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Spectral Characteristics of Acoustic Emission in Carbon Fiber-Reinforced Composite Materials Subjected to Cyclic Loading

机译:碳纤维增强复合材料在循环载荷作用下的声发射光谱特性

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The article is devoted to the investigation of the spectral characteristics of acoustic emission signals that appear under various schemes of composite materials loading. The tests involved samples of composites reinforced with layers sheets of carbon fiber fabric and dispersed carbon fibers. Based on the results of laboratory tests, a comparison is made between the traditional parameters of acoustic emission and the complete spectrograms of the acoustic emission response developed with the use of a special algorithm. The relationship between the emission activity and the change in the spectral composition of emission hits is shown. For example, for some composites, the acoustic emission memory effect (Kaiser effect) manifests itself not only in the time domain but also in the spectral domain in a form of a sharp change in the amplitudes in the frequency range 130/150 kHz. Also, when the samples were loaded according to the Brazilian scheme, the presence of the so-called “inverse” Kaiser effect is observed, in which the memory carrier “remembers” the previously experienced level of tensile stresses and reproduces this information during subsequent unloading. Such effect manifests itself in the form of a sharp change in the amplitudes in the low-frequency region of the spectrum.
机译:本文专门研究在复合材料加载的各种方案下出现的声发射信号的频谱特性。测试涉及用碳纤维织物和分散的碳纤维层片增强的复合材料样品。根据实验室测试的结果,比较了传统的声发射参数和使用特殊算法开发的声发射响应的完整频谱图。显示了发射活性与发射命中的光谱成分变化之间的关系。例如,对于某些复合材料,声发射记忆效应(Kaiser效应)不仅在时域中表现出来,而且在频谱域中也表现出在130/150 kHz频率范围内振幅的急剧变化。同样,当按照巴西方案装载样品时,会观察到所谓的“反向” Kaiser效应,其中存储载体“记忆”先前经历的拉应力水平,并在随后的卸载过程中重现此信息。这种效应以频谱的低频区域中振幅的急剧变化的形式表现出来。

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