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首页> 外文期刊>Journal of near infrared spectroscopy >Evaluating weavability in flax yarn using near infrared spectroscopy
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Evaluating weavability in flax yarn using near infrared spectroscopy

机译:使用近红外光谱法评估亚麻纱线的可编织性

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The manufacture of linen fabrics depends on maintaining quality whilst maximising weaving efficiency. Problems often arise due to loom stoppages which are brought about by breaks in the warp yarns. For years researchers have attempted to bring about a full understanding of the mechanisms responsible. It is clear that weavability in flax yarn is primarily affected by chemical composition and structure, this is turn is affected by various steps in the production chain. In the search for objective methods for assessing flax yarn properties, instrumental techniques such as derivative thermogravimetric analysis (DTG), tensile testing and regularity have been developed. This investigation describes an attempt to construct relationships between these instrumental parameters taken from a range of flax yarns and near infrared (NIR) spectroscopy using partial least squares (PLS) regression analyses. Calibrations with DTG peak 1 weight loss (r{sup}2 0.83), regularity of thin and thick spots (r{sup}2 0.82,0.81), nep counts (r{sup}2 0.82) and weaving breaks (r{sup}2 0.79) have all been produced. Using these relationships prediction equations for evaluating DTG peak 1 and 2 weight loss, regularity of thin spots on yarn and weaving performance (breaks per 10,000 picks) have been developed. These equations were validated using a blind set of flax yarn.
机译:亚麻织物的制造取决于在保持质量的同时最大化编织效率。问题通常是由于经纱断裂而导致织机停止而引起的。多年来,研究人员一直试图对负责的机制有一个全面的了解。显然,亚麻纱的可编织性主要受化学成分和结构的影响,而生产链中各个步骤的影响又反过来。在寻找评估亚麻纱线性能的客观方法时,已经开发了仪器技术,例如微分热重分析(DTG),拉伸测试和规律性。这项研究描述了一种尝试,通过使用偏最小二乘(PLS)回归分析来构造从一系列亚麻纱线和近红外(NIR)光谱中获取的这些仪器参数之间的关系。使用DTG峰值1失重(r {sup} 2 0.83),稀薄斑点和厚点的规律性(r {sup} 2 0.82,0.81),棉结计数(r {sup} 2 0.82)和织造断裂(r {sup)进行校准} 2 0.79)已全部生成。使用这些关系预测方程式来评估DTG峰1和2的失重,已开发出纱线上稀薄斑点的规律性和织造性能(每10,000个纬纱的断裂数)。这些方程式使用亚麻纱的盲法验证。

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