also presented.
机译:与未损坏的完整固体相比,含有少量缺陷的固体样品的非线性振动响应可能会异常高。非线性效应的功能依赖性通常表现出相当有趣的行为,这不能通过材料的常规非线性弹性或滞后非线性的表现来解释。在本文中,提出了另一种实质上是非线性耗散机制的实验证据,该机制负责在含缺陷的固体中进行非线性振动-声相互作用。特别是,在铝板中,由低频(LF)F = 20-60 Hz振动引起的高频(HF)f = 15 ... 30 kHz信号的非线性感应交叉调制的实验结果。小单裂纹有报道。与参考样品(相同的无裂纹板)的比较已证明,由于其非线性表现,可以很容易地检测出这种小的缺陷。已经证明,根据所述探测信号的参数的适当选择,效果电平可以如此显着,为非线性超过基本谐波的HF信号的振幅调制的旁瓣的幅度起源所致。在多晶金属样品中观察到了类似的调制效果,这是使用一种新的调制技术变体,该技术利用幅度调制的密集HF激励代替了第一个实验中使用的LF振动。指出了观测现象的主要特征,提出了基于非线性耗散机理的物理解释,并给出了一些仿真结果。

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