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Development and Characterisation of Nonwoven Fabrics for Apparel Applications

机译:服装用非织造布的开发与表征

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The cost of making apparel fabrics for garment manufacturing is very high because of their conventional manufacturing processes and new methods/processes are being constantly developed for making fabrics by unconventional methods. With the advancements in technology and the availability of the innovative fibre, durable nonwoven fabrics by using the hydroentanglement process that can compete with the woven fabrics in terms of their aesthetic and tensile properties are being developed. In the work reported here, the hydroentangled nonwoven fabrics were developed through a hybrid nonwoven manufacturing processes by using fibrillated Tencel? and bi-component (sheath/core) polyethylene/polyester (PE/PET) fibres, in which the initial nonwoven fabrics were prepared by the needle-punching method followed by hydroentanglement process carried out at optimal pressures of 50 to 250 bars. The prepared fabrics were characterised according to the British Standards (BS 3356:1990, BS 9237:1995, BS 13934-1:1999) and the attained results were compared with those for a standard plain-weave cotton, polyester woven fabric and commercially available nonwoven fabric (Evolon?). The developed hydroentangled fabrics showed better drape properties owing to their flexural rigidity of 252 mg.cm in the MD, while the corresponding commercial hydroentangled fabric displayed a value of 1340 mg.cm in the MD. Tensile strength of the developed hydroentangled fabrics showed an approximately 200% increase than the commercial hydroentangled fabrics. Similarly, the developed hydroentangled fabrics showed higher properties in term of air permeability, such as the developed hydroentangled fabric exhibited 448 mm/sec and Evolon fabric exhibited 69 mm/sec at 100 Pa pressure. Thus for apparel fabrics, the work combining the existing methods of nonwoven production, provides additional benefits in terms of cost, time and also helps in reducing the carbon footprint for the apparel fabric manufacture.
机译:由于用于服装制造的服装织物的常规制造工艺,并且用于通过非常规方法制造织物的新方法/工艺不断被开发,因此制造服装织物的成本非常高。随着技术的进步和创新纤维的可用性,正在开发通过使用水力缠结工艺能够在机织织物的美学和拉伸性能方面与机织织物竞争的耐用无纺布。在本文报道的工作中,水刺缠结非织造布是通过使用原纤化的Tencel®混合非织造布生产工艺开发的。以及双组分(皮/芯)聚乙烯/聚酯(PE / PET)纤维,其中最初的非织造布是通过针刺法制备的,然后在50至250 bar的最佳压力下进行水力缠结工艺。根据英国标准(BS 3356:1990,BS 9237:1995,BS 13934-1:1999)对制备的织物进行表征,并将获得的结果与标准平纹棉,聚酯机织织物和市售织物进行比较无纺布(Evolon?)。所开发的水力缠结织物由于在MD上具有252mg.cm的抗弯刚度而显示出更好的悬垂性,而相应的市售水力缠结织物在MD上具有1340mg.cm的值。所开发的水力缠结织物的拉伸强度显示出比市售水力缠结织物高约200%。类似地,开发的水刺织物在透气性方面显示出更高的性能,例如,在100Pa的压力下,开发的水刺织物表现出448mm / sec,Evolon织物表现出69mm / sec。因此,对于服装织物,结合现有非织造布生产方法的工作在成本,时间方面提供了额外的好处,并且还有助于减少服装织物制造中的碳足迹。

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