Porosity and thermal resistance properties of needle-punched nonwovens cotton and polyester

M. T. A. Al-Hakimi, A. Hani, G. Didi, N. A. A. Amirah
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引用次数: 3

Abstract

Cotton and polyester nonwovens fabricated using needle-punching technology have shown potential mechanical and physical attributes for diverse applications. A proper understanding is required to understand the fabric properties such as physical and thermal properties in designing fabric. Hence, this project will focus on the nonwovens fabric from different fiber (cotton and polyester). Nonwoven samples were produced by needle-punched nonwoven machine varying the number of stacking layers. The fabrics were stacked in 2 and 4 plies. The tests conducted include areal density, thickness, porosity percentage, and thermal resistance. The results showed that the porosity percentage of cotton nonwovens was higher than polyester nonwovens. The increment of the stacking layer affects the thermal resistance performance by further increasing thermal resistance. The thermal resistance of Polyester nonwovens was found better than the Cotton nonwovens.
针刺棉和涤纶非织造布的孔隙率和耐热性
用针刺技术制备的棉和聚酯非织造布显示出潜在的机械和物理特性,具有广泛的应用前景。在设计织物时,需要对织物的物理性能和热性能有一个正确的认识。因此,该项目将重点关注不同纤维(棉和聚酯)的非织造织物。利用针刺非织造机,改变堆叠层数,制备非织造样品。这些织物以2层和4层堆叠。进行的测试包括面密度、厚度、孔隙率和热阻。结果表明,棉非织造布的孔隙率高于聚酯非织造布。堆积层的增加通过进一步增加热阻来影响热阻性能。涤纶非织造布的耐热性优于棉非织造布。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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