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Study on the stab resistance mechanism and performance of the carbon, glass and aramid fiber reinforced polymer and hybrid composites

机译:碳,玻璃和芳纶纤维增强聚合物及其混杂复合材料的抗刺机理和性能研究

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In this study, stiff stab-resistant materials for riot shields were developed by using fiber reinforced polymer composites (FRPs) made of three different types of fibers: carbon, glass and p-aramid. The stab resistance of the FRPs were investigated with respect to the thickness and types of reinforced fibers according to the U.S.A. National Institute of Justice (NIJ) standard. Hybrid composites were then developed to compensate for the weaknesses of each FRP, and the stacking sequences were optimized. The mechanisms of the stab resistance and the blade penetration for each FRP were investigated via static stab compressive tests. Additionally, the failure mode and fracture topography after the stab resistance tests were obtained using a micro-CT scanner.
机译:在这项研究中,通过使用由三种不同类型的纤维:碳,玻璃和对位芳族聚酰胺制成的纤维增强聚合物复合材料(FRP),开发了防暴盾牌用的防刺硬材料。根据美国国家司法研究所(NIJ)标准,针对增强纤维的厚度和类型研究了FRP的防刺性能。然后开发混合复合材料以弥补每个FRP的缺点,并优化堆叠顺序。通过静态防刺压缩试验研究了每种FRP的防刺强度和叶片穿透力的机制。另外,使用微型CT扫描仪获得了耐刺测试后的破坏模式和断裂形貌。

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