连续介质微结构动载荷下声发射信号的分析与处理

P. Louda, A. Sharko, D. Stepanchikov, A. Sharko
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引用次数: 0

摘要

研究了声发射信号在两种连续介质共轭处传播的边界问题。提出了一种具有单点显影缺陷的两层连续介质的模型,其形式是由弹性键连接的线性原子链。选取介质中颗粒的力和位移作为主要变量。用格林函数和傅里叶变换证明了共轭介质中边值问题的解。结果表明,声发射的能谱完全由材料的力常数和引起声发射信号出现的力决定。对于两层介质,金属和复合涂层,发现每种材料在弯曲过程中产生的声发射信号的性质存在显着差异。这一特性使得在相关环境中分别识别和预测每种材料的状态成为可能。本文给出了具有内部结构缺陷的共轭连续介质系统运动方程的解,使我们能够对弹性能微分算子及其本征值展开进行谱分析。声学信号能谱理论模型的实验验证表明,研究结果可用于预测材料在载荷作用下的破坏程度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analysis and Processing of Acoustic Emission Signals Under Dynamic Loading of the Microstructure of Continuous Media
The boundary problem of the propagation of acoustic emission signals at the conjugation of two continuous media is considered. A model of a two-layer continuous medium in the form of a chain of linear atoms connected by elastic bonds with a single-point developing defect is proposed. The force and displacement of the particles of the medium were chosen as the main variables. The solution of the boundary value problem in conjugate media using the Green's function and the Fourier transform is substantiated. It is shown that the energy spectrum of an acoustic emission is completely determined by the forc constants of materials and the forces initiating the appearance of acoustic emission signals. For a two-layer medium, a metal and a composite coating, significant differences were found in the nature of the acoustic emission signals arising in each material during bending. This feature makes it possible to separately identify and predict the state of each material in the associated environment. The presented solution of the equation of motion of a system of conjugated continuous media with the development of internal structural defects allows one to perform a spectral analysis of the differential operators of elastic energy and their expansion in terms of eigenvalues. Experimental verification of the proposed theoretical model of the energy spectrum of acoustic signals showed that the results of the study can be used to predict the degree of destruction of materials under loading.
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