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Multi-functional Textiles for Military Applications.

机译:军用多功能纺织品。

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摘要

The objective of this research was to develop the standard rip-stop weave military uniform fabric made of 50/50 nylon/cotton (NyCo) to achieve a repellent front surface and an antibacterial bulk for protection from chemical-biological warfare agents. Diallyldimethylammonium chloride (DADMAC), a quaternary ammonium salt monomer was graft polymerized on NyCo fabric to impart antimicrobial capability using atmospheric pressure glow discharge plasma. Plasma was used to induce free radical chain polymerization of the DADMAC monomer to introduce a graft polymerized network on the fabric with durable antimicrobial properties. Pentaerythritol tertraacrylate was used as a cross-linking agent to obtain a highly cross-linked, durable polymer network. The presence of polyDADMAC on the fabric surface was confirmed using acid dye staining, SEM, and TOF-SIMS. Antibacterial performance was evaluated using standard AATCC test method 100 for both gram positive and gram negative bacteria. Results showed 99.9% reduction in the bacterial activities of K. pneumoniae and S. aureus.;To achieve repellency on NyCo front surface, an environmentally benign C6 fluorocarbon monomer, 2-(perfluorohexyl) ethyl acrylate was graft polymerized using plasma on the front surface of the NyCo fabric which was already grafted with polyDADMAC for anti-microbial properties. The surface was characterized by IR spectroscopy and XPS. The presence of fluorine on the surface was mapped and confirmed by TOF-SIMS. SEM images showed a uniform layer of fluorocarbon polymer on the fiber surface. High water contact angle of 144° was obtained on the surface. The surface also achieved a high AATCC Test Method 193 rating of 9 and AATCC Test Method 118 rating of 5, indicating that the surface could repel a fluid with surface tension as low as 24 dynes/cm.;Appropriate experimental designs and statistical modeling of data helped identify the experimental space and optimal factor combinations for best response. The study helped create a multi-functional fabric with an anti-bacterial bulk, hydrophilic back surface and repellent front surface for enhanced protective and aesthetic values.
机译:这项研究的目的是开发一种由50/50尼龙/棉(NyCo)制成的标准防撕裂编织军服面料,以实现驱虫性的前表面和抗菌性,从而免受化学生物战剂的侵害。使用大气压辉光放电等离子体,将季铵盐单体二烯丙基二甲基氯化铵(DADMAC)接枝聚合在NyCo织物上,以赋予其抗菌能力。血浆被用来诱导DADMAC单体的自由基链聚合,从而在织物上引入具有持久抗菌特性的接枝聚合网络。使用季戊四醇四丙烯酸季戊四醇酯作为交联剂以获得高度交联的耐用聚合物网络。使用酸性染料染色,SEM和TOF-SIMS确认了织物表面上存在polyDADMAC。使用标准AATCC测试方法100评估革兰氏阳性菌和革兰氏阴性菌的抗菌性能。结果显示肺炎克雷伯氏菌和金黄色葡萄球菌的细菌活性降低了99.9%。;为了在NyCo的前表面实现驱避作用,使用等离子体在前表面接枝聚合了一种环境友好的C6碳氟化合物,丙烯酸2-(全氟己基)乙酯NyCo织物的一部分,该织物已经嫁接了polyDADMAC,具有抗微生物特性。通过IR光谱和XPS对表面进行表征。通过TOF-SIMS绘制并确认了表面上氟的存在。 SEM图像显示纤维表面上均匀的碳氟聚合物层。在表面上获得了144°的高水接触角。该表面还达到了AATCC测试方法193和9的高等级,表明AATCC测试方法118的表面张力低至24达因/厘米,可以排斥液体;适当的实验设计和数据统计模型帮助确定实验空间和最佳因子组合以获得最佳响应。这项研究有助于创建一种多功能织物,该织物具有抗菌膨松度,亲水性背面和驱虫性前表面,从而具有增强的保护性和美学价值。

著录项

  • 作者

    Malshe, Priyadarshini.;

  • 作者单位

    North Carolina State University.;

  • 授予单位 North Carolina State University.;
  • 学科 Engineering Materials Science.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 191 p.
  • 总页数 191
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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