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Experimental analysis of the impact protection properties for Kevlar (R) fabrics under different orientation layers and non-Newtonian fluid compositions

机译:不同取向层和非牛顿流体组合物下凯夫拉(R)织物冲击保护性能的实验分析

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Use of colloidal silica suspensions impregnated in Kevlar (R) fabrics is new avant-garde of protection equipment for stab wounds and piercing objects. Kevlar (R) fabrics impregnated with non-Newtonian fluids have been used for protection against sharp blows, mainly due to their lightweight, good flexibility, and superior resistance properties. The aims of this investigation are to demonstrate that Kevlar (R) fabric impregnated with shear thickening fluids could be improved its performance through the use Aminopropyltrimethoxysilane, as well as by increasing the concentration of silica nanoparticles in its composition. Friction tests on yarns showed that Kevlar (R) yarns with shear thickening fluids (sample C3-25% Silica and 75%polyethylene glycol with 38% aminopropyltrimethoxysilane), presented higher strength values (10.5 N) when compared with other samples. Impact resistance tests showed that Kevlar (R) samples with highest concentration shear thickening fluids nanoparticles and oriented fabric layers (C3 OR) presented better performance regarding to penetration depth of stabs P1 (17 mm), S1 (18 mm) and as well as residual energy dissipation, when compared with the standard and other samples. Addition of shear thickening fluids cause reduction in the flexibility of the Kevlar (R) fabrics, producing sample with 42.74% less flexibility than the standard sample (C3). Adhesion tests for C3 samples exhibited more stable wettability and spreading rate, i.e., a greater adhesion of shear thickening fluids in Kevlar (R) fabrics than other samples due to its composition (higher concentration of nanoparticles and superior amount of silane agent). Finally, results showed that the shear thickening fluids composition as well as Kevlar (R) layers orientation should be used to improve the performance of Kevlar (R) fabrics under impact tests.
机译:使用浸渍在Kevlar(R)织物中的胶体二氧化硅悬浮液是用于刺伤伤口和刺穿物体的新型护步。 Kevlar(R)浸渍有非牛顿流体的织物已经用于防止急剧吹动,主要是由于它们的轻质,柔韧性和卓越的抗性性能。该研究的目的是证明浸渍有剪切增稠流体的Kevlar织物可以通过使用氨基丙基三甲氧基硅烷来改善其性能,以及通过增加其组合物中的二氧化硅纳米颗粒的浓度。纱线上的摩擦试验表明,与剪切增稠流体(样品C3-25%二氧化硅和75%聚乙二醇,具有38%氨基丙基三甲氧基硅烷)的Kevlar纱线,与其他样品相比,呈现更高的强度值(10.5n)。抗冲击性试验表明,具有最高浓度剪切增稠流体纳米颗粒和取向织物层(C3或)的Kevlar样品呈现了刺穿P1(17mm),S1(18mm)的渗透深度和剩余的更好的性能与标准和其他样品相比,能量耗散。添加剪切增稠液导致Kevlar织物的柔韧性降低,产生的样品与标准样品(C3)的柔韧性小42.74%。 C3样品的粘附试验表现出更稳定的润湿性和扩散速率,即,由于其组合物(较高浓度的纳米颗粒和优质量的硅烷试剂)更大地比其他样品更大的剪切增稠流体比其他样品更大粘附。最后,结果表明,剪切增稠流体组合物以及Kevlar(R)层的取向应用于改善冲击试验下的Kevlar(R)织物的性能。

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