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Progressive failure analysis of thermoplastic PE/PE composites: Labeling of clustered AE signals

机译:热塑性PE / PE复合材料的渐进式故障分析:集群AE信号的标记

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Thermoplastic self-reinforced polyethylene (PE/PE) composites were tested under quasi-static tensile load and the failure processes were monitored by Acoustic Emission (AE) technique. The AE signals were collected and clustered by Unsupervised Pattern Recognition (UPR) scheme. The initiation and progression of the damage mechanisms in the composites can then be reviewed by the cumulative AE hits of each cluster versus strain curves. But the labeling of each cluster is crucial to the failure analysis. The paper focuses on this correlating between the obtained clusters and their specific damage modes. This was carried out by waveform visualization and Fast Fourier Transform analysis. Pure resin and fiber bundles were tested to assist in the labeling of signal classes in the composites (90°, 0° and [±45°] specimens). Typical waveforms of matrix cracking, fiber-matrix debonding, fiber fracture and fiber pullout were indentified respectively. The evolution process of various damage mechanisms in the composites revealed that the correlating method was effective. An objective and repeatable analytical procedure is established for the investigation of progressive failure mechanisms in the thermoplastic composites.
机译:在准静态拉伸载荷下测试热塑性自增强聚乙烯(PE / PE)复合材料,通过声发射(AE)技术监测失效过程。通过无监督模式识别(UPR)方案收集AE信号并聚集。然后可以通过每个簇的累积AE命中对复合材料中的损伤机制的启动和进展进行审查。但每个簇的标签对于故障分析至关重要。本文重点介绍所获得的簇与其特定损坏模式之间的相关性。这是通过波形可视化和快速傅里叶变换分析进行的。测试纯树脂和纤维束,以帮助在复合材料中的信号类(90°,0°和[±45°]标本中标记)。典型的基质裂解,纤维 - 基质剥离,纤维骨折和纤维拉伸分别粘附。复合材料中各种损伤机制的演化过程揭示了相关方法是有效的。建立了一种目标和可重复的分析程序,用于调查热塑性复合材料中的渐进式破坏机制。

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