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Influence of Chemical Surface Modification of Woven Fabrics on Ballistic and Stab Protection of Multilayer Packets

机译:机织织物化学表面改性对多层包装的防弹和防刺性能的影响

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摘要

In order to achieve enhanced protective and wear (flexibility, less bulkiness) properties of ballistic and stab protecting panels the investigation of chemical surface modification of woven p-aramid fabrics was performed applying different chemical composition shear thickening fluid (STF) which improves friction inside fabric structure. For the chemical treatment silicic acid and acrylic dispersion water solutions were used and influence of their different concentrations on panels’ protective properties were investigated. Results of ballistic tests of multilayer protective panel have revealed that shear thickening effect was negligible when shooting at high energy range (E 440 J). Determination of stab resistance of p-aramid panels has shown that different chemical composition of STFs had different influence on protective properties of the panels. Application of low concentrations of silicic acid determined higher stab resistance values comparing to higher concentrations of acrylic dispersion water solutions. At this stage of research stab tests results as ballistic ones determined that STF application for multilayer p-aramid fabrics protective panels is more efficient at low strike energy levels.
机译:为了获得防弹和防刺面板的增强的防护和耐磨性(柔韧性,较小体积),使用不同的化学成分剪切增稠液(STF)进行机织对位芳纶织物的化学表面改性研究,以改善织物内部的摩擦结构体。对于化学处理,使用了硅酸和丙烯酸分散体水溶液,并研究了它们的不同浓度对面板防护性能的影响。多层保护板的弹道测试结果表明,在高能量范围(E> 440 J)下射击时,剪切增厚效果可忽略不计。对芳族聚酰胺面板的防刺性能的测定表明,STF的不同化学组成对面板的保护性能有不同的影响。与较高浓度的丙烯酸分散体水溶液相比,低浓度的硅酸的施加确定较高的耐刺伤性。在此阶段的防刺测试结果是弹道测试结果,表明STF在多层对位芳纶织物保护面板上的应用在低冲击能水平下更为有效。

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