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首页> 外文期刊>The Journal of the Textile Institute >Mathematical model to predict vertical wicking profile of single weft knitted structure
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Mathematical model to predict vertical wicking profile of single weft knitted structure

机译:预测单纬编织结构垂直芯吸轮廓的数学模型

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摘要

Mathematical models has been proposed to predict the vertical wicking height in single weft knitted fabric considering two scales of capillary flow; macroscale capillary flow through capillaries formed between yarns in the fabric, and microscale capillary flow through capillaries formed with in yarn. Macroscale model has been developed based on the sinusoidal irregular capillary to predict wicking profile along the wale and course directions. Microscale capillary model was developed considering capillaries as tortuous stream tubes along the wale and along the course. Another model based on inclined tube capillary has been developed to predict the wicking along wale. Lambert function has been used to calculate wicking height at different intervals of time. Validation of theoretical results has been done with experimental results taking fabric knitted from polyester yarns. Three different levels of tightness and three different shape factors of filament have been taken in the experimental study and the significance of their effect has been evaluated using ANOVA. A good correlation has been found between theoretical and experimental results.
机译:已经提出了数学模型来预测考虑两个尺度的毛细流动的单纬针织物的垂直芯吸高度。宏观的毛细管流动通过在织物中的纱线之间形成的毛细管,微观的毛细管流动通过在纱线中形成的毛细管。基于正弦形不规则毛细管已开发了宏观模型,以预测沿纵行和航向的芯吸轮廓。微型毛细管模型的开发考虑了毛细管作为沿纵行和纵行的曲折流管。已经开发了另一种基于倾斜管毛细管的模型来预测沿纵行的芯吸。 Lambert函数已用于计算不同时间间隔的芯吸高度。用聚酯纱线编织的织物的实验结果已经对理论结果进行了验证。在实验研究中采用了三种不同程度的紧密度和三种不同形状的长丝,并使用ANOVA评估了其效果的重要性。在理论和实验结果之间发现了很好的相关性。

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