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Aramid, steel, and glass: Characterization via cut performance testing, of composite knitted fabrics and their constituent yarns, with a review of the art

机译:芳纶,钢和玻璃:通过切割性能测试表征复合针织面料及其组成纱线,并进行技术审查

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Aramid, glass, and steel have been compared for their performance in composite forms in protective applications, which are not the most usual ones. After underlining the importance of cut protection, a rather extensive review of the art in the domain of cut performance reveals that a good basis has been established, still leaving space for the study of non-coated, less uniformly interlocked composite yarn assemblies in the form of knitted structures or woven ones. Slightly departing from the traditionally friction-driven cut mechanism, those structures are distinguishable. This offers some elements for the long-awaited clarification of normalized test differences. Statistically, relevant families of commercial or semi-commercial products have been selected to address simultaneously the variability and the performance boundaries of those materials using instrumented ASTM cut equipment to obtain a "smarter" response of the material performance during its testing and to perform a "more sophisticated" data analysis beyond usually specified ones. The attempts to analyze more localized physical events open the door to micro or nanoanalysis of the fracture mechanism during the cut event which may differ from the traditional friction analysis. The contribution of meltable companion fillers, although not being the core of the study, could be translated to applications where those fillers become functional elements further improving the performance and synergism of the three basic elements, aramid, glass and steel. Previous study on the tribological properties of Kevlar~? (DuPont's registered trademark) composite fabrics stands as a natural prolongation of this study when applied to the knitted composite structures of this study.
机译:比较了芳族聚酰胺,玻璃和钢在保护用途中复合形式的性能,这不是最常见的形式。在强调了防割保护的重要性之后,对防割性能领域的技术进行了相当广泛的审查,发现该技术已经建立了良好的基础,仍然为研究无涂层,不均匀互锁的复合纱线组件形式针织结构或机织结构。这些结构与传统的摩擦驱动切割机制略有不同,因此很明显。这为期待已久的标准化测试差异的澄清提供了一些要素。从统计上讲,已经选择了相关的商业或半商业产品系列,以使用仪器化的ASTM切割设备同时解决那些材料的可变性和性能边界,从而在测试过程中获得材料性能的“更智能”响应并执行“比通常指定的数据分析更复杂的数据分析。分析更多局部物理事件的尝试为切割事件期间断裂机理的微观或纳米分析打开了大门,这可能不同于传统的摩擦分析。可熔伴侣填料的贡献虽然不是研究的核心,但可以转化为那些填料成为功能性元素的应用,从而进一步改善芳族聚酰胺,玻璃和钢这三种基本元素的性能和协同作用。凯夫拉尔摩擦性能的先前研究(杜邦的注册商标)复合面料在应用于本研究的针织复合结构时,是本研究的自然延伸。

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