Amplitude-Energy Parameters of Acoustic Radiation with Composite Properties Changing and Mieses Destruction

Q4 Engineering
Sergii Filonenko, Anzhelika Stakhova
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引用次数: 0

Abstract

Abstract The main problem with using acoustic emission to control and diagnostics of composite materials and products from composite materials is the interpretation and identification of recorded information during development processes occurring in the material’s structure. This is due to the high sensitivity of the acoustic emission method to various influencing factorsand the practical absence of acoustic radiation models. To solve this problem, it is necessary to determine the influence of various factors on acoustic radiation parameters. In this study, based on the acoustic radiation developed model we simulate the influence of one parameter characterizing composite properties on acoustic emission energy parameters during composite material destruction by shear forces according to the von Mises criterion. Simulation of acoustic radiation under given conditions makes it possible to determine the patterns of acoustic emission signals energy parameters changes and their sensitivity to changes of influencing factor, as well as to obtain mathematical expressions for describing obtained patterns. The results of this case study can be useful for developing methods of control, monitoring and diagnostics of composite materials and products made from composite materials.
复合特性变化的声辐射幅能参数及噪声破坏
本文根据von Mises准则考虑了复合材料剪切破坏过程中表征复合材料性能的参数对声发射能量参数的影响。结果表明,所分析的参数增大,声辐射最大值和总能量呈非线性减小。结果表明,所得到的声发射信号的衰减、最大值和总能量的变化规律都可以用幂函数很好地描述。结果表明,声辐射对表征复合材料性能的参数变化最敏感的参数是声发射信号的总能量。确定声发射信号最大能量的减小在前面,使最大振幅减小;声发射信号总能量的减小在前面,使最大能量减小。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of Automation, Mobile Robotics and Intelligent Systems
Journal of Automation, Mobile Robotics and Intelligent Systems Engineering-Control and Systems Engineering
CiteScore
1.10
自引率
0.00%
发文量
25
期刊介绍: Fundamentals of automation and robotics Applied automatics Mobile robots control Distributed systems Navigation Mechatronics systems in robotics Sensors and actuators Data transmission Biomechatronics Mobile computing
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