Explore the Influence of CFRP Surface Woven Fabric on Nonlinear Acoustic Detection

IF 0.9 4区 材料科学 Q4 MATERIALS SCIENCE, CHARACTERIZATION & TESTING
Jiawei Yu, Wei Liang, Liang Chen, Xudong Tu, Mingzhi Wei
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Abstract

While woven fabric is integral to carbon fiber reinforced polymer (CFRP) plates manufacturing, there has been a notable absence of research focused on the nonlinear detection of CFRP woven fabric. This article employs nonlinear acoustic methods to assess the response of CFRP plates, including unwoven, twill weave, and plain weave structures, to surface microcrack damage. A set of air-coupled nonlinear ultrasonic automatic detection systems was designed to acquire the amplitudes of the fundamental frequency and the second harmonic in the received signal, enabling the calculation of relative nonlinear parameters. Furthermore, the nonlinear cumulative effect was verified by varying the propagation distance. The experimental results highlight the significant influence of woven fabric on the outcomes of nonlinear acoustic testing. Specifically, the nonlinear response of unwoven CFRP to microcracks is the most pronounced, followed by twill weave CFRP plates. Notably, plain weave CFRP can significantly hinder the effectiveness of nonlinear acoustic detection. In cases where CFRP plates are loaded with such woven fabric, there is a potential for lower relative nonlinear parameters when damaged compared to their healthy state.

Abstract Image

探讨CFRP表面织物对非线性声学检测的影响
机织织物是碳纤维增强聚合物(CFRP)板材制造中不可或缺的组成部分,但对CFRP机织织物非线性检测的研究却十分缺乏。本文采用非线性声学方法评估CFRP板(包括无纺布、斜纹和平纹编织结构)对表面微裂纹损伤的响应。设计了一套空气耦合非线性超声自动检测系统,采集接收信号中的基频幅值和二次谐波幅值,计算相关非线性参数。此外,通过改变传播距离验证了非线性累积效应。实验结果表明,机织物对非线性声学测试结果有显著影响。其中,非织造碳纤维布对微裂纹的非线性响应最为明显,其次是斜纹编织碳纤维布。值得注意的是,平纹CFRP会显著阻碍非线性声学检测的有效性。在CFRP板加载这种机织织物的情况下,与健康状态相比,受损时相对非线性参数可能更低。
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来源期刊
Russian Journal of Nondestructive Testing
Russian Journal of Nondestructive Testing 工程技术-材料科学:表征与测试
CiteScore
1.60
自引率
44.40%
发文量
59
审稿时长
6-12 weeks
期刊介绍: Russian Journal of Nondestructive Testing, a translation of Defectoskopiya, is a publication of the Russian Academy of Sciences. This publication offers current Russian research on the theory and technology of nondestructive testing of materials and components. It describes laboratory and industrial investigations of devices and instrumentation and provides reviews of new equipment developed for series manufacture. Articles cover all physical methods of nondestructive testing, including magnetic and electrical; ultrasonic; X-ray and Y-ray; capillary; liquid (color luminescence), and radio (for materials of low conductivity).
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