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Development of Oxygen-Plasma-Surface-Treated UHMWPE Fabric Coated with a Mixture of SiC/Polyurethane for Protection against Puncture and Needle Threats

机译:涂有氧/等离子体-表面处理的UHMWPE织物的涂层,该织物涂覆有SiC /聚氨酯混合物以防止刺穿和针刺威胁

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Although considerable research has been directed at developing materials for ballistic protection, considerably less has been conducted to address non-firearm threats. Even fewer studies have examined the incorporation of particle-laden elastomers with textiles for spike, knife, and needle protection. We report on a new composite consisting of ultra-high-molecular-weight polyethylene (UHMWPE) fabric impregnated with nanoparticle-loaded elastomer, specifically designed for spike- and needle-resistant garments. Failure analysis and parametric studies of particle-loading and layer-count were conducted using a mixture of SiC and polyurethane at 0, 30, and 50 wt.%. The maximum penetration resistance force of a single-layer of uncoated fabric increased up to 218–229% due to nanoparticle loading. Multiple-layer stacks of coated fabric show up to 57% and 346% improvement in spike puncture and hypodermic needle resistance, respectively, and yet were more flexible and 21–55% thinner than a multiple-layer stack of neat fabric (of comparable areal density). We show that oxygen-plasma-treatment of UHMWPE is critical to enable effective coating.
机译:尽管已经进行了大量研究以开发用于弹道防护的材料,但为解决非火器威胁所做的工作却很少。很少有研究研究将掺有颗粒的弹性体与纺织品结合在一起以保护刺,刀和针。我们报告了一种新型复合材料,该复合材料由浸渍有纳米颗粒的弹性体浸渍的超高分子量聚乙烯(UHMWPE)织物组成,专门用于耐尖刺和针刺服装。使用SiC和聚氨酯的重量百分比为0、30和50的混合物进行了失效分析以及颗粒载荷和层数的参数研究。由于纳米颗粒的负载,单层无涂层织物的最大抗穿透力提高到218–229%。多层涂层织物分别显示出刺穿和皮下注射针刺阻力分别提高了57%和346%,但比纯净织物的多层堆叠(具有可比的面积)具有更大的柔韧性和21-55%的厚度密度)。我们表明,UHMWPE的氧等离子体处理对于实现有效涂层至关重要。

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