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首页> 外文期刊>Autex Research Journal >Use of Taguchi Method and Grey Relational Analysis to Optimize Multiple Yarn Characteristics in Open-End Rotor Spinning
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Use of Taguchi Method and Grey Relational Analysis to Optimize Multiple Yarn Characteristics in Open-End Rotor Spinning

机译:Taguchi方法和灰色关联分析在开式转子纺丝中优化多纱特性

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The weavability limit and tightness for 2D and 3D woven fabrics is an important factor and depends on many geometric parameters. Based on a comprehensive review of the literature on textile fabric construction and property, and related research on fabric geometry, a study of the weavability limit and tightness relationships of 2D and 3D woven fabrics was undertaken. Experiments were conducted on a representative number of polyester and cotton woven fabrics which have been woven in our workshop, using three machines endowed with different insertion systems (rapier, projectiles and air jet). Afterwards, these woven fabrics have been analyzed in the laboratory to determine their physical and mechanical characteristics using air permeability-meter and KES-F KAWABATA Evaluation System for Fabrics. In this study, the current Booten’s weavability limit and tightness relationships based on Ashenhurst’s, Peirce’s, Love’s, Russell’s, Galuszynskl’s theory and maximum-weavability is reviewed and modified as new relationships to expand their use to general cases (2D and 3D woven fabrics, all fiber materiel, all yarns etc…). The theoretical relationships were examined and found to agree with experimental results. It was concluded that the weavability limit and tightness relationships are useful tools for weavers in predicting whether a proposed fabric construction was weavable and also in predicting and explaining their physical and mechanical properties.
机译:2D和3D机织织物的可编织极限和紧密度是一个重要因素,并取决于许多几何参数。在对纺织织物结构和性能的文献进行了综合综述以及有关织物几何形状的研究的基础上,对2D和3D机织织物的可编织极限和紧密度关系进行了研究。使用三台配有不同插入系统(剑杆,射弹和喷气机)的机器,对在我们车间中编织的代表性的聚酯和棉织织物进行了实验。然后,在实验室中对这些机织织物进行了分析,以确定其物理和机械性能,方法是使用透气度计和KES-F KAWABATA织物评估系统。在本研究中,基于Ashenhurst,Peirce,Love,Russell,Galuszynskl的理论和最大可编织性,对当前的Booten的可编织极限和紧密度关系进行了审查和修改,将其作为新的关系扩展到一般情况(2D和3D机织织物,所有纤维材料,所有纱线等)。研究了理论关系,发现与实验结果一致。结论是,可编织极限和紧密度关系是织造者用于预测拟议的织物结构是否可织造以及预测和解释其物理和机械性能的有用工具。

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