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Damage analysis of carbon nanofiber modified flax fiber composite by acoustic emission

机译:碳纳米纤维改性亚麻纤维复合材料的声发射损伤分析

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摘要

Fiber reinforced polymer (FRP) has received widespread attention in the field of civil engineering because of its superior durability and corrosion resistance. This article presents the damage mechanisms of a novelty composite called carbon nanofiber modified flax fiber polymer (CNF-modified FFRP). The ability of acoustic emission (AE) to detect damage evolution for different configurations of specimens under uniaxial tension was examined, and some useful AE characteristic parameters were obtained. Test results shows that the mechanical properties of modified composites are associated with the CNF content and the evenness of CNF dispersed in the epoxy matrix. Various damage mechanisms was established by means of scanning electron microscope images. The fruzy c-means clustering were proposed to classify AE events into groups representing different generation mechanisms. The classifiers are constructed using the traditional AE features -- six parameters from each burst. Amplitude and peak-frequency were selected as the best cluster-definition features from these AE parameters. After comprehensive comparison, a correlation between these AE events classes and the damage mechanisms observed was proposed.
机译:纤维增强聚合物(FRP)由于其卓越的耐久性和耐腐蚀性而在土木工程领域受到广泛关注。本文介绍了一种称为碳纳米纤维改性亚麻纤维聚合物(CNF改性FFRP)的新颖复合材料的破坏机理。检验了声发射(AE)在单轴拉伸下检测不同配置的试样损伤演变的能力,并获得了一些有用的AE特征参数。测试结果表明,改性复合材料的机械性能与CNF含量和分散在环氧基质中的CNF均匀度有关。通过扫描电子显微镜图像建立了各种损伤机理。提出了模糊c均值聚类,以将AE事件分为代表不同生成机制的组。使用传统的自动曝光功能构造分类器-每个突发有六个参数。从这些AE参数中,选择振幅和峰值频率作为最佳的群集定义特征。经过全面比较,提出了这些AE事件类别与观察到的破坏机制之间的相关性。

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