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块状聚合物材料中声发射对I、II和III型断裂区分的敏感性研究。

Investigation of the Sensitivity of Acoustic Emission to the Differentiation Between Mode I, II, and III Fracture in Bulk Polymer Materials.

作者信息

Shivaie Kojouri Ali, Aggelis Dimitrios G, Karami Javane, Sharma Akash, Van Paepegem Wim, Van Hemelrijck Danny, Kalteremidou Kalliopi-Artemi

机构信息

Department of Mechanics of Materials and Constructions (MeMC), Vrije Universiteit Brussel, B-1050 Brussels, Belgium.

Department of Materials, Textiles and Chemical Engineering, Ghent University, Technologiepark-Zwijnaarde 46, B-9052 Zwijnaarde, Belgium.

出版信息

Polymers (Basel). 2025 Jan 6;17(1):125. doi: 10.3390/polym17010125.

Abstract

There is very limited research in the literature investigating the way acoustic emission signals change when polymer materials are undergoing different fracture modes. This study investigates the capability of acoustic emission to recognize the fracture mode through acoustic emission parameter analysis, and can be considered the first-ever study which examines the impact of different loading conditions, i.e., fracture mode I, mode II, and mode III, on the acoustic emission parameters in polymer materials. To accomplish this, prism-like pre-cracked polymer specimens were tested under the three different fracture modes. Acoustic emission parameters appeared sensitive to the different loading conditions of the pre-cracked specimens, indicating that acoustic emission can be used to distinguish the three fracture modes in polymer materials. Both frequency and time parameters reflect changes in the stress states at the crack tip. The duration and rise time of the waveforms were found to be the most sensitive acoustic emission parameters for identifying the fracture mode, while the average frequency variation can be employed to differentiate between in-plane and out-of-plane fracture modes. In order to interpret the experimental results in relation to wave mechanics, numerical wave propagation simulations for longitudinal and shear excitations were performed to simulate tensile and shear fracture modes and the corresponding emitted waves. An interesting correlation between the experimental and numerical results exists, showcasing acoustic emission's potential for fracture identification.

摘要

文献中关于研究聚合物材料在不同断裂模式下声发射信号变化方式的研究非常有限。本研究通过声发射参数分析来研究声发射识别断裂模式的能力,可被视为首次考察不同加载条件(即I型、II型和III型断裂模式)对聚合物材料声发射参数影响的研究。为实现这一目标,对类似棱柱形的预制裂纹聚合物试样在三种不同断裂模式下进行了测试。声发射参数对预制裂纹试样的不同加载条件表现出敏感性,表明声发射可用于区分聚合物材料中的三种断裂模式。频率和时间参数均反映了裂纹尖端应力状态的变化。发现波形的持续时间和上升时间是识别断裂模式最敏感 的声发射参数,而平均频率变化可用于区分面内和面外断裂模式。为了从波动力学角度解释实验结果,进行了纵向和剪切激励的数值波传播模拟,以模拟拉伸和剪切断裂模式以及相应的发射波。实验结果与数值结果之间存在有趣的相关性,展示了声发射在断裂识别方面的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f80e/11722902/a718a6126153/polymers-17-00125-g001.jpg

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