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Rapid and Nondestructive Identification of Different Pure Yarn Fabrics Based on Near Infrared Spectroscopy

机译:基于近红外光谱法的不同纯纱织物的快速和无损鉴定

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Near infrared spectroscopy combined with chemometrics analysis were investigated as an emerging method for the identification of textiles, this method allowed straightforward and rapid testing of textiles without destroying their integrity compared to traditional testing methods such as dissolution method, combustion method and microscope observation. In this work, different pretreating algorithms coupled with the Soft Independent Modelling by Class Analogy (SIMCA) have been studied to achieve the best recognition model to identify different pure yarn fabrics (cotton, linen, silk, wool and polyester). Results showed that little difference between different data points smoothing. Percentages of recognition and rejection of 100% were obtained of silk, wool and polyester by pretreating with Savitzky-Golay 7 data points smoothing, Savitzky-Golay second derivative and mean centering. The percentages of recognition were 93.75% and 96.25% for cotton and linen respectively by pretreating with Savitzky-Golay 7 data points smoothing, Savitzky-Golay first derivative and mean centering, nevertheless, the percentage of rejection was low for linen with 83.75%. The results from this paper suggested that near infrared spectroscopy in combination with SIMCA could be applied to the identification of pure yarn fabrics, whereas further study should be made to improve the rejection rate of linen.
机译:研究近红外光谱与化学计量分析相结合,作为识别纺织品的新出现方法,这种方法允许纺织品的直接和快速的测试,而不会破坏其与传统测试方法等溶解方法,燃烧方法和显微镜观测的完整性。在这项工作中,已经研究了通过类比(SIMCA)的不同预处理算法耦合,以实现最佳识别模型以识别不同的纯纱面料(棉,亚麻,丝绸,羊毛和聚酯)。结果表明,不同数据点平滑之间的差异很小。通过使用Savitzky-Golay 7数据点平滑,Savitzky-Golay第二衍生物和平均定心来获得丝绸,羊毛和聚酯的100%的估计和拒绝百分比获得100%的百分比。棉花和亚麻的识别百分比分别通过预处理,棉花和亚麻分别用Savitzky-Golay 7数据点平滑,Savitzky-Golay首次衍生和平均定心为96.25%,仍然是抑制率低,亚麻含量为83.75%。本文的结果表明,可以将近红外光谱与SIMCA组合应用于纯纱织物的识别,而进一步的研究应进行进一步的研究以提高亚麻衬里的排斥率。

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