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Wicking behavior and antibacterial properties of multifunctional knitted fabrics made from metal commingled yarns

机译:金属混纺纱制成的多功能针织物的芯吸行为和抗菌性能

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In this study, stainless steel wires (SSWs) were selected as conductive filler to produce antibacterial nylon (AN)/crisscross-section polyester (CSP)/SSW multifunctional metal commingled yarns with hollow spindle spinning technique. All metal commingled yarns used AN and CSP yarns to wind around the SSW in the S- and Z-directions as the outer and inner wrap yarns, respectively. The wrapping density varied from 8.0 to 15.5 turns/cm, which exhibited an obvious influence on the tenacity and elongation of the commingled yarns. Metal composite knitted fabrics made from the commingled yarns were tested in terms of their horizontal wicking capability, drying rate, and surface resistivity properties. Results showed that knitted fabric KC-11 displayed the best horizontal wicking capability, drying rate, and surface resistivity values. To evaluate the effect of the layer number of knitted fabrics on comfort, the air permeability of the fabric KC-11 was also discussed. The air permeability decreased from 421.6 to 140 cm(3)/cm(2)/s, when the layer number increased from one layer to six layers. The antibacterial activity of the KC-11 sample was assessed against Staphylococcus aureus and Escherichia coli bacteria according to the AATCC 90-2011 standard method. The presence of the AN yarns in the metal composite knitted fabrics displayed an obvious inhibition zone for both types of bacteria, which can be attributed to the high antibacterial activity of organosilicon quaternary ammonium salt component.
机译:在这项研究中,选择不锈钢丝(SSWs)作为导电填料,以空心锭纺技术生产抗菌尼龙(AN)/横截面聚酯(CSP)/ SSW多功能金属复合丝。所有金属混合纱线均使用AN和CSP纱线分别沿SSW和Z方向围绕SSW缠绕,作为外部包裹纱线和内部包裹纱线。包裹密度在8.0至15.5匝/ cm之间变化,这对混纺纱线的强度和伸长率表现出明显的影响。测试了由混纺纱制成的金属复合针织物的水平芯吸能力,干燥速率和表面电阻率特性。结果表明,针织物KC-11表现出最佳的水平芯吸能力,干燥速率和表面电阻率值。为了评估针织物的层数对舒适性的影响,还讨论了织物KC-11的透气性。当层数从一层增加到六层时,透气性从421.6降低到140 cm(3)/ cm(2)/ s。根据AATCC 90-2011标准方法,评估KC-11样品对金黄色葡萄球菌和大肠杆菌的抗菌活性。金属复合针织物中AN纱线的存在对两种细菌均表现出明显的抑制区,这可归因于有机硅季铵盐组分的高抗菌活性。

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