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Identification of the Destruction Process in Quasi Brittle Concrete with Dispersed Fibers Based on Acoustic Emission and Sound Spectrum

机译:基于声发射和声谱的分散纤维准脆性混凝土破坏过程识别

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摘要

The paper presents the identification of the destruction process in a quasi-brittle composite based on acoustic emission and the sound spectrum. The tests were conducted on a quasi-brittle composite. The sample was made from ordinary concrete with dispersed polypropylene fibers. The possibility of identifying the destruction process based on the acoustic emission and sound spectrum was confirmed and the ability to identify the destruction process was demonstrated. It was noted that in order to recognize the failure mechanisms accurately, it is necessary to first identify them separately. Three- and two-dimensional spectra were used to identify the destruction process. The three-dimensional spectrum provides additional information, enabling a better recognition of changes in the structure of the samples on the basis of the analysis of sound intensity, amplitudes, and frequencies. The paper shows the possibility of constructing quasi-brittle composites to limit the risk of catastrophic destruction processes and the possibility of identifying those processes with the use of acoustic emission at different stages of destruction.
机译:本文提出了一种基于声发射和声谱的准脆性复合材料破坏过程的识别方法。测试是在准脆性复合材料上进行的。样品由具有分散聚丙烯纤维的普通混凝土制成。确定了基于声发射和声谱识别破坏过程的可能性,并证明了识别破坏过程的能力。注意,为了准确地识别故障机制,有必要先分别识别它们。使用三维光谱和二维光谱来确定破坏过程。三维频谱可提供更多信息,从而可以在分析声音强度,振幅和频率的基础上更好地识别样本结构的变化。本文显示了构建准脆性复合材料以限制灾难性破坏过程风险的可能性,以及在破坏的不同阶段使用声发射识别这些过程的可能性。

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