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Effect of MVS process parameters on knitted fabric characteristics

机译:MVS工艺参数对针织物特性的影响

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Regression analysis of response surface has been used to evaluate the fabric samples made of 100% viscose vortex spun yarns on the basis of air permeability, ball bursting strength, abrasion resistance and fabric thickness. The experimental results reveal that the fabrics knitted with MVS yarns spun at higher yarn delivery speed exhibit lower air permeability. On the other hand, at higher yarn delivery speed, the air permeability of fabrics increases with the increase in nozzle pressure. But, at low yarn delivery speed, the air permeability shows opposite trend with the increase in nozzle pressure. Both ball bursting strength and thickness of MVS yarn fabrics initially decrease with the increase in nozzle air pressure of Murata vortex spinner and then increase. With the increasing yarn delivery speed, ball bursting strength exhibits an initial decrease followed by a rapid increase with further increase in yarn delivery speed, whereas thickness and abrasion resistance of these fabrics improve with the increase in yarn delivery speed. An increase in sliver hank enhances thickness, but has a deleterious effect on abrasion resistance of these fabrics.
机译:响应面的回归分析已用于基于透气性,球破裂强度,耐磨性和织物厚度来评估由100%粘胶涡流纺纱制成的织物样品。实验结果表明,以较高的出纱速度纺制的MVS纱线针织的织物透气性较低。另一方面,在较高的纱线输送速度下,织物的透气性随着喷嘴压力的增加而增加。但是,在较低的纱线输送速度下,透气度与喷嘴压力的增加呈相反的趋势。随着Murata涡旋纺丝机的喷嘴空气压力的增加,MVS纱线织物的破裂强度和厚度都开始降低,然后增加。随着纱线输送速度的增加,球的破裂强度呈现出最初的降低,随后随着纱线输送速度的进一步增加而迅速增加,而这些织物的厚度和耐磨性随着纱线输送速度的增加而改善。棉条的增加会增加厚度,但会对这些织物的耐磨性产生不利影响。

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